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Webinary (84)2.904.0020
904 TitrandoHigh-end titrator for potentiometric titration with two measuring interfaces and internal buret drive. internal buret drive; dynamic (DET), monotonic (MET), and endpoint titration (SET); Measurement with ion-selective electrodes (MEAS CONC); Dosing functions with monitoring, Liquid Handling; four MSB connectors for additional stirrers or dosing systems; "iTrode" intelligent electrodes; USB connector; For use with OMNIS Software, tiamo software, or Touch Control unit; Compliance with GMP/GLP and FDA regulations such as 21 CFR Part 11, if required;
2.905.0010
905 TitrandoHigh-end titrator for potentiometric titration with one measuring interface for use with Dosino dosing systems. up to four dosing systems of the 800 Dosino type; dynamic (DET), monotonic (MET), and endpoint titration (SET); Measurement with ion-selective electrodes (MEAS CONC); Dosing functions with monitoring, Liquid Handling; four MSB connectors for additional stirrers or dosing systems; "iTrode" intelligent electrodes; USB connector; For use with OMNIS Software, tiamo software, or Touch Control unit; Compliance with GMP/GLP and FDA regulations such as 21 CFR Part 11, if required;
2.905.0020
905 TitrandoHigh-end titrator for potentiometric titration with two measuring interfaces for use with Dosino dosing systems. up to four dosing systems of the 800 Dosino type; dynamic (DET), monotonic (MET), and endpoint titration (SET); Measurement with ion-selective electrodes (MEAS CONC); Dosing functions with monitoring, Liquid Handling; four MSB connectors for additional stirrers or dosing systems; "iTrode" intelligent electrodes; USB connector; For use with OMNIS Software, tiamo software, or Touch Control unit; Compliance with GMP/GLP and FDA regulations such as 21 CFR Part 11, if required;
2.906.0010
906 TitrandoHigh-end titrator for potentiometric and volumetric Karl Fischer titration with one measuring interface and internal buret drive. built-in buret drive; dynamic (DET), monotonic (MET) and endpoint titration (SET), enzymatic and pH-STAT titrations (STAT), Karl Fischer titration (KFT); Measurement with ion-selective electrodes (MEAS CONC); "iTrode" intelligent electrodes; Dosing functions with monitoring, liquid handling; four MSB connectors for additional stirrers or dosing device systems; USB connector; For use with OMNIS Software, tiamo software, or Touch Control; Complies with GMP/GLP and FDA regulations such as 21 CFR Part 11, if required;
2.906.0020
906 TitrandoHigh-end titrator for potentiometric and volumetric Karl Fischer titration with 2 measuring interfaces and internal dosing drive. built-in dosing drive; dynamic (DET), monotonic (MET) and endpoint titration (SET), enzymatic and pH-STAT titrations (STAT), Karl Fischer titration (KFT); Measurement with ion-selective electrodes (MEAS CONC); Dosing functions with monitoring, liquid handling; 4 MSB connectors; 2 galvanically isolated measuring interfaces; USB connector; For use with OMNIS Software, tiamo software, or Touch Control; Complies with GMP/GLP and FDA regulations such as 21 CFR Part 11, if required;
2.907.0010
907 TitrandoHigh-end titrator for potentiometric and volumetric Karl Fischer titration with one measuring interface and Dosino dosing units. up to four dosing device systems of the 800 Dosino type; dynamic (DET), monotonic (MET) and endpoint titration (SET), enzymatic and pH-STAT titrations (STAT), Karl Fischer titration (KFT); Measurement with ion-selective electrodes (MEAS CONC); "iTrode" intelligent electrodes; Dosing functions with monitoring, liquid handling; four MSB connectors for additional stirrers or dosing device systems; USB connector; For use with OMNIS Software, tiamo software, or Touch Control; Complies with GMP/GLP and FDA regulations such as 21 CFR Part 11, if required;
2.907.0020
907 TitrandoHigh-end titrator for potentiometric and volumetric Karl Fischer titration with two measuring interfaces and Dosino dosing units. up to four dosing device systems of the 800 Dosino type; dynamic (DET), monotonic (MET) and endpoint titration (SET), enzymatic and pH-STAT titrations (STAT), Karl Fischer titration (KFT); "iTrode" intelligent electrodes; Measurement with ion-selective electrodes (MEAS CONC); Dosing functions with monitoring, liquid handling; four MSB connectors for additional stirrers or dosing device systems; USB connector; For use with OMNIS Software, tiamo software, or Touch Control; Complies with GMP/GLP and FDA regulations such as 21 CFR Part 11, if required;
2.907.1020
Pharm TitrandoThe Pharm Titrando is based on the 907 Titrando and offers a complete package for the most common analyses of pharmaceutical products. Apart from the titration software tiamoTM full and determination methods described in detail, you will also receive comprehensive accessories for your titrations.
2.909.0014
909 UV Digester (230 V)Digestion instrument for UV photolysis of water samples with low to medium organic load. For sample preparation in trace element determination by means of voltammetry, ion chromatography and spectroscopy (AAS, ICP). Integrated instrument with operating unit and wet end. With air cooling and automatic control of digestion temperature and time. For 12 samples with a maximum of 12 mL sample volume each. Instrument for 220 - 240 V and 50 - 60 Hz.
2.910.0010
910 PSTAT miniThe ideal instrument to start out in electrochemistry910 PSTAT mini is a small and compact, PC-controlled potentiostat with USB connector for training purposes as well as simple applications in research and development. The PSTAT software supplied is easy and intuitive to use and offers the main electrochemical measuring techniques. Included in the scope of delivery are cost-effective disposable thick-film sensors that can be used directly without any preparation and conditioning. Each sensor contains the 3 electrodes needed: the carbon, gold or platinum working electrode with a diameter of 4 mm, a silver reference electrode and a carbon auxiliary electrode on a ceramic substrate.Main applicationsTraining in electrochemistry (practical courses for students, demonstration experiments); Electrochemical research and development (sensor development, reversibility of electrochemical reactions, reaction kinetics); The most important advantagesSmall and compact; Cost-effective; Maintenance-free disposable sensors; Power supply via USB; Simple, intuitive PSTAT software; The 910 PSTAT mini is supplied with the following accessories in a transport case:6.2163.000 Electrode cable for 910 PSTAT mini; 6.2163.010 Connection cable for dummy cell; 6.1412.000 Measuring vessel; 6.1412.010 Cover for measuring vessel 6.1412.000; 6.2703.020 Stand ring for measuring vessel 6.1412.000; Mini USB cable; Software CD; Dummy Cell; A selection of screen-printed electrodes (SPE): 30 carbon electrodes, 30 gold electrodes and 15 platinum electrodes;
2.914.0010
914 pH/Conductometer with iConnectPortable two-channel pH / conductivity measuring instrument with intelligent measuring input for measuring pH/mV / conductivity / TDS / salinity and temperature. You will be optimally equipped for measurements in the field with this battery-operated measuring instrument. Portable pH measuring instrument with built-in battery pack; Parallel measurement of pH value and conductivity; Analog conductivity measuring input for the 4-wire conductivity measuring cells from Metrohm; Digital pH measuring input for the intelligent pH electrodes from Metrohm; Robust, water-tight and dust-tight housing (IP67) for hard outdoor and laboratory use; LCD color display with background illumination for simple legibility of the results; USB interface for simple data export to PC or printer; Large internal memory (10,000 data sets); Pin-protected User and Expert modes, prevents unwanted parameter changes; GLP-compliant printout and data export with User ID and timestamp;
2.914.0110
914 pH/Conductometer with iConnect with accessories casePortable two-channel pH / conductivity measuring instrument with intelligent measuring input for parallel measurement of pH/mV / conductivity / TDS / salinity and temperature. You will be optimally equipped for measurements outdoors with this battery-operated measuring instrument. Parallel measurement of pH value and conductivity; Analog conductivity measuring input for the 4-wire conductivity measuring cells from Metrohm; Digital pH measuring input for the intelligent pH electrodes from Metrohm; Robust, water-tight and dust-tight housing (IP67) for hard outdoor and laboratory use; LCD color display with background illumination for simple legibility of the results; USB interface for simple data export to PC or printer; Large internal memory (10,000 data sets); Pin-protected User and Expert modes, prevents unwanted parameter changes; GLP-compliant printout and data export with User ID and timestamp; Robust field case for routine measurements in the field;
2.914.0210
914 pH/Conductometer with iConnect, laboratory versionPortable two-channel pH / conductivity measuring instrument with intelligent measuring input for measuring pH/mV / conductivity / TDS / salinity and temperature. You will be optimally equipped for measurements in the field and in the laboratory with this battery-operated measuring instrument with stand plate. Digital pH measuring input for the intelligent pH electrodes from Metrohm; Analog conductivity measuring input for the 4-wire conductivity measuring cells from Metrohm; Laboratory pH and conductivity measuring instrument with built-in battery pack; Parallel measurement of pH value and conductivity; Robust, water-tight and dust-tight housing (IP67) for hard outdoor and laboratory use; LCD color display with background illumination for simple legibility of the results; USB interface for simple data export to PC or printer; Large internal memory (10,000 data sets); Pin-protected User and Expert modes, prevents unwanted parameter changes; GLP-compliant printout and data export with User ID and timestamp;
2.915.0110
915 KF Ti-Touch"Reduce to the max" – that is the concept behind the 915 KF Ti-Touch. The new compact titrator for Karl Fischer titration from Metrohm offers the maximum in the class of stand-alone systems for routine analysis.Burets, stirrer, dosing unit and Touch Control are integrated in a single, compact system unit. This saves a great deal of space on the laboratory table.The 915 KF Ti-Touch now also fulfills FDA Regulation 21 CFR, Part 11. This means you are always on the safe side when it comes to audits.The package includes the 915 KF Ti-Touch, an 800 Dosino, a 10 mL dosing unit and additional accessories.
2.916.0020
916 Ti-Touch with magnetic stirrer''Reduce to the max'' – this is the 916 Ti-Touch concept. The compact titrator from Metrohm offers the maximum in the class of stand-alone systems for routine analysis.The 916 Ti-Touch with built-in magnetic stirrer supports all potentiometric titrations: the titration modes DET (dynamic equivalence point titration), MET (monotonic equivalence point titration), SET (titration to one or two specified endpoints), STAT (enzymatic and pH-STAT titrations), and MAT (manual titration).The 916 Ti-Touch now also fulfills FDA Regulation 21 CFR, Part 11. This means you are always on the safe side when it comes to audits.With the 810 Sample Processor, you are supplementing the 916 Ti-Touch with automation and thus enhancing your sample throughput and improving the precision and reproducibility of your results.
2.916.2010
916 Salt Ti-Touch''Reduce to the max'' – this is the 916 Ti-Touch concept. The new compact titrator from Metrohm offers the maximum in the class of stand-alone systems for routine analysis.The 916 Ti-Touch now also fulfills FDA Regulation 21 CFR, Part 11. This means you are always on the safe side when it comes to audits.The 916 Salt Ti-Touch offers you the complete package for the analysis of chloride in a wide variety of samples. In addition to the determination methods described in detail, you also receive the complete accessories for your titrations. Included in the package are titrator with rod stirrer, 800 Dosino, 20 mL dosing unit and an iAg-Titrode for precipitation titration with silver nitrate.
2.916.3010
916 Oil Ti-Touch''Reduce to the max'' – this is the 916 Ti-Touch concept. The new compact titrator from Metrohm offers the maximum in the class of stand-alone systems for routine analysis.The 916 Ti-Touch now also fulfills FDA Regulation 21 CFR, Part 11. This means you are always on the safe side when it comes to audits.The 916 Oil Ti-Touch offers you the complete package for the determination of the acid and base numbers of oil products. In addition to the determination methods described in detail, you also receive the complete accessories for your titrations. Included in the package are titrator with rod stirrer, 800 Dosino, 20 mL dosing unit und an iSolvotrode, an intelligent pH glass electrode specialized for nonaqueous titrations.
2.916.4010
916 Food Ti-Touch''Reduce to the max'' – this is the 916 Ti-Touch concept. The new compact titrator from Metrohm offers the maximum in the class of stand-alone systems for routine analysis.The 916 Ti-Touch now also fulfills FDA Regulation 21 CFR, Part 11. This means you are always on the safe side when it comes to audits.The 916 Food Ti-Touch offers you the complete package for aqueous acid-base titrations in the food industry. In addition to the determination methods described in detail, you also receive the complete accessories for your titrations. Included in the package are titrator with rod stirrer, 800 Dosino, 20 mL dosing unit und an iEcotrode Plus, an intelligent pH glass electrode specialized for aqueous acid-base titrations.Profit from our more than 60 years of application know-how. Almost 100 tried and tested methods are waiting to be used by you. Programming the titrator can be dispensed with. Simply load the method from the USB Memory Stick supplied in the scope of delivery. The methods were formulated in the light of the following publications:Official Methods of Analysis of the Association of Official Analytical Chemists (AOAC, USA); U.S. Environmental Protection Agency (EPA); Swiss Food Manual; German standard methods for the examination of water, waste water and sludge;
2.917.0010
917 Coulometer with generator electrode with diaphragmThe 917 Coulometer is a compact titrator for coulometric water determination in accordance with Karl Fischer. ''Reduced to the max'' – operating module, stirrer and pump are integrated in the 917 Coulometer for rapid reagent replacement. This saves a great deal of space on the laboratory table.Recommended measuring range: 10 µg…200 mg absolute waterCoulometry is the ideal method for water content determination in liquids, solids and gases in the trace range. In addition, coulometry is an absolute method and thus no titer determination is necessary.The 917 Coulometer now also fulfills FDA Regulation 21 CFR, Part 11. This means you are always on the safe side when it comes to audits.
2.917.0110
917 Coulometer with generator electrode without diaphragmThe 917 Coulometer is a compact titrator for coulometric water determination in accordance with Karl Fischer. ''Reduced to the max'' – operating module, stirrer and pump are integrated in the 917 Coulometer for rapid reagent replacement. This saves a great deal of space on the laboratory table.Recommended measuring range: 10 µg…200 mg absolute waterCoulometry is the ideal method for water content determination in liquids, solids and gases in the trace range. In addition, coulometry is an absolute method and thus no titer determination is necessary.The 917 Coulometer now also fulfills FDA Regulation 21 CFR, Part 11. This means you are always on the safe side when it comes to audits.
2.917.1010
917 Coulometer with generator electrode with diaphragm and 860 KF ThermoprepThe 917 Coulometer is a compact titrator for coulometric water determination in accordance with Karl Fischer. ''Reduced to the max'' – operating module, stirrer, and pump are integrated in the 917 Coulometer for rapid reagent replacement. This saves a great deal of space on the laboratory table.The 917 Coulometer now also fulfills FDA Regulation 21 CFR, Part 11. This means you are always on the safe side when it comes to audits.The 860 KF Thermoprep is used for thermal sample preparation. Many substances are not suitable for direct Karl Fischer titration because they are not soluble, react with the KF reagent, or because they only release their water content very slowly or only at high temperatures. Each of the samples is introduced into the oven in tightly sealed sample vessels and their water content is determined with the 917 Coulometer.
2.917.1110
917 Coulometer with generator electrode without diaphragm and 860 KF ThermoprepThe 917 Coulometer is a compact titrator for coulometric water determination in accordance with Karl Fischer. ''Reduced to the max'' – operating module, stirrer and pump are integrated in the 917 Coulometer for rapid reagent replacement. This saves a great deal of space on the laboratory table.The 917 Coulometer now also fulfills FDA Regulation 21 CFR, Part 11. This means you are always on the safe side when it comes to audits.The 860 KF Thermoprep is used for thermal sample preparation. Many substances are not suitable for direct Karl Fischer titration because they are not soluble, react with the KF reagent or because they release their water content only very slowly or only at high temperatures. Each of the samples is introduced into the oven in tightly sealed sample vessels and their water content is determined with the 917 Coulometer.
2.917.2010
917 Coulometer with generator electrode with diaphragm and 885 Compact Oven SCThe 917 Coulometer is a compact titrator for coulometric water determination in accordance with Karl Fischer. ''Reduced to the max'' – operating module, stirrer, and pump are integrated in the 917 Coulometer for rapid reagent replacement. This saves a great deal of space on the laboratory table.The 885 Compact Oven SC is used for automatic thermal sample preparation. The samples are heated in the oven to a temperature of up to 250 °C. This causes the water to vaporize and then be transported with a dry carrier gas into the 917 Coulometer titration cell in which the analysis takes place.
2.917.2110
917 Coulometer with generator electrode without diaphragm and 885 Compact Oven SCThe 917 Coulometer is a compact titrator for coulometric water determination in accordance with Karl Fischer. ''Reduced to the max'' – operating module, stirrer and pump are integrated in the 917 Coulometer for rapid reagent replacement. This saves a great deal of space on the laboratory table.The 885 Compact Oven SC is used for automatic thermal sample preparation. The samples are heated in the oven to a temperature of up to 250 °C. This causes the water to vaporize and then be transported with a dry carrier gas into the 917 Coulometer titration cell in which the analysis takes place.
2.919.0120
919 IC Autosampler plus for CVSThe 919 IC Autosampler plus for CVS, in conjunction with Professional VA/CVS instruments and viva, is suitable for small sample series of fully automatic determinations of organic additives in electroplating bath, e.g. "brighteners" and "suppressors" using "Cyclic Voltammetric Stripping" (CVS). The system is controlled directly by the viva software and permits automatic changes of method between different types of determinations. The sample rack supplied holds 14 samples with a maximum size of 50 mL.The 919 IC Autosampler plus for CVS is supplied with accessories, sample rack, and connection cable so you can set up a complete workplace, although it does not come with rinsing equipment.
2.919.0130
919 IC Autosampler plus for VAThe 919 IC Autosampler plus for VA is suitable for small sample series of fully automatic trace determinations of heavy metals using polarography and voltammetry together with Professional VA instruments and viva. The system is controlled directly by the viva software and permits automatic changes of method between different types of determinations. The sample rack supplied holds 28 samples with a maximum size of 10 mL.The 919 IC Autosampler plus for VA is supplied with accessories, sample rack, and connection cable so you can set up a complete workplace, although it does not come with rinsing equipment.
2.920.0010
920 Absorber ModuleThe 920 Absorber Module combines the Combustion Module with the ion chromatograph. The 920 Absorber Module ensures that the gaseous compounds of the analytes are dissolved and channeled to the IC. It is responsible for the entire Liquid Handling. In addition to Combustion IC, it can also be used for gas analysis.
2.921.0010
NIRS XDS MonochromatorThe result of 50 years experience in the area of spectroscopy was incorporated in the development of this NIRSystems spectrometer. The unique technology improves the signal-noise ratio at high resolution and enhances accuracy and precision. The patented monochromator and the modular design of the measuring module system make NIRSystems instruments indispensable for the spectral measurement of every imaginable sample type in the visible and near-infrared wavelength range (400 - 2,500 nm). The measuring modules can be replaced without difficulty, even during operation. This means that the user profits from the great flexibility in all areas of application.
2.921.0110
NIRS XDS RapidContent ModuleRapid, nondestructive analyses of solid and liquid substancesThe NIRS XDS RapidContent Analyzer enables rapid, nondestructive analyses of solid and liquid formulations and substances. The sample is centered with the aid of an iris, thus enhancing the reproducibility of the analysis. A gold diffuse reflector enables the measurement of liquid samples. The Solids Module of the NIRS XDS RapidContent Analyzer extends the area of application to include practically every form of solid samples, whether it be fine powders, coarse granulates, pellets or flakes.
2.921.0120
NIRS XDS RapidContent Solids ModuleRapid, nondestructive analyses of solid and liquid substancesThe NIRS XDS RapidContent Analyzer enables rapid, nondestructive analyses of solid and liquid formulations and substances. The sample is centered with the aid of an iris, thus enhancing the reproducibility of the analysis. A gold diffuse reflector enables the measurement of liquid samples. The Solids Module of the NIRS XDS RapidContent Analyzer extends the area of application to include practically every form of solid samples, whether it be fine powders, coarse granulates, pellets or flakes.
2.921.0210
NIRS XDS MultiVial ModuleRapid nondestructive analyses of solids in vialsThe NIRS XDS MultiVial Analyzer enables rapid, nondestructive analyses of the identity and quality of solid material samples that are transferred into vials. Entire sample series can be analyzed; the NIRS XDS MultiVial Analyzer is equipped for this purpose with a sample slide that can be moved in x and y direction. An optional coarse granular sample cell for coarse granular substances extends the range of possible applications to include practically all solid forms ranging from fine powders to coarse granular materials, e.g., pellets and flakes.
2.921.0310
NIRS XDS MasterLab ModuleRapid, nondestructive analyses of tablets, capsules and other solid-state dosage formsThe NIRS XDS MasterLab Analyzer enables the rapid, nondestructive analyses of solid-state dosage forms such as tablets, capsules, film-coated tablets, gel tablets and gel capsules for manufacturers in the pharmaceuticals industry. Solids in vials can also be analyzed with the NIRS XDS MasterLab Analyzer. The analysis takes place in reflection or transmission mode. The sample input proceeds via a sample slide that can be moved in x and y direction and that is designed for trays with several tablets and/or vials. Analyses of individual samples are optimized with an iris. An optionally available coarse granular sample cell for coarse granular substances extends analysis to include practically all solid forms ranging from fine powders to coarse granular materials, e.g., pellets and flakes.
2.921.0410
NIRS XDS RapidLiquid ModuleRapid, precise analyses of liquids and suspensions of all typesThe NIRS XDS RapidLiquid Analyzer enables rapid, precise analyses of liquid formulations and substances. Precise measurement results at the push of a button make the NIRS XDS RapidLiquid Analyzer an equally reliable and simple solution for quality monitoring in laboratories and processes. The samples are transferred to quartz cuvettes designed for multiple use or disposable glass vials; a tempered sample compartment ensures reproducible analysis conditions and thus accurate measurement results.
2.921.0510
NIRS XDS Interactance OptiProbe ModuleRobust measurement system for the monitoring of reactions in technical centers and in pilot plantsThe NIRS XDS Interactance OptiProbe Analyzer enables the simple and reliable monitoring of chemical reactions in technical centers and pilot plants. The method development and the scale-up of production processes are areas of application in which the NIRS XDS Interactance OptiProbe Analyzer supplies precise results regarding the identity and quality of a wide variety of samples. Whereas solids, strongly scattering liquids and slurries are measured with the reflection probe, the immersion probe is used to analyze aqueous products, clear liquids and solvents. The probe is connected to the analyzer through an optical fiber to enable secure measurements even under rough and/or dangerous conditions in the processing environment.
2.921.0520
NIRS XDS Transmission OptiProbe ModuleRobust measuring system for monitoring the reactions of liquids in the technical center and pilot plantsThe NIRS XDS Transmission OptiProbe Analyzer enables efficient determination of the composition of aqueous products, clear liquids, solvents and viscous samples. The instrument is equally suitable for use in technical centers or for at-line applications in the context of scale-ups of production processes. NIRS disposable glass vials are available for viscous samples, limiting cleaning costs to a minimum. The optionally available NIRS Vial Heater can be used to analyze samples at a temperature of up to 200 °C.
2.921.0610
NIRS XDS SmartProbe Module – 2 m fiberRobust, flexible measurement system for the quality control of solid and liquid substancesThe NIRS XDS SmartProbe Analyzer enables rapid, nondestructive analyses of solid and liquid substances and formulations. With the NIRS XDS SmartProbe Analyzer, identity and quality of a substance can be determined directly in the respective original transport containers, no matter whether it be bottles, bags or other containers. The design, which is just as robust as it is ergonomic, makes the NIRS XDS SmartProbe Analyzer the ideal quality control solution in both the warehouse and in the laboratory. Using the NIRS XDS SmartProbe Analyzer could not be easier. For the measurement, the probe is held in the sample and the measurement button is pressed. Pass/fail results can be read off on the handle immediately after the measurement.The XDS SmartProbe Module is also available with a 3 m fiber length (order number: 2.921.1620)
2.921.0620
NIRS XDS SmartProbe Module – 3 m fiberRobust, flexible measurement system for the quality control of solid and liquid substancesThe NIRS XDS SmartProbe Analyzer enables rapid, nondestructive analyses of solid and liquid substances and formulations. With the NIRS XDS SmartProbe Analyzer, identity and quality of a substance can be determined directly in the respective original transport containers, no matter whether it be bottles, bags or other containers. The design, which is just as robust as it is ergonomic, makes the NIRS XDS SmartProbe Analyzer the ideal quality control solution in both the warehouse and in the laboratory. Using the NIRS XDS SmartProbe Analyzer could not be easier. For the measurement, the probe is held in the sample and the measurement button is pressed. Pass/fail results can be read off on the handle immediately after the measurement.
2.921.1120
NIRS XDS RapidContent Analyzer – SolidsRapid, nondestructive analyses of solid and liquid substancesThe NIRS XDS RapidContent Analyzer – Solids enables rapid, nondestructive analyses of solid powders, coarser granulates, pellets or flakes.Composition or material identification testing is performed either in the laboratory or at-line, on samples contained in their original packaging, bags or vials. An optional variable spot-size feature enables the sample illumination to be adjusted based on the physical properties of your samples.The measurement of liquid samples succeeds through the addition of the NIRS Transflection Kit for liquid samples (order number: 6.7400.010).The sample is centered with the aid of the NIRS XDS iris (order number: 6.7425.000), thus enhancing the reproducibility of the analysis.Thanks to the integrated mobile sample slide in X direction, the NIRS XDS RapidContent Analyzer enables the investigation of larger-sized nonhomogenous sample quantities.
2.921.1210
NIRS XDS MultiVial AnalyzerRapid, nondestructive analyses of solids in vialsThe NIRS XDS MultiVial Analyzer enables rapid, nondestructive analyses of solid powders, coarser granulates, pellets or flakes.Composition or material identification testing is performed either in the laboratory or at-line, on samples contained in their original packaging, bags or vials. An optional variable spot-size feature enables the sample illumination to be adjusted based on the physical properties of your samples.The measurement of liquid samples succeeds through the addition of the NIRS Transflection Kit for liquid samples (order number: 6.7400.010).Entire sample series are analyzed under full automation conditions with the MultiVial Analyzer. The NIRS XDS MultiVial Analyzer is equipped for this purpose with a sample slide that can be moved in x and y direction.MultiVial trays for vials and/or tablets are available with predefined numbers of boreholes and bore sizes, although individual customized versions can also be produced to meet specific customer requirements.
2.921.1620
NIRS XDS SmartProbe Analyzer – 3 m fiberRobust, flexible measurement system for the quality control of solid and liquid substancesThe NIRS XDS SmartProbe Analyzer enables rapid, nondestructive analyses of solid and liquid substances and formulations. With the NIRS XDS SmartProbe Analyzer, identity and quality of a substance can be determined directly in the respective original transport containers, no matter whether it be bottles, bags or other containers. The design, which is just as robust as it is ergonomic, makes the NIRS XDS SmartProbe Analyzer the ideal quality control solution in both the warehouse and in the laboratory. Using the NIRS XDS SmartProbe Analyzer could not be easier. For the measurement, the probe is held in the sample and the measurement button is pressed. Pass/fail results can be read off on the handle immediately after the measurement.
2.921.9010
NIRS XDS Vial Heater including 250 vialsThe NIRS XDS Vial Heater Module enables analyses of samples at temperatures of up to 200 °C. The Vial Heater is used together with an NIRS XDS Transmission OptiProbe Analyzer. The Transmission Probes are fastened across from one another in the NIRS XDS Vial Heater. The NIRS disposable glass vials with 4 mm or 8 mm diameter are positioned between the two optical fibers in the heating block of the NIRS XDS Vial Heater. The temperature of the heating block can be regulated up to 200 °C. The sample and the optical fiber can be protected against ambient light with a lid. The spectral measurement of the sample takes place in transmission.
2.923.0010
MIRA M-1 Basic PackageThe Metrohm Instant Raman Analyzers (MIRA) are handheld, high-performance Raman spectrometers for rapid, nondestructive analysis of chemical and pharmaceutical samples, be they liquid or solid. Barely larger than a smartphone, the MIRA spectrometers are the only handheld Raman analyzers available with Orbital-Raster-Scan (ORS) technology. With the Basic Package, with integrated sample holder, the samples can be presented directly in small vials for ready use in the MIRA M-1 spectrometer (laser protection class 1).
2.923.0020
MIRA M-1 Advanced PackageThe Metrohm Instant Raman Analyzers (MIRA) are handheld, high-performance Raman spectrometers for rapid, nondestructive analysis of chemical and pharmaceutical samples, be they liquid or solid. Barely larger than a smartphone, the MIRA M-1 spectrometers are the only handheld Raman spectrometers available with Orbital-Raster-Scan (ORS) technology. With the Advanced Package, powders, granulates or liquids can be analyzed directly in their containers with the point-and-shoot adapters. Alternatively, the samples can also be presented in small vials.
2.924.0010
MIRA M-3 Basic PackageThe Metrohm Instant Raman Analyzer (MIRA) M-3 is a high performance, handheld Raman spectrometer used for rapid, nondestructive identification and verification of different material types, such as Pharmaceutical APIs and excipients. Despite the small size of the instrument, the Mira M-3 has a ruggedized design and features a high-efficiency spectrograph design equipped with our unique Orbital-Raster-Scan (ORS) technology. The Mira M-3 is fully compliant with FDA 21 CFR Part 11 regulations.The Basic Package includes a vial attachment for measuring samples directly through glass vials in a laser Class 1 configuration.
2.924.0020
MIRA M-3 Advanced PackageThe Metrohm Instant Raman Analyzer (MIRA) M-3 is a high performance, handheld Raman spectrometer used for rapid, nondestructive identification and verification of different material types, such as Pharmaceutical APIs and excipients. Despite the small size of the instrument, the Mira M-3 has a ruggedized design and features a high-efficiency spectrograph design equipped with our unique Orbital-Raster-Scan (ORS) technology. The Mira M-3 is fully compliant with FDA 21 CFR Part 11 regulations.The Advanced Package includes an attachment lens for analyzing materials directly or through containers (laser Class 3b), as well as a vial holder attachment for analyzing materials contained in glass vials (laser Class 1).
2.925.1040
Eco IC Package with 919The automated introductory model for water analysis and teaching. The IC Eco Package can be retrofitted with Inline Ultrafiltration at any time. The scope of delivery includes the Eco IC, the 919 IC Autosampler plus, the conductivity detector, the Metrohm Suppressor Module ("MSM") and the MagIC Net Professional software.
2.926.0010
MIRA DS BasicThe Metrohm Instant Raman Analyzer (MIRA) DS is a ruggedized, high-performance, portable Raman spectrometer for rapid, nondestructive determination of illegal materials, e.g. drugs, explosives, base materials, and hazardous substances. Despite the small size of the instrument, the MIRA DS is highly ruggedized and features a high-efficiency spectrograph equipped with our unique Orbital-Raster-Scan (ORS) technology.MIRA DS Basic package allows the user to customize the MIRA DS to meet their needs. The MIRA Basic package is a starter package that contains the basic components required for operating the MIRA DS.The MIRA DS Basic package includes a calibration standard, a USB cable, and the LWD attachment for analyses in bottles and several bags. Laser Class 3B operation. MIRA DS supports Metrohm handheld Raman libraries.
2.926.0015
Mira DS Basic (US Only)The Metrohm Instant Raman Analyzer (MIRA) DS is a ruggedized, high-performance, portable Raman spectrometer for rapid, nondestructive determination of illegal materials, e.g. drugs, explosives, base materials, and hazardous substances. Despite the small size of the instrument, the MIRA DS is highly ruggedized and features a high-efficiency spectrograph equipped with our unique Orbital-Raster-Scan (ORS) technology.MIRA DS Basic package allows the user to customize the MIRA DS to meet their needs. The MIRA Basic package is a starter package that contains the basic components required for operating the MIRA DS. The MIRA DS basic package includes a calibration standard, a USB cable, and the LWD attachment for analyses in bottles and several bags. Laser Class 3B operation. MIRA DS supports Metrohm handheld Raman libraries.
2.926.0020
MIRA DS AdvancedThe Metrohm Instant Raman Analyzer (MIRA) DS is a ruggedized, high-performance, handheld Raman spectrometer used for rapid, nondestructive determination of illicit materials, e.g. drugs, explosives, starting materials, and hazardous agents. Despite the small size of the instrument, MIRA DS is extremely rugged and features a high-efficiency spectrograph equipped with our unique Orbital-Raster-Scan (ORS) technology.The Advanced package includes a calibration standard, universal attachment for analyses in bottles or bags or for direct analysis, and the right-angle attachment, ideal for running samples on a surface and/or in a bag. Class 3B operation. MIRA DS supports Metrohm handheld Raman libraries.
2.926.0025
MIRA DS Advanced (US only)The Metrohm Instant Raman Analyzer (MIRA) DS is a ruggedized, high-performance, handheld Raman spectrometer used for rapid, nondestructive determination of illicit materials, e.g. drugs, explosives, starting materials, and hazardous agents. Despite the small size of the instrument, MIRA DS is extremely rugged and features a high-efficiency spectrograph equipped with our unique Orbital-Raster-Scan (ORS) technology.The Basic package includes a calibration standard, universal attachment for analyses in bottles or bags or for direct analysis, and the right-angle attachment, ideal for running samples on a surface and/or in a bag. Class 3B operation. MIRA DS supports Metrohm handheld Raman libraries.
2.926.0030
MIRA DS FlexThe MIRA DS Flex package allows the user to customize the MIRA DS to meet their needs. The Flex package includes the basic components needed to operate the MIRA DS without sampling attachments. At least one sampling attachment is required for operation.The MIRA DS Flex package includes a calibration standard and a USB cable. Class 3B operation. MIRA DS supports Metrohm handheld Raman libraries.
2.926.0035
MIRA DS Flex (US only)MIRA DS Flex package allows the user to customize the MIRA DS to meet their needs. The Flex package includes the basic components needed to operate the MIRA DS without sampling attachments. At least one sampling attachment is required for operation.The MIRA DS Flex package includes a calibration standard, USB cable and laser safety goggles. Class 3B operation. MIRA DS supports Metrohm handheld Raman libraries.
2.926.0110
MIRA XTR BasicMIRA XTR is an alternative for high power 1064 nm systems. Powered by advanced computational processing, MIRA XTR uses a more sensitive 785 nm laser light along with XTR algorithms to eXTRact the Raman data from the sample fluorescence. MIRA XTR also features Orbital Raster Scanning (ORS) to provide better coverage of the sample increasing the accuracy of the results.The Basic package is a starter package that contains the basic components required for operating the MIRA XTR. The Basic package includes a Calibration Standard and Intelligent Universal Attachment. Class 3B operation. MIRA XTR supports Metrohm handheld Raman libraries.
2.926.0120
MIRA XTR AdvancedMIRA XTR is an alternative for high power 1064 nm systems. Powered by advanced computational processing, MIRA XTR uses a more sensitive 785 nm laser along with XTR algorithms to eXTRact the Raman data from the sample fluorescence. MIRA XTR also features Orbital Raster Scanning (ORS) to provide better coverage of the sample increasing the accuracy of the results.MIRA XTR Advanced package includes a Calibration Standard, Intelligent Universal Attachment, Right-angle Attachment, Vial Attachment, and MIRA SERS Attachment. A complete package for any type of analysis. Class 3B operation. MIRA XTR supports Metrohm handheld Raman libraries.
MIRA P Basic
The Metrohm Instant Raman Analyzer (MIRA) P is a high-performance, portable Raman spectrometer used for rapid, nondestructive determination and verification of different material types, such as pharmaceutical APIs and auxiliary materials. Despite the small size of the instrument, the MIRA P is highly ruggedized and features a high-efficiency spectrograph equipped with our unique Orbital-Raster-Scan (ORS) technology. The MIRA P complies with the directives of FDA 21 CFR Part 11 in their entirety.MIRA P Basic package allows the user to customize the MIRA P to meet their needs. The MIRA P Basic package is a starter package that contains the basic components required for operating the MIRA P.The Basic package contains the MIRA calibration/verification accessories, the USP library, and the LWD attachment for analyses in bottles or bags. Laser Safety Class 3B operation.
MIRA P Advanced
The Metrohm Instant Raman Analyzer (MIRA) P is a high-performance, handheld Raman spectrometer used for rapid, nondestructive determination and verification of different material types, such as Pharmaceutical APIs and excipients. Despite the small size of the instrument, the MIRA P has a ruggedized design and features a high-efficiency spectrograph design equipped with our unique Orbital-Raster-Scan (ORS) technology. The MIRA P is fully compliant with FDA 21 CFR Part 11 regulations. The Advanced Package includes an attachment lens for analyzing materials directly or through containers (laser class 3b), as well as a vial holder attachment for analyzing samples contained in glass vials (laser class 1).
MIRA P Flex
The MIRA P Flex package allows users to customize MIRA P to meet their needs. The Flex package includes the basic components needed to operate the MIRA P without sampling attachments. At least one sampling attachment is required for operation. The MIRA P Flex package includes the USP library, calibration/verification accessories, and a USB cable. Class 3B operation.
2.928.0220
NIRS XDS Process Analyzer – SingleFiber 4 ChannelsThe NIRS XDS Process Analyzer – SingleFiber provides the next generation of process analyzers for real-time analysis in the pharmaceutical and chemical industries. Non-destructive, accurate measurements of clear liquids are performed directly in the process line or in a reaction vessel. All 4 channels can be configured independently from each other in the software. Single fiber optics allows the 4 measuring points to be up to 100 meter away from the XDS NIR process analyzer.
2.928.0230
NIRS XDS Process Analyzer – SingleFiber 9 ChannelsThe NIRS XDS Process Analyzer – SingleFiber provides the next generation of process analyzers for real-time analysis in the pharmaceutical and chemical industries. Non-destructive, accurate measurements of clear liquids are performed directly in the process line or in a reaction vessel. Up to 9 probes and/or flow-cells can be connected to the analyzer. All 9 channels can be configured independently from each other in the software. Single Fiber optics allows the 9 measuring points to be up to 100 meter away from the XDS NIR process analyzer.
2.928.0310
NIRS XDS Process Analyzer – DirectLight/NonContact-Single pointBased on NIR XDS technology, the NIRS XDS Process Analyzer – DirectLight/NonContact is numbered among the next generation of non-contact process analyzers for real-time analysis above a conveyor belt, web or sheet. Non-destructive, accurate measurements are performed of practically any moving solid product.
2.930.1100
930 Compact IC FlexThe 930 Compact IC Flex is the intelligent Compact IC instrument without suppression. The instrument can be used with any separation and detection methods.Typical areas of application:Anion or cation determinations without suppression with conductivity detection; Simple applications with UV/VIS or amperometric detection;
2.930.1160
930 Compact IC Flex DegThe 930 Compact IC Flex Deg is the intelligent Compact IC instrument without suppression with built-in degasser. The instrument can be used with any separation and detection methods.Typical areas of application:Anion or cation determinations without suppression with conductivity detection; Simple applications with UV/VIS or amperometric detection;
2.930.1200
930 Compact IC Flex ChSThe 930 Compact IC Flex ChS is the intelligent Compact IC instrument with chemical suppression. An 800 Dosino can be used for the regeneration of the suppressor. The instrument can be used with any separation and detection methods.Typical areas of application:Anion determinations with chemical suppression and conductivity detection; Organic acids with ion-exclusion chromatography and inverse suppression;
2.930.1260
930 Compact IC Flex ChS/DegThe 930 Compact IC Flex ChS/Deg is the intelligent Compact IC instrument with chemical suppression and built-in degasser. An 800 Dosino is used for the regeneration of the suppressor. The instrument can be used with any separation and detection methods.Typical areas of application:Anion determinations with chemical suppression and conductivity detection; Organic acids with ion-exclusion chromatography and inverse suppression;
2.930.1300
930 Compact IC Flex ChS/PPThe 930 Compact IC Flex ChS/PP is the intelligent Compact IC instrument with chemical suppression and a peristaltic pump for regeneration. The instrument can be used with any separation and detection methods.Typical areas of application:Anion determinations with chemical suppression and conductivity detection; Organic acids with ion-exclusion chromatography and inverse suppression;
2.930.1360
930 Compact IC Flex ChS/PP/DegThe 930 Compact IC Flex ChS/PP/Deg is the intelligent Compact IC instrument with chemical suppression and a peristaltic pump for regeneration and a built-in degasser. The instrument can be used with any separation and detection methods.Typical areas of application:Anion determinations with chemical suppression and conductivity detection; Organic acids with ion-exclusion chromatography and inverse suppression;
2.930.1400
930 Compact IC Flex SeSThe 930 Compact IC Flex SeS is the intelligent Compact IC instrument with sequential suppression. An 800 Dosino can be used for the regeneration of the suppressor. The instrument can be used with any separation and detection methods.Typical areas of application:Anion or cation determinations with sequential suppression and conductivity detection;
2.930.1460
930 Compact IC Flex SeS/DegThe 930 Compact IC Flex SeS/Deg is the intelligent Compact IC instrument with sequential suppression and built-in degasser. An 800 Dosino can be used for the regeneration of the suppressor. The instrument can be used with any separation and detection methods.Typical areas of application:Anion or cation determinations with sequential suppression and conductivity detection;
2.930.1500
930 Compact IC Flex SeS/PPThe 930 Compact IC Flex SeS/PP is the intelligent Compact IC instrument with sequential suppression and a peristaltic pump for suppressor regeneration. The instrument can be used with any separation and detection methods.Typical areas of application:Anion or cation determinations with sequential suppression and conductivity detection;
2.930.1560
930 Compact IC Flex SeS/PP/DegThe 930 Compact IC Flex SeS/PP/Deg is the intelligent Compact IC instrument with sequential suppression and peristaltic pump for suppressor regeneration, in addition to a built-in degasser. The instrument can be used with any separation and detection methods.Typical areas of application:Anion or cation determinations with sequential suppression and conductivity detection;
2.930.2100
930 Compact IC Flex OvenThe 930 Compact IC Flex Oven is the intelligent Compact IC instrument with column oven and without suppression. The instrument can be used with any separation and detection methods.Typical areas of application:Anion and cation determinations without suppression with conductivity detection; Simple applications with UV/VIS or amperometric detection;
2.930.2160
930 Compact IC Flex Oven/DegThe 930 Compact IC Flex Oven/Deg is the intelligent Compact IC instrument with column oven, without suppression and with built-in degasser. The instrument can be used with any separation and detection methods.Typical areas of application:Anion and cation determinations without suppression with conductivity detection; Simple applications with UV/VIS or amperometric detection;
2.930.2180
930 Compact IC Flex Oven/Deg/MBThe 930 Compact IC Flex Oven/Deg/MB is the intelligent Compact IC instrument with column oven, without suppression and with built-in degasser. The instrument can be used with any separation and detection methods.Typical areas of application:Anion and cation determinations without suppression with conductivity detection; Simple applications with UV/VIS or amperometric detection; Optimized for microbore (2 mm) applications, ideally suitable for coupling techniques (IC-MS or IC-ICP/MS); Supported with MagIC Net 4.1 and higher
2.930.2200
930 Compact IC Flex Oven/ChSThe 930 Compact IC Flex Oven/ChS is the intelligent Compact IC instrument with column oven and chemical suppression. An 800 Dosino can be used for the regeneration of the suppressor. The instrument can be used with any separation and detection methods.Typical areas of application:Anion determinations with chemical suppression and conductivity detection; Organic acids with ion-exclusion chromatography and inverse suppression;
2.930.2260
930 Compact IC Flex Oven/ChS/DegThe 930 Compact IC Flex Oven/ChS/Deg is the intelligent Compact IC instrument with column oven, chemical suppression and built-in degasser. An 800 Dosino can be used for the regeneration of the suppressor. The instrument can be used with any separation and detection methods.Typical areas of application:Anion determinations with chemical suppression and conductivity detection; Organic acids with ion-exclusion chromatography and inverse suppression;
2.930.2300
930 Compact IC Flex Oven/ChS/PPThe 930 Compact IC Flex Oven/ChS/PP is the intelligent Compact IC instrument with column oven, chemical suppression and peristaltic pump for suppressor regeneration. The instrument can be used with any separation and detection methods.Typical areas of application:Anion determinations with chemical suppression and conductivity detection; Organic acids with ion-exclusion chromatography and inverse suppression;
2.930.2360
930 Compact IC Flex Oven/ChS/PP/DegThe 930 Compact IC Flex Oven/ChS/PP/Deg is the intelligent Compact IC instrument with column oven, chemical suppression and a peristaltic pump for suppressor regeneration and built-in degasser. The instrument can be used with any separation and detection methods.Typical areas of application:Anion determinations with chemical suppression and conductivity detection; Organic acids with ion-exclusion chromatography and inverse suppression;
2.930.2400
930 Compact IC Flex Oven/SeSThe 930 Compact IC Flex Oven/SeS is the intelligent Compact IC instrument with column oven and sequential suppression. An 800 Dosino can be used for the regeneration of the suppressor. The instrument can be used with any separation and detection methods.Typical areas of application:Anion or cation determinations with sequential suppression and conductivity detection;
2.930.2460
930 Compact IC Flex Oven/SeS/DegThe 930 Compact IC Flex Oven/SeS/Deg is the intelligent Compact IC instrument with column oven, sequential suppression and built-in degasser. An 800 Dosino can be used for the regeneration of the suppressor. The instrument can be used with any separation and detection methods.Typical areas of application:Anion or cation determinations with sequential suppression and conductivity detection;
2.930.2500
930 Compact IC Flex Oven/SeS/PPThe 930 Compact IC Flex Oven/SeS/PP is the intelligent Compact IC instrument with column oven, sequential suppression and peristaltic pump for suppressor regeneration. The instrument can be used with any separation and detection methods.Typical areas of application:Anion or cation determinations with sequential suppression and conductivity detection;
2.930.2560
930 Compact IC Flex Oven/SeS/PP/DegThe 930 Compact IC Flex Oven/SeS/PP/Deg is the intelligent Compact IC instrument with column oven, sequential suppression, peristaltic pump for suppressor regeneration and built-in degasser. The instrument can be used with any separation and detection methods.Typical areas of application:Anion or cation determinations with sequential suppression and conductivity detection;
2.930.2580
930 Compact IC Flex Oven/SeS/PP/Deg/MBThe 930 Compact IC Flex Oven/SeS/PP/Deg is the intelligent Compact IC instrument with column oven, sequential suppression, a peristaltic pump for suppressor regeneration and a built-in degasser. The instrument can be used with any separation and detection methods.Typical areas of application:Anion or cation determinations with sequential suppression and conductivity detection; Optimized for microbore (2 mm) applications, ideally suitable for coupling techniques (IC-MS or IC-ICP/MS); Supported with MagIC Net 4.1 and higher
2.930.8030
Continuous IC Package DRThe Continuous IC Package DR enables the analysis of anions with hydroxide eluents. It comprises all required components, e.g., the 930 Compact IC Flex Oven/SeS/Deg, the IC Conductivity Detector MB, the 948 Continuous IC Module, the 858 Professional Sample Processor pump, the Dosino regeneration (DR), and the MagIC Net Software.
2.930.8040
Continuous IC Package PPThe Continuous IC Package PP enables the analysis of anions with hydroxide eluents. It comprises all required components, e.g., the 930 Compact IC Flex Oven/SeS/PP/Deg, the IC Conductivity Detector MB, the 948 Continuous IC Module, the 858 Professional Sample Processor pump, and the MagIC Net Software.
2.930.9030
Metrohm Combustion IC Manual - QuartzThe Metrohm Combustion IC Manual - Quartz package enables the analysis of halogens and sulfur in flammable samples of all types using inline combustion digestion (pyrohydrolysis) with subsequent ion chromatography determination (Combustion IC). It comprises all required components, such as the Combustion Oven (TEI) from Trace Elemental Instruments (2.0136.0600), the quartz combustion tube (6.07311.100), the 920 Absorber Module, the 930 Compact IC Flex Oven/SeS/PP/Deg, and the MagIC Net software. If necessary, the Metrohm Combustion IC package can be supplemented with one of the following Autosamplers: Solid Autosampler CIC (TEI), Liquid Autosampler CIC (TEI) or GLS Sampler CIC (TEI).
2.930.9040
Metrohm Combustion IC Manual - CeramicThe Metrohm Combustion IC Manual - Ceramic package enables the analysis of halogens and sulfur in flammable samples of all types using inline combustion digestion (pyrohydrolysis) with subsequent ion chromatography determination (Combustion IC). It comprises all required components, such as the Combustion Oven (TEI) from Trace Elemental Instruments (2.0136.0600), the ceramic combustion tube (6.07311.110), the 920 Absorber Module, the 930 Compact IC Flex Oven/SeS/PP/Deg, and the MagIC Net software. If necessary, the Metrohm Combustion IC package can be supplemented with one of the following Autosamplers: Solid Autosampler CIC (TEI), Liquid Autosampler CIC (TEI) or GLS Sampler CIC (TEI).
2.940.1100
940 Professional IC Vario ONEThe 940 Professional IC Vario ONE is the intelligent IC instrument for applications without suppression. The instrument can be used with any separation and detection methods.Typical areas of application:Anion and cation determinations without suppression; Analyses with UV/VIS detection with or without post-column derivatization; Applications with amperometric detection (e.g., sugar analysis); Trace analysis for cations with MiPCT;
2.940.1110
940 Professional IC Vario ONE/Prep 1The 940 Professional IC Vario ONE/Prep 1 is the intelligent IC instrument without suppression in combination with MetrohmInline Sample Preparation, e.g., Inline Ultrafiltration or Inline Dialysis. The instrument can be used with any separation and detection methods.Typical areas of application:Anion and cation determinations without suppression after Inline Ultrafiltration or Inline Dialysis; UV/VIS applications after Inline Ultrafiltration or Inline Dialysis; Applications with amperometric detection after Inline Ultrafiltration or Inline Dialysis;
2.940.1120
940 Professional IC Vario ONE/Prep 2The 940 Professional IC Vario ONE/Prep 2 is the intelligent IC instrument without suppression in combination with Metrohm Inline Sample Preparation, e.g., Inline Matrix Elimination or Inline Calibration. The instrument can be used with any separation and detection methods.Typical areas of application:Anion and cation determinations without suppression after Inline Matrix Elimination; Ultratrace analysis for cations with Inline Calibration;
2.940.1140
940 Professional IC Vario ONE/HPGThe 940 Professional IC Vario ONE/HPG is the intelligent IC instrument without suppression with binary high-pressure gradient. It can be extended with the 942 Extension Modules to up to a quaternary gradient system. The instrument can be used with any separation and detection methods.Typical areas of application:Carbohydrate analysis with pulsed amperometric detection (PAD) after gradient elution; Gradient applications with UV/VIS detection with or without post-column derivatization;
2.940.1150
940 Professional IC Vario ONE/LPGThe 940 Professional IC Vario ONE/LPG is the intelligent IC instrument without suppression with low-pressure gradient. The instrument can be used with any separation and detection methods.Typical areas of application:Carbohydrate analysis with pulsed amperometric detection (PAD) after gradient elution; Gradient applications with UV/VIS detection with or without post-column derivatization;
2.940.1200
940 Professional IC Vario ONE/ChSThe 940 Professional IC Vario ONE/ChS is the intelligent IC instrument with chemical suppression. An 800 Dosino can be used for the regeneration of the suppressor. The instrument can be used with any separation and detection methods.Typical areas of application:Anion determinations with chemical suppression and conductivity detection; Organic acids with ion-exclusion chromatography and inverse suppression;
2.940.1240
940 Professional IC Vario ONE/ChS/HPGThe 940 Professional IC Vario ONE/ChS/HPG is the intelligent IC instrument with chemical suppression and binary high-pressure gradient. It can be extended with the 942 Extension Modules to up to a quaternary gradient system. An 800 Dosino can be used for the regeneration of the suppressor. The instrument can be used with any separation and detection methods.Typical areas of application:Gradient applications for anion determinations with chemical suppression;
2.940.1250
940 Professional IC Vario ONE/ChS/LPGThe 940 Professional IC Vario ONE/ChS/LPG is the intelligent IC instrument with chemical suppression and low-pressure gradient. An 800 Dosino can be used for the regeneration of the suppressor. The instrument can be used with any separation and detection methods.Typical areas of application:Gradient applications for anion determinations with chemical suppression;
2.940.1300
940 Professional IC Vario ONE/ChS/PPThe 940 Professional IC Vario ONE/ChS/PP is the intelligent IC instrument with chemical suppression and a peristaltic pump for suppressor regeneration. The instrument can be used with any separation and detection methods.Typical areas of application:Anion determinations with chemical suppression and conductivity detection; Organic acids with inverse suppression and conductivity detection;
2.940.1340
940 Professional IC Vario ONE/ChS/PP/HPGThe 940 Professional IC Vario ONE/ChS/PP/HPG is the intelligent IC instrument with chemical suppression, a peristaltic pump for suppressor regeneration and binary high-pressure gradient. It can be extended with the 942 Extension Modules to up to a quaternary gradient system. The instrument can be used with any separation and detection methods.Typical areas of application:Gradient applications for anion determinations with chemical suppression;
2.940.1350
940 Professional IC Vario ONE/ChS/PP/LPGThe 940 Professional IC Vario ONE/ChS/PP/LPG is the intelligent IC instrument with chemical suppression, a peristaltic pump for suppressor regeneration and low-pressure gradient. The instrument can be used with any separation and detection methods.Typical areas of application:Gradient applications for anion determinations with chemical suppression;
2.940.1400
940 Professional IC Vario ONE/SeSThe 940 Professional IC Vario ONE/SeS is the intelligent IC instrument for applications with sequential suppression. An 800 Dosino can be used for the regeneration of the suppressor. The instrument can be used with any separation and detection methods.Typical areas of application:Anion or cation determinations with sequential suppression; Trace analysis for anions or cations; Online monitoring for anions or cations;
2.940.1410
940 Professional IC Vario ONE/SeS/Prep 1The 940 Professional IC Vario ONE/SeS/Prep 1 is the intelligent IC instrument with sequential suppression in combination with Metrohm Inline Sample Preparation, e.g., Inline Ultrafiltration or Inline Dialysis. An 800 Dosino can be used for the regeneration of the suppressor. The instrument can be used with any separation and detection methods.Typical areas of application:Anion or cation determinations with sequential suppression after Inline Ultrafiltration or Inline Dialysis;
2.940.1420
940 Professional IC Vario ONE/SeS/Prep 2The 940 Professional IC Vario ONE/SeS/Prep 2 is the intelligent IC instrument with sequential suppression in combination with Metrohm Inline Sample Preparation, e.g., Inline Matrix Elimination or Inline Calibration. An 800 Dosino can be used for the regeneration of the suppressor. The instrument can be used with any separation and detection methods.Typical areas of application:Anion or cation determinations with sequential suppression after Inline Matrix Elimination; Ultratrace analysis for anions or cations with Inline Calibration;
2.940.1430
940 Professional IC Vario ONE/SeS/Prep 3The 940 Professional IC Vario ONE/SeS/Prep 3 is the intelligent IC instrument with sequential suppression in combination with Metrohm Inline Sample Preparation, e.g., Inline Neutralization or Inline Cation Removal. An 800 Dosino can be used for the regeneration of the suppressor. The instrument can be used with any separation and detection methods.Typical areas of application:Anion determinations with sequential suppression after Inline Neutralization; Online trace analysis with Inline Neutralization and subsequent MiPCT-ME; Anion analysis after cation removal in samples with high transition metal concentrations, e.g., electroplating baths;
2.940.1440
940 Professional IC Vario ONE/SeS/HPGThe 940 Professional IC Vario ONE/SeS/HPG is the intelligent IC instrument with sequential suppression and binary high-pressure gradient. It can be extended with the 942 Extension Modules to up to a quaternary gradient system. An 800 Dosino can be used for the regeneration of the suppressor. The instrument can be used with any separation and detection methods.Typical areas of application:Gradient applications for anion or cation determinations with sequential suppression;
2.940.1450
940 Professional IC Vario ONE/SeS/LPGThe 940 Professional IC Vario ONE/SeS/LPG is the intelligent IC instrument with sequential suppression and low-pressure gradient. An 800 Dosino can be used for the regeneration of the suppressor. The instrument can be used with any separation and detection methods.Typical areas of application:Gradient applications for anion or cation determinations with sequential suppression;
2.940.1500
940 Professional IC Vario ONE/SeS/PPThe 940 Professional IC Vario ONE/SeS/PP is the intelligent IC instrument with sequential suppression and a peristaltic pump for suppressor regeneration. The instrument can be used with any separation and detection methods.Typical areas of application:Anion or cation determinations with sequential suppression and conductivity detection; Trace analysis for anions or cations; Online monitoring for anions or cations;
2.940.1510
940 Professional IC Vario ONE/SeS/PP/Prep 1The 940 Professional IC Vario ONE/SeS/PP/Prep 1 is the intelligent IC instrument with sequential suppression and peristaltic pump for suppressor regeneration in combination with Metrohm Inline Sample Preparation, e.g., Inline Ultrafiltration or Inline Dialysis. The instrument can be used with any separation and detection methods.Typical areas of application:Anion or cation determinations with sequential suppression after Inline Ultrafiltration or Inline Dialysis;
2.940.1520
940 Professional IC Vario ONE/SeS/PP/Prep 2The 940 Professional IC Vario ONE/SeS/PP/Prep 2 is the intelligent IC instrument with sequential suppression and a peristaltic pump for suppressor regeneration in combination with Metrohm Inline Sample Preparation, e.g., Inline Matrix Elimination or Inline Calibration. The instrument can be used with any separation and detection methods.Typical areas of application:Anion or cation determinations with sequential suppression after Inline Matrix Elimination; Ultratrace analysis for anions or cations with sequential suppression and Inline Calibration;
2.940.1530
940 Professional IC Vario ONE/SeS/PP/Prep 3The 940 Professional IC Vario ONE/SeS/PP/Prep 3 is the intelligent IC instrument with sequential suppression with a peristaltic pump for suppressor regeneration in combination with Metrohm Inline Sample Preparation, e.g., Inline Neutralization or Inline Cation Removal. The instrument can be used with any separation and detection methods.Typical areas of application:Anion determinations with sequential suppression after Inline Neutralization; Online trace analysis with Inline Neutralization and subsequent MiPCT-ME; Anion analysis after cation removal in samples with high transition metal concentrations, e.g., electroplating baths;
2.940.1540
940 Professional IC Vario ONE/SeS/PP/HPGThe 940 Professional IC Vario ONE/SeS/PP/HPG is the intelligent IC instrument with sequential suppression, a peristaltic pump for suppressor regeneration and binary high-pressure gradient. It can be extended with the 942 Extension Modules to up to a quaternary gradient system. The instrument can be used with any separation and detection methods.Typical areas of application:Gradient applications for anion or cation determinations with sequential suppression;
2.940.1550
940 Professional IC Vario ONE/SeS/PP/LPGThe 940 Professional IC Vario ONE/SeS/PP/LPG is the intelligent IC instrument with sequential suppression, a peristaltic pump for suppressor regeneration and low-pressure gradient. The instrument can be used with any separation and detection methods.Typical areas of application:Gradient applications for anion or cation determinations with sequential suppression;
2.940.1580
940 Professional IC Vario ONE/SeS/PP/MBThe 940 Professional IC Vario ONE/SeS/PP/MB is the intelligent IC instrument with sequential suppression and a peristaltic pump for suppressor regeneration. The instrument can be used with any separation and detection methods.Typical areas of application:Anion or cation determinations with sequential suppression and conductivity detection; Trace analysis for anions or cations; Online monitoring for anions or cations; Optimized for microbore (2 mm) applications, ideally suitable for coupling techniques (IC-MS or IC-ICP/MS); Supported with MagIC Net 4.1 and higher
2.940.2100
940 Professional IC Vario TWOThe 940 Professional IC Vario TWO is the intelligent two-channel IC instrument without suppression. The instrument can be used with any separation and detection methods.Typical areas of application:Two-channel applications without suppression for the determination of anions, cations, carbohydrates or polar, organic compounds; Combinations with conductivity, UV/VIS or amperometric detection;
2.940.2200
940 Professional IC Vario TWO/ChSThe 940 Professional IC Vario TWO/ChS is the intelligent two-channel IC instrument with a chemical suppressor. An 800 Dosino can be used for the regeneration of the suppressor. The instrument can be used with any separation and detection methods.Typical areas of application:Parallel anion and cation determinations; Two-channel applications with various detectors;
2.940.2300
940 Professional IC Vario TWO/ChS/PPThe 940 Professional IC Vario TWO/ChS/PP is the intelligent two-channel IC instrument with a chemical suppressor and a peristaltic pump for suppressor regeneration. The instrument can be used with any separation and detection methods.Typical areas of application:Parallel anion and cation determinations; Two-channel applications with various detectors;
2.940.2400
940 Professional IC Vario TWO/SeSThe 940 Professional IC Vario TWO/SeS is the intelligent two-channel IC instrument with sequential suppression (one channel). An 800 Dosino can be used for the regeneration of the suppressor. The instrument can be used with any separation and detection methods.Typical areas of application:Standard instrument for parallel anion and cation determinations; Trace analysis for anions and cations; Online monitoring for anions and cations;
2.940.2500
940 Professional IC Vario TWO/SeS/PPThe 940 Professional IC Vario TWO/SeS/PP is the intelligent two-channel IC instrument with sequential suppression (one channel) and a peristaltic pump for suppressor regeneration. The instrument can be used with any separation and detection methods.Typical areas of application:Standard instrument for parallel anion and cation determinations; Trace analysis for anions and cations; Online monitoring for anions and cations;
2.940.2580
940 Professional IC Vario TWO/SeS/PP/MBThe 940 Professional IC Vario TWO/SeS/PP is the intelligent two-channel IC instrument with sequential suppression (one channel) and a peristaltic pump for suppressor regeneration. The instrument can be used with any separation and detection methods.Typical areas of application:Standard instrument for parallel anion and cation determinations; Trace analysis for anions and cations; Online monitoring for anions and cations; Optimized for microbore (2 mm) applications, ideally suitable for coupling techniques (IC-MS or IC-ICP/MS); Supported with MagIC Net 4.1 and higher
2.941.0010
941 Eluent Production ModuleThe 941 Eluent Production Module enables the automatic production of an eluent. It enables continuous working without manual intervention and guarantees stable retention times. It can be combined with all Metrohm IC instruments and is monitored by MagIC Net.
2.942.0020
942 Extension Module Vario Prep 2The 942 Extension Module Vario Prep 2 is an extension module for the Professional IC Vario line of instruments. It multiplies the possibilities of Inline Sample Preparation and Liquid Handling in Professional IC Vario systems.Typical applicationsInline Dialysis in two-channel Vario systems; Inline Dialysis in systems without sample changers; Column switching and cutting techniques;
2.942.0040
942 Extension Module Vario HPGThe 942 Extension Module Vario HPG is an extension module for the Professional IC Vario line of instruments. It permits the addition of a further eluent in a Professional IC Vario high-pressure gradient system.Typical applicationsHigh-pressure gradient systems with up to four eluents;
2.942.0070
942 Extension Module Vario LQHThe 942 Extension Module Vario LQH is an extension module for the Professional IC Vario line of instruments. It expands the possibilities of Metrohm Inline Sample Preparation "MISP" and Liquid Handling and opens a Professional IC system for Online Monitoring.Typical applications:Extended Inline Sample Preparation; Online monitoring; Dilution without sample changers; Fully automatic sample derivation reactions;
2.942.0300
942 Extension Module Vario ChS/PPThe 942 Extension Module Vario ChS/PP is an extension module for the Professional IC Vario line of instruments. It permits the integration of a complete chemical suppression with a peristaltic pump for suppressor regeneration or Inline Neutralization or Inline Cation Removal, respectively, in a Professional IC Vario system.Typical applications:Chemical suppression for 2nd analysis channel; Inline Neutralization/Cation Removal;
2.942.0500
942 Extension Module Vario SeS/PPThe 942 Extension Module Vario SeS/PP is an extension module for the Professional IC Vario line of instruments. It permits the integration of a complete sequential suppression with a peristaltic pump for suppressor regeneration in a Professional IC Vario system.Typical applications:Sequential suppression for an additional analysis channel;
2.942.1060
942 Extension Module Vario ONE/DegThe 942 Extension Module Vario ONE/Deg is an extension module for the Professional IC Vario line of instruments. It permits the installation of an additional IC analysis channel in a Professional IC Vario system.Typical applications:Parallel anion and cation analysis with low-pressure gradient; Parallel anion and cation analysis with Inline Neutralization; Additional analysis channel with UV/VIS or amperometric detector;
2.943.0110
943 Professional Reactor VarioThe 943 Professional Reactor Vario is a heatable reactor, especially developed for pre- and post-column derivatization. It captivates by its robustness, the fast heating rate and the possibility of carrying out reactions at up to 150 °C.
2.943.0210
943 Professional Thermostat VarioThe 943 Professional Thermostat Vario is a stand-alone column oven for up to two columns with a maximum length of 150 mm. It captivates by its fast heating rate and the possibility of operating two separation columns together at up to 80°C.
2.946.0010
946 Portable VA Analyzer (scTRACE Gold)Portable metal analyzer for the determination of heavy metals such as arsenic, mercury, copper, lead, zinc, nickel, cobalt, iron, bismuth or antimony in the trace range. Instrument version for the scTRACE Gold. The system is comprised of potentiostat and separate measuring stand with integrated stirrer and replaceable electrode. The instrument is operated with the Portable VA Analyzer software. The power is supplied via the USB connector and via the integrated rechargeable battery. The instrument is supplied with all required accessories in a carrying case.
2.946.0020
946 Portable VA Analyzer (SPE)Portable metal analyzer for the determination of heavy metals. Device version for screen-printed electrodes (SPE). The system is comprised of potentiostat and separate measuring stand with integrated stirrer and replaceable electrode. The instrument is operated with the Portable VA Analyzer software. The power is supplied via the USB connector and via the integrated rechargeable battery. The device is supplied with all required accessories in a carrying case. Screen-printed electrodes are not included in the scope of delivery.
2.948.0010
948 Continuous IC Module, CEPAutomated hydroxide eluent production takes place with the 948 Continuous IC Module. Isocratic eluents can be produced and gradients can be run.The 948 Continuous IC Module, CEP is comprised of the following parts:948 Continuous IC Module; Eluent Producer Cartridge (EPC, 6.02850.200); Continuous anion trap (CT, 6.02850.100); High-pressure degasser (H-DEG, 6.02850.000); Example methods according to 948 Continuous IC Module manual.
MISA Basic
Metrohm Instant SERS Analyzer (MISA) is a high performance, portable analyzer system used for rapid, trace level detection / identification of illicit materials, food additives and food contaminants. MISA features a high-efficiency spectrograph equipped with Metrohm's unique Orbital-Raster-Scan (ORS) technology. It has a minimal footprint and extended battery life, perfect for on-site testing or mobile laboratory applications. MISA offers various Laser Class 1 attachments for flexible sampling options. Analyzer operation is available through BlueTooth or USB connectivity.The MISA Basic package allows users to customize MISA to suit their needs. It is a starter package that contains the basic components for performing SERS analyses using Metrohm's nanoparticle solutions.The MISA Basic package includes the MISA instrument, a MISA Vial Attachment, a USB Mini Cable, a USB Power Supply and MISA Cal software for operating the instrument.
2.950.0020
MISA AdvancedMetrohm Instant SERS Analyzer (MISA) is a high performance, portable analyzer system used for rapid, trace level detection / identification of illicit materials, food additives and food contaminants. MISA features a high-efficiency spectrograph equipped with Metrohm's unique Orbital-Raster-Scan (ORS) technology. It has a minimal footprint and extended battery life, perfect for on-site testing or mobile laboratory applications. MISA offers various Laser Class 1 attachments for flexible sampling options. Analyzer operation is available through BlueTooth or USB connectivity.The MISA Advanced package is a complete package that allows the user to perform SERS analyses using Metrohm's nanoparticle solutions and P-SERS strips.The MISA Advanced package includes a MISA Vial Attachment, a P-SERS Attachment, a ASTM Calibration Standard, a USB Mini Cable, a USB Power Supply and MISA Cal software for operating the MISA instrument. A ruggedized protective case is also provided to securely store the instrument and accessories.
29530010
TacticID-1064 ST BasicThe TacticID®-1064 ST is a 1064 nm handheld Raman analyzer for rapid field identification of explosives, narcotics, and other suspicious materials. The see-through capability of the TacticID-1064 ST can nondestructively analyze samples through opaque and transparent packaging, with sample threat level displayed prominently for first responders, safety personnel, law enforcement, bomb squads, customs and border protection, and hazmat teams to act quickly with minimal sample contact.The TacticID-1064 ST utilizes proven Raman spectroscopy, in combination with patented STRaman® technology, allowing users to get real-time actionable identification of unknown chemicals, narcotics, pharmaceutical drugs, explosives, and many other substances even through opaque barriers, significantly reducing operational uncertainty and response time.The TacticID-1064 ST with 1064 nm laser excitation and ST adapter for see-through applications scans a large sample area, producing a fluorescence-free spectrum, allowing users to identify tough street samples, inhomogeneous mixture,s and materials directly through packaging.This IP68-rated system features a high brightness display with touchscreen and/or hardware button interface for ease of use even through protective gear.Metrohm TacticID-1064 ST Basic package includes the See-Through Attachment, General Attachment, Polystyrene Attachment, Rugged Carry Case, cables, power supply, and laser safety goggles.
29530020
TacticID-1064 ST AdvancedThe TacticID®-1064 ST is a 1064 nm handheld Raman analyzer for rapid field identification of explosives, narcotics, and other suspicious materials. The see-through capability of the TacticID-1064 ST can nondestructively analyze samples through opaque and transparent packaging, with sample threat level displayed prominently for first responders, safety personnel, law enforcement, bomb squads, customs and border protection, and hazmat teams to act quickly with minimal sample contact.The TacticID-1064 ST utilizes proven Raman spectroscopy, in combination with patented STRaman® technology, allowing users to get real-time actionable identification of unknown chemicals, narcotics, pharmaceutical drugs, explosives and many other substances even through opaque barriers, significantly reducing operational uncertainty and response time.The TacticID-1064 ST with 1064 nm laser excitation and the ST Attachment for see-through applications scans a large sample area, producing a fluorescence-free spectrum, allowing users to identify tough street samples, inhomogeneous mixtures and materials directly through packaging.This IP68-rated system features a high brightness display with touchscreen and/or hardware button interface for ease of use even through protective gear.Metrohm TacticID-1064 ST Advanced package includes the See-Through Attachment, General Attachment, SWD Attachment, Vial Holder, LWD Attachment, Right Angle Attachment, Polystyrene Attachment, Immersion Probe, Rugged Carry Case, cables, power supply, and laser safety goggles.
29530030
TacticID-1064 ST FlexThe Metrohm TacticID-1064 ST Flex package allows the user to customize the Metrohm TacticID-1064 ST to meet their needs. The Flex package includes the basic components needed to operate Metrohm TacticID-1064 ST without sampling attachments. At least one sampling attachment is required for operation.The TacticID-1064 ST Flex package includes the Polystyrene Attachment, a USB-C to USB-C Cable (1.8 m), a Power Supply (15V 3A), and a TacticID-1064 ST v2 Battery.
2.954.0010
i-Raman NxG 532The i-Raman NxG family represents a new standard in laboratory Raman. Ideal for measurements of carbon nanomaterials, semiconductors, battery materials, and other electrochemical features, the i-Raman NxG 532 displays results in the 150 – 3400 cm-1 Raman shift range.Discover why the i-Raman NxG is the perfect way to gain control of your quality control measurements:High-sensitivity spectrometers can detect the weakest Raman signals.; Flexible fiber optic probe compatible with a wide array of accessories including a vial holder, cuvette holder, immersion probe, and see-through adapter.; Powerful SpecSuite software for easy Raman data collection in addition to quantitative model building, identification with spectral libraries, and routine analysis.; Compact and stackable to save on valuable bench space. ;
2.954.0030
i-Raman NxG 785HThe i-Raman NxG 785H is ideal for routine quality control and process monitoring, especially where speed, stability, and reliability are essential. It offers a balanced combination of performance and efficiency to measure Raman scattering from 100 – 2800 cm-1.Designed to support high signal throughput, this flexible system is ideal for monitoring chemical and polymer reactions, optimizing processes, and performing content uniformity testing of pharmaceutical tablets. The i-Raman NxG 785H can be easily adapted for see-through measurements even through opaque containers, adding to its versatility.The i-Raman NxG 785H is the go-to solution for teams looking for reliable Raman analysis in challenging operational environments.Discover why the i-Raman NxG is the perfect way to gain control of your quality control measurements:High-sensitivity spectrometers deliver results in seconds and can detect the faintest Raman signals; Flexible fiber optic probe compatible with a wide array of accessories, including a vial holder, cuvette holder, immersion probe, and see-through adapter; Powerful SpecSuite software for easy Raman data collection in addition to quantitative model building, identification with spectral libraries, and routine analysis; Compact and stackable to save on valuable bench space. ;
2.954.0040
i-Raman NxG 785SThe i-Raman NxG 785S is ideal for analysts needing detailed spectral data on complex materials. Designed for accuracy, it provides high spectral resolution over a wide Raman spectral range from 100–3350 cm⁻¹.Whether you're working in pharmaceuticals, polymers, or advanced materials, the 785S provides the clarity and versatility needed to elevate your QC measurements with greater precision. Its enhanced resolution allows you to easily detect subtle spectral features with confidence and improve library matching for more accurate identification.The i-Raman 785S is the trusted choice for users needing high-resolution Raman analysis over a broad spectral range, whether for advanced research or precise quality control in various industries.Discover why the i-Raman NxG is the perfect way to implement Raman into quality control measurements:High-sensitivity spectrometers deliver results in seconds and can detect the faintest Raman signals; Flexible fiber optic probe compatible with a wide array of accessories including a vial holder, cuvette holder, immersion probe, and see-through adapter; Powerful SpecSuite software for easy Raman data collection in addition to quantitative model building, identification with spectral libraries, and routine analysis; Compact and stackable to save on valuable bench space. ;
29540050
i-Raman NxG 1064The i-Raman NxG 1064 is a high-performance Raman spectrometer purpose-built for the most challenging and complex sample types. Featuring a 1064 nm laser and a wide spectral range of 100–2500 cm⁻¹, it excels at dramatically reducing fluorescence interference, making it ideal for analysis of highly fluorescent, brightly colored, or natural products that are problematic for conventional Raman systems.This advanced capability enables rapid, accurate measurements, even with challenging samples often found in pharmaceuticals, nutraceuticals, and petroleum sectors. Its versatile setup—including the ability to perform see-through measurements through opaque containers - delivers excellent results in rigorous quality control processes where suppressing fluorescence is essential.The i-Raman NxG 1064 is the preferred choice for users who need reliable, fluorescence-free Raman analysis of challenging quality control samples.Discover how this near-infrared laser helps you make the most challenging quality control measurements:High-sensitivity spectrometers deliver results in seconds and can detect the weakest Raman signals.; Near-IR laser measures highly colored and dark samples with ease.; Flexible fiber optic probe compatible with a wide array of accessories including a vial holder, cuvette holder, immersion probe, and see-through adapter.; Powerful SpecSuite software for easy Raman data collection in addition to quantitative model building, identification with spectral libraries, and routine analysis.; Compact and stackable to save on valuable bench space. ;
29540060
i-Raman DuoThe i-Raman Duo is a dual-laser Raman system that captures a wide spectral range with one spectrometer and sampling probe. It uses a 1064 nm laser to measure the fingerprint region (100–2500 cm⁻¹), providing accurate chemical details while reducing fluorescence interference. Additionally, an 860 nm laser covers the stretch region (2500 - 4600 cm⁻¹), allowing detection of specific Raman signals associated with moisture levels and molecular structure.Data from both lasers are collected sequentially and seamlessly combined in SpecSuite software for streamlined analysis. This broader spectral access improves discrimination and facilitates more reliable method development, making the i-Raman Duo ideal for applications in biomedical diagnostics, petrochemicals, biofuels, and agricultural analysis.Discover why the i-Raman Duo is the perfect tool to provide full spectrum clarity:Extended Raman detection range covering 100 cm-1 to 4600 cm-1; Reveals high wavenumber stretch bands of C≡C, S-H, C-H, N-H, and O-H above 2000 cm-1; Fully integrated system means one instrument provide seamless coverage of fingerprint and stretching regions.; Flexible fiber optic probe compatible with a wide array of accessories including a vial holder, cuvette holder, immersion probe, and see-through adapter.; Powerful SpecSuite software for easy Raman data collection in addition to quantitative model building, identification with spectral libraries, and routine analysis. ;
29550010
i-Raman Plus 532The i-Raman Plus 532 is a research-grade Raman spectrometer that combines high resolution and broad spectral coverage in a compact, portable design. Featuring a 532 nm laser and a spectral range from 65 to 3400 cm⁻¹, it is ideal for materials science, electrochemical research, and academic teaching.A TE-cooled CCD detector, low noise performance, and compatibility with a wide range of sampling accessories ensure that the i-Raman Plus 532 delivers precise Raman measurements even for weak signals. The system is supported by SpecSuite software for intuitive data collection, library matching, and quantitative analysis.The i-Raman Plus 532 is the trusted choice for users seeking high-performance Raman spectroscopy for research, education, and quality control - without the footprint or cost of a traditional benchtop system.Discover how the i-Raman Plus delivers research-grade Raman in an accessible package:Wide spectral coverage and high-resolution spectrometer configurations.; The system’s small footprint, lightweight design, and low power consumption ensure research-grade Raman analysis capabilities at any location.; The i-Raman Plus is equipped with a fiber probe for easy sampling, and can be used with a cuvette holder, a video microscope, an XYZ positioning stage with a probe holder.; The i-Raman Plus is supported by SpecSuite software for easy Raman data collection in addition to quantitative model building, identification with spectral libraries, and routine analysis.;
29550020
i-Raman Plus 785HRThe i-Raman Plus 785HR is a high-performance Raman spectrometer that offers the highest resolution in a compact, portable design. Equipped with a 785 nm laser and a high-quantum-efficiency CCD array detector with TE cooling, it provides low-noise performance even during extended integration times - making it ideal for detecting weak Raman signals.The system supports flexible sampling options using a fiber optic probe and accessories like a cuvette holder, video microscope, and XYZ stage. Powered by SpecSuite software, the i-Raman Plus 785HR enables both qualitative and quantitative analysis in research and routine workflows.The i-Raman Plus 785HR is the trusted choice for users seeking high-resolution Raman analysis across a wide spectral range, whether for advanced research or precise quality control measurements in diverse industries.Discover how the i-Raman Plus delivers research-grade Raman in an accessible package:Wide spectral coverage and high-resolution spectrometer configurations.; The system’s small footprint, lightweight design, and low power consumption ensure research-grade Raman analysis capabilities at any location.; The i-Raman Plus is equipped with a fiber probe for easy sampling, and can be used with a cuvette holder, a video microscope, an XYZ positioning stage with a probe holder.; The i-Raman Plus is supported by SpecSuite software for easy Raman data collection in addition to quantitative model building, identification with spectral libraries, and routine analysis.;
29550030
i-Raman Plus 785SThe i-Raman Plus 785S is a high-resolution, research-grade Raman spectrometer designed for precision and versatility in a compact, portable form. Equipped with a 785 nm laser and a wide spectral range from 65 to 3350 cm⁻¹, it provides excellent performance for both qualitative and quantitative analyses. Its TE-cooled CCD detector ensures low-noise measurements—even during extended integration times - making it ideal for detecting weak Raman signals in applications such as art conservation, mineralogy, and SERS.The system supports flexible sampling using a fiber optic probe and accessories such as a cuvette holder, video microscope, and XYZ stage. Powered by SpecSuite software, the 785S provides sophisticated data analysis and spectral identification.The i-Raman Plus 785S is the ideal choice for teams requiring reliable Raman analysis across a wide spectral range in challenging operational environments, from lab research to field research.Discover how the i-Raman Plus delivers research-grade Raman in an accessible package:Wide spectral coverage and high-resolution spectrometer configurations.; The system’s small footprint, lightweight design, and low power consumption ensure research-grade Raman analysis capabilities at any location.; The i-Raman Plus is equipped with a fiber probe for easy sampling, and can be used with a cuvette holder, a video microscope, an XYZ positioning stage with a probe holder.; The i-Raman Plus is supported by SpecSuite software for easy Raman data collection in addition to quantitative model building, identification with spectral libraries, and routine analysis.;
3500001080
VIONICVIONIC is our new-generation potentiostat/galvanostat that is powered by Autolab’s new INTELLO software.VIONIC offers the most versatile combined specifications of any single instrument currently on the market.Compliance voltage: ± 50 V; Standard current ± 6 A; EIS frequency: up to 10 MHz; Sampling interval: down to 1 μs; Also included in VIONIC’s price are features that would usually carry an additional cost with most other instruments such as:Electrochemical Impedance Spectroscopy (EIS); Selectable Floating; Second Sense (S2); Analog Scan;
3500003360
Autolab IMPThe Autolab IMP is a compact potentiostat/galvanostat with included EIS functionality. The overall specifications of the Autolab IMP (±10 V compliance/measured/applied voltage, ±100 mA measured/applied current, 10 μHz to 1 MHz EIS frequency range and included analog integrator) make it the ideal instrument for any educational lab, as well as for starting any electrochemistry projects.Autolab IMP is controlled by and delivered with the powerful NOVA software, including a dedicated “EC Fundamentals” procedures library, making the electrochemistry educational process even easier. The Analog and digital inputs/outputs are available to control Autolab accessories and external devices.
66079540
SpecSuite MCRL API LibraryMetrohm Comprehensive Raman Library (MCRL) API (Active Pharmaceutical Ingredients) for SpecSuite software.
66079550
SpecSuite MCRL Biochemicals LibraryMetrohm Comprehensive Raman Library (MCRL) Biochemicals Library for SpecSuite software.
66079560
SpecSuite MCRL Pesticides LibraryMetrohm Comprehensive Raman Library (MCRL) Pesticides for SpecSuite.
ProfIC-Vario-02-AnCat
"ProfIC Vario 2 AnCat" – Professional IC Vario system with inline ultrafiltrationThe Professional IC Vario system with Metrohm inline ultrafiltration, sequential suppression and conductivity detection enables fully automatic determination of anions and cations.Typical areas of application:Samples with slight to moderate contamination with particles, algae, or bacteria; Drinking and surface water; Process and waste water; Schematic representation
ProfIC-Vario-02-Anion
"ProfIC Vario 2 Anion" – Professional IC Vario system with Inline UltrafiltrationThe Professional IC Vario system with Metrohm Inline Ultrafiltration, sequential suppression, and conductivity detection enables fully automatic determination of anions or cations.Typical areas of application:Samples with slight to moderate contamination with particles, algae, or bacteria; Drinking and surface water; Process and waste water; Schematic representation
ProfIC-Vario-02-Cation
"ProfIC Vario 2 Cation" – Professional IC Vario system with inline ultrafiltrationThe Professional IC Vario system with Metrohm inline ultrafiltration and conductivity detection enables fully automatic determination of cations or anions (non-suppressed).Typical areas of application:Samples with slight to moderate contamination with particles, algae, or bacteria; Drinking and surface water; Process and waste water; Schematic representation
ProfIC-Vario-06-AnCat
"ProfIC Vario 6 AnCat" – Professional IC Vario system with Inline Dilution and Inline UltrafiltrationThe Professional IC Vario system with Metrohm Inline Dilution, Metrohm Inline Ultrafiltration, sequential suppression, and conductivity detection enables fully automatic determination of anions and cations that are present in very high concentrations and that have matrices containing particles.Typical areas of application:Rinse, process, and waste water; Extractions and digestion solutions; Food samples; Schematic representation
ProfIC-Vario-06-Anion
"ProfIC Vario 6 Anion" – Professional IC Vario system with Inline Dilution and Inline UltrafiltrationThe Professional IC Vario system with Metrohm Inline Dilution, Metrohm Inline Ultrafiltration, sequential suppression and conductivity detection enables fully automatic determination of anions or cations that are present in very high concentrations and that have matrices containing particles.Typical areas of application:Rinse, process, and waste water; Extractions and digestion solutions; Food samples; Schematic representation
ProfIC-Vario-06-Cation
"ProfIC Vario 6 Cation" – Professional IC Vario system with Inline Dilution and Inline UltrafiltrationThe Professional IC Vario system with Metrohm Inline Dilution, Metrohm Inline Ultrafiltration and conductivity detection enables fully automatic determination of cations or anions (non-suppressed) that are present in very high concentrations and that have matrices containing particles.Typical areas of application:Rinse, process, and waste water; Extractions and digestion solutions; Food samples; Schematic representation
A062026110C
2026 HD TitrolyzerThe 2026 HD Titrolyzer is a robust iteration, classified as heavy-duty (HD), derived from the 2026 Titrolyzer within the 202X Process Analyzers series.This high-performance instrument conducts precise potentiometric titrations, utilizing an advanced burette system and top-tier electrodes. It can perform a variety of titrations, including acid/base, redox, and precipitation titrations. The self-finding inflection point technique can be applied across most applications. Additionally, the analyzer may be used to measure pH in situations when it is also required. Additionally, the 2026 HD Titrolyzer is capable of using the dynamic standard addition method. It is equipped with a precise burette and high-performance Ion Selective Electrodes (ISE).This approach dynamically adjusts the standard addition volume in response to the actual sample concentration through a differential methodology. It can handle ISE slope values in different ranges, allowing the use of ISEs at very high or low measuring ranges. An integrated temperature measurement mitigates potential temperature-induced effects on the analysis results.Featuring an impressive leap in chemical resistance, this upgraded version incorporates FEP (Fluorinated Ethylene-Propylene) tubing into the analyzer, significantly expanding its adaptability for corrosive environments across diverse industries, ultimately enhancing its versatility and overall value.Several markets are a perfect fit for the 2026 HD Titrolyzer such as chemical, petrochemical, semiconductor, environmental, mining, steel/metal, and potable water.Selected applications include:• Acidic or alkaline solutions• Chloride• Hydrogen peroxide• Hardness• Cyanide• Copper• Hydrogen fluoride• pH• and more
A062029110C
2029 HD Process PhotometerThe 2029 HD Process Photometer is a robust iteration, classified as heavy-duty (HD), derived from the 2029 Process Photometer within the 202X Process Analyzers series.This cutting-edge device specializes in sensitive photometric absorption measurements within the visible light range. With detection limits reaching the low ppb range, it proves invaluable across diverse applications.Central to this analyzer is a high-performance, compact photometer module, engineered for seamless 24/7 online measurement. Equipped with a thermostated cuvette with 3 cm light path and LED technology, it guarantees consistent and precise readings, regardless of environmental conditions. The system employs automated detection of color development stabilization through differential absorbance measurements. This feature ensures smooth transition of photometric laboratory techniques to the 2029 HD Process Photometer, eliminating any potential bias and enhancing process validation.This enhanced version showcases a remarkable advancement in chemical resistance by integrating FEP (Fluorinated Ethylene-Propylene) tubing into this analyzer, substantially broadening their suitability for use in corrosive settings spanning various industries, thus elevating their versatility and overall value proposition.Several markets are a perfect fit for the 2029 HD Process Photometer such as chemical, environmental, semiconductor, petrochemical, food and beverage, potable water, and energy/power.Selected applications include:Phosphate; Silica; Chlorine; Nickel; Zinc; Copper; Chromium; Ammonia; Nitrate; Nitrite; Hardness; and more;
A252035011C
2035 Process Analyzer - PotentiometricThe 2035 Process Analyzer for Potentiometric Titration and Ion-Selective Measurements performs analyses with dedicated electrodes and titrants. Additionally, this version of the 2035 Process Analyzer is also suitable for Ion-Selective Analysis using Metrohm high performance electrodes. This accurate standard addition technique is ideal for more difficult sample matrices.The potentiometric version of the analyzer offers the most accurate results of all measuring techniques available on the market. With far more than 1000 applications already available, titration is also one of the most used methods for analysis in almost any industry for hundreds of components varying from acid/base analysis to metal concentrations in plating baths.Titration is one of the most widespread absolute chemical methods in use today. The technique is straightforward with no need for calibration.Some titration options available for this configuration:Potentiometric titration; Colorimetric titration with Fiber Optic Technology; Moisture determination based on the Karl Fischer titration method;
A252035021C
2035 Process Analyzer - PhotometricThe 2035 Process Analyzer for Photometric Measurements includes a compact photometer module which is stable over a large concentration range, and is thermostated with stirrer capabilities. This analyzer is offered with two options: a cuvette system or a fiber optic dipping probe. The cuvette system is compact in order to reduce reagent consumption, yet it offers a long optical path length for high sensitivity. The fiber optic immersion probe broadens our application range substantially by making the accurate measurement of high concentration samples simpler through the use of internal sample dilution steps and a smaller light path than the cuvette system.Photometric analysis is a common, widely-used technique which can determine ions such as ammonia, manganese, and iron in drinking water or even calcium and magnesium in brine solutions. Undesired sample matrix effects such as sample color or turbidity can be removed with differential measurements, taken before and after the addition of a color reagent.
A252035031C
2035 Process Analyzer - ThermometricThe 2035 Process Analyzer for Thermometric Titration performs automated titrations with a fast-responding, highly sensitive temperature sensor. Instead of the electrochemical potential, the endpoint is determined by enthalpy, i.e., by change in temperature of the solution during the titration. Thermometric titration is by far the most robust titration method available on the market and is excellent for 24/7 online process applications, such as the monitoring of etching baths. No sensor calibration is necessary, and less cleaning steps are needed. Rapid analysis is possible with this technique; acid mixtures, e.g., can be analyzed in less than three minutes.Thermometric titration can be used for a wide variety of titration analyses and is well-suited to handle aggressive sample matrices because of the robust thermometric sensor. The sensor needs no maintenance because fouling and other undesired interactions are minimal, and there are no membrane or diaphragm problems as with other titration methods. Thermometric titration is a problem solver for difficult samples which cannot be titrated potentiometrically, and is also a preferred technique in situations when HF is present in samples.
A302060011C
2060 Process AnalyzerThe2060 Process Analyzer is an online wet chemistry analyzer that is suitable for countless applications. This process analyzer offers a new modularity concept consisting of a central platform, which is called a «basic cabinet».The basic cabinet consists of two parts. The upper part contains a touch screen and an industrial PC. The lower part contains the flexible wet part where the hardware for the actual analysis is housed. If the basic wet part capacity is not sufficient enough to solve an analytical challenge, then the basic cabinet can be expanded to up to four additional wet part cabinets to ensure enough space to solve even the most challenging applications. The additional cabinets can be configured in such a way that each wet part cabinet can be combined with a reagent cabinet with integrated (non-contact) level detection to increase analyzer uptime.The 2060 process analyzer offers different wet chem techniques: titration, Karl Fischer titration, photometry, direct measurement and standard additions methods.To meet all project requirements (or to meet all your needs) sample preconditioning systems can be provided to guarantee a robust analytical solution. We can provide any sample preconditioning system, such as cooling or heating, pressure reduction and degassing, filtration, and many more.
A302060041C
2060 TI Ex Proof Process AnalyzerThe 2060 TI Ex Proof Process Analyzer is an intrinsically safe wet chemistry process analyzer for process monitoring in gas or dust zoned hazardous environments rated as zone 0, 1 and 2, or 20, 21, and 22. It complies with EU Directives 94/9/EC (ATEX95) and is certified for Zone 1 and Zone 2 areas. Its design combines a purge and pressurization system with intrinsically safe electronic devices. The air purging phase and permanent overpressure prevent potentially explosive atmospheres from entering the analyzer enclosure.The analyzer’s design eliminates the need for purging large analyzer shelters, allowing for direct installation at the production line within hazardous zones. It supports various kinds of techniques, including titration, Karl Fischer titration, photometry, ion-selective electrode measurements, and direct measurements.
A302060041C
2060 TI Ex Proof Process AnalyzerThe 2060 TI Ex Proof Process Analyzer is an intrinsically safe wet chemistry process analyzer for process monitoring in gas or dust zoned hazardous environments rated as zone 0, 1 and 2, or 20, 21, and 22. It complies with EU Directives 94/9/EC (ATEX95) and is certified for Zone 1 and Zone 2 areas. Its design combines a purge and pressurization system with intrinsically safe electronic devices. The air purging phase and permanent overpressure prevent potentially explosive atmospheres from entering the analyzer enclosure.The analyzer’s design eliminates the need for purging large analyzer shelters, allowing for direct installation at the production line within hazardous zones. It supports various kinds of techniques, including titration, Karl Fischer titration, photometry, ion-selective electrode measurements, and direct measurements.
A352060011C
2060 VA/CVS Process AnalyzerThe 2060 VA Process Analyzer is an online process analyzer that implements voltammetric analyses to deliver accurate process monitoring. Thanks to its customizable wet part modules, dosing units, pumps, and level sensors can be integrated to target any challenge.The 2060 CVS Process Analyzer is an online process analyzer designed for online analysis of organic additives in electroplating baths within PCB and semiconductor industries. By using an electrode reaction that mimics the production process, it makes it possible to quantify additives in authentic conditions. Additionally, the modularity of the analyzer supports titration, photometry, sample preconditioning, and interfacing with multiple sample streams.
A362060011C
2060 XRF Process AnalyzerThe 2060 XRF Process Analyzer is a non-destructive online process analyzer employing Energy-Dispersive X-ray Fluorescence (EDXRF) technology. This analyzer ensures precise and nearly real-time monitoring of liquid sample streams within industrial processes.With the capacity to connect up to 20 sampling points, the 2060 XRF Process Analyzer facilitates seamless online XRF analysis. As part of the 2060 Platform, it seamlessly integrates multiple analysis techniques into one unified platform. Experience the power of combining XRF with titration or photometry for comprehensive process insights like never before.
A402060011C
2060 IC Process AnalyzerThe 2060 Ion Chromatograph (IC) Process Analyzer from Metrohm Process Analytics is based on the modular 2060 platform concept. This modular architecture enables the separation of the cabinets in different locations around a plant and the connection to up to 20 sample streams for time-saving sequential analysis at multiple areas inside of a plant.This analyzer has no limits in terms of hardware, software, and applications customization. From continuous eluent production module, wet part modules for sample conditioning, and multiple IC detector blocks, the 2060 IC Process Analyzer has all the options for any industrial application.The 2060 software is an «all-in-one» software solution that controls the analyzer to perform routine analysis, with different operation methods, time sheets, and trend charts. Furthermore, thanks to the variety of process communication protocols (e.g. Modbus or Discrete I/O), the 2060 software is programmable to send automatic feedback and alarms to the process and take action if necessary (e.g., re-measure a sample, or start a cleaning cycle). All of these features ensure fully automatic diagnostics of the industrial process – around the clock, seven days a week.
A4020600510C
MARS, Metrohm AeRosol SamplerThe Metrohm AeRosol Sampler "MARS" is a simpler solution for aerosol monitoring. The MARS can be used as a preconditioning unit for various analytical applications under ambient conditions or in industrial environments. No sample storage is required.Possible applications:Aerosol monitoring inside buildings; Emission monitoring; Monitoring ambient air; Air measurements in tunnels; Quality control in clean rooms; Monitoring of heavy metals (e.g. Cr(VI));
A402060111C
2060 MARGA M – Continuous air monitoringThe 2060 Monitor for AeRosols and Gases in ambient Air (MARGA) uses ion chromatography to monitor air quality by measuring the concentration of water-soluble gases and aerosols in air containing different sizes of particulate matter. Air is drawn in to the instrument by a vacuum pump at a constant flow rate. Before entering the instrument, the maximum size of particulate matter (PM) can be limited by utilizing a size-selective inlet (e.g. PM 1.0, PM 2.5 or PM 10). The water-soluble gases are absorbed in a Wet Rotating Denuder (WRD) device and then the water-soluble ions in the aerosols are extracted in a Steam-Jet Aerosol Collector (SJAC).A dual-channel ion chromatograph (IC) quantifies anions and cations in aerosols and water-soluble gases simultaneously with high accuracies to reach detection limits as low as 0.001 µg/m3.The analyzer’s performance can be remotely observed by using a direct internet connection to make adjustments when necessary and to access stored results. The 2060 MARGA M version is ideal for 24/7 continuous monitoring at a permanent site.; Data collection with a time resolution of 1h to study e.g. diurnal variation or trajectory models for pollution events.; Remote control or touch screen to easily access results, trend graphs, and more.; Gases measured: Hydrochloric Acid (HCl), Nitric acid (HNO3), Nitrous acid (HONO), Sulfur dioxide (SO2), Ammonia (NH3); Aerosol ions measured: Chloride (Cl-), Nitrate (NO3-), Sulfate (SO42-), Ammonium (NH4+), Potassium (K+), Calcium (Ca2+), Magnesium (Mg2+);
A402060121C
2060 MARGA R – Air monitoring for research campaignsThe 2060 Monitor for AeRosols and Gases in ambient Air (MARGA) uses ion chromatography to monitor air quality by measuring the concentration of water-soluble gases and aerosols in air containing different sizes of particulate matter. Air is drawn in to the instrument by a vacuum pump at a constant flow rate. Before entering the instrument, the maximum size of particulate matter (PM) can be limited by utilizing a size-selective inlet (e.g. PM 1.0, PM 2.5 or PM 10). The water-soluble gases are absorbed in a Wet Rotating Denuder (WRD) device and then the water-soluble ions in the aerosols are extracted in a Steam-Jet Aerosol Collector (SJAC).A dual-channel ion chromatograph (IC) quantifies anions and cations in aerosols and water-soluble gases simultaneously with high accuracies to reach detection limits as low as 0.001 µg/m3.The analyzer’s performance can be remotely observed by using a direct internet connection to make adjustments when necessary and to access stored results. The 2060 MARGA R version is ideal for research campaigns: the IC can be used as a standalone lab instrument for other projects when not in use for 24/7 air quality monitoring.; Data collection with a time resolution of 1h to study e.g. diurnal variation or trajectory models for pollution events.; Remote control or touch screen to easily access results, trend graphs, and more.; Gases measured: Hydrochloric Acid (HCl), Nitric acid (HNO3), Nitrous acid (HONO), Sulfur dioxide (SO2), Ammonia (NH3); Aerosol ions measured: Chloride (Cl-), Nitrate (NO3-), Sulfate (SO42-), Ammonium (NH4+), Potassium (K+), Calcium (Ca2+), Magnesium (Mg2+);
A402080120
MARGA-SystemThe MARGA system is a semi continuous Monitor for AeRosols and Gases in Ambient air. The analytical system is capable of quantifying anions and cations in aerosols and water soluble gases simultaneously. First the gases are absorbed in a Wet Rotating Denuder device and then separated from aerosols in a Steam-Jet Aerosol Collector.Two ion chromatographs detect and analyze the collected gas and aerosol samples with high accuracies to reach detection limits as low as 0.01 µg/m3.The analyzers performance can be remotely measured using a direct internet connection to make adjustments when necessary and to access stored results.MARGA's performance has been verified by the U.S. EPA Environmental Technology Verification (ETV) program.
A472060000C
2060 Human InterfaceThe 2060 Human Interface (HI) is a reliable industrial process controller with a rugged enclosure and high-definition touch screen. Designed with IP65 protection in mind, this process controller is perfect for all industries, especially in harsh environments.The 2060 HI is part of the 2060 process platform, which means that it is highly versatile and flexible in accordance to Metrohm Process Analytics design philosophy. With that concept in mind, the 2060 HI is designed to be connected to our family of process spectrometers (Near infrared and Raman) and to wet chemistry analyzers (titration and ion chromatography) to tackle any industrial challenge.The 2060 software integrated in this process controller is an «all-in-one» software solution that controls process analyzers to perform routine analysis, with different operation methods, time sheets, and trend charts. Furthermore, thanks to the variety of process communication protocols (e.g. Modbus or Discrete I/O), the 2060 software is programmable to send automatic feedback and alarms to the process and take corrective action if necessary (e.g., re-measure a sample, validation standard or start a cleaning cycle). All of these features ensure fully automatic and smart diagnostics of the industrial process – around the clock, seven days a week
A472060010C
2060 The NIR-R AnalyzerThe 2060 The NIR-R Analyzer is the next generation of process spectroscopy instruments from Metrohm Process Analytics. With its unique and proven design from the inside out, it delivers accurate results every 10 seconds. It can provide non-destructive analysis of liquids and solids directly in the process line or in a reaction vessel by using fiber optics and contact probes. It has been designed to connect up to five (5) probes and/or flow-cells. All five channels can be configured independently from each other using our versatile embedded proprietary software.As part of the 2060 Platform, the 2060 The NIR-R Analyzer enables the unique separation of the human interface (HI) and NIR cabinet by optical fibers. This remote configuration allows the placement of both cabinets at different locations around the plant depending on customer preference and area classifications. Besides, it is available in three other versions: the 2060 The NIR Analyzer, 2060 The NIR-Ex Analyzer, and 2060 The NIR-REx Analyzer.
A472060020C
2060 The NIR AnalyzerThe 2060 The NIR Analyzer is the next generation of process spectroscopy instruments from Metrohm Process Analytics. With its unique and proven design from the inside out, it delivers accurate results every 10 seconds. It can provide non-destructive analysis of liquids and solids directly in the process line or in a reaction vessel by using fiber optics and contact probes. It has been designed to connect up to five (5) probes and/or flow-cells. All five channels can be configured independently from each other using our versatile embedded proprietary software.As part of the 2060 Platform, the 2060 The NIR Analyzer has a modular concept and it is available in three other versions: the 2060 The NIR-R Analyzer,2060 The NIR-Ex Analyzer, and 2060 The NIR-REx Analyzer.
A472060030C
2060 The NIR-Ex AnalyzerThe 2060 The NIR-Ex Analyzer is the next generation of process spectroscopy instruments from Metrohm Process Analytics. With its unique and proven design from the inside out, it delivers accurate results every 10 seconds. It can provide non-destructive analysis of liquids and solids directly in the process line or in a reaction vessel by using fiber optics and contact probes. It has been designed to connect up to five (5) probes and/or flow-cells. All five channels can be configured independently from each other using our versatile embedded proprietary software.Additionally, this analyzer is IECEx certified and fulfills the ATEX EU Directives. It has been designed with an approved purge/pressurization system together with intrinsically electronic devices, preventing any potentially explosive fumes or gases from the ambient air entering the analyzer enclosure. Furthermore, it is available in three other versions: the 2060 The NIR Analyzer, 2060 The NIR-R Analyzer, and 2060 The NIR-REx Analyzer.
A472060040C
2060 The NIR-REx AnalyzerThe 2060 The NIR-REx Analyzer is the next generation of process spectroscopy instruments from Metrohm Process Analytics. With its unique and proven design from the inside out, it delivers accurate results every 10 seconds. It can provide non-destructive analysis of liquids and solids directly in the process line or in a reaction vessel by using fiber optics and contact probes. It has been designed to connect up to five (5) probes and/or flow-cells. All five channels can be configured independently from each using our versatile embedded proprietary software.As part of the 2060 Platform, the 2060 The NIR-REx Analyzer enables the unique separation of the human interface (HI) and NIR cabinet by optical fibers. This remote configuration allows the placement of both cabinets at different locations around the plant depending on customer preference and area classifications.Additionally, this analyzer is IECEx certified and fulfills the ATEX EU Directives. It has been designed with an approved purge/pressurization system together with intrinsically electronic devices, preventing any potentially explosive fumes or gases from the ambient air entering the analyzer enclosure. Furthermore, it is available in three other versions: the 2060 The NIR Analyzer, 2060 The NIR-R Analyzer, and 2060 The NIR-Ex Analyzer.
A472060100C
PTRam AnalyzerThe PTRam Analyzer is a process development 785 nm Raman analyzer designed for product and process development use in labs and pilot plants. It is a high performance, precise, robust, and reliable Raman system featuring self-calibration and automated performance validation to ensure validity of every measurement.This single-sample channel system includes a lab fiber optic probe with an user-replaceable shaft. The PTRam is 19” rack-mountable. The PTRam operates with Vision software and it can be connected with a 2060 Human Interface.
A472060110C
PTRam Extended Range AnalyzerThe PTRam Extended Range Analyzer is a process development 785 nm Raman analyzer. It is designed for product and process development use in labs and pilot plants. With its extended range of wavelength monitoring, this analyzer provides enhanced capabilities for your molecular analysis needs.This advanced system allows detection from low-frequency modes below 150 cm-1. This enables the analysis of lattice vibrations and intermolecular interactions that are critical for materials science and polymer research. Its upper range, reaching up to 3350 cm-1, facilitates the detection of high-frequency vibrations such as N-H stretching modes. This is essential for the characterization of organic and biological molecules. These improvements significantly expand the analyzer's ability to characterize complex molecular structures with precision.The PTRam remains a high-performance, robust, and reliable Raman system that features self-calibration and automated performance validation to ensure the validity of every measurement. This single-sample channel system includes a lab fiber optic probe with a user-replaceable shaft which offers versatility and ease of maintenance. Additionally, the PTRam is 19” rack-mountable and operates with Vision software, with the option to connect to a 2060 Human Interface for streamlined operation.The PTRam is suitable for use in many industries including pharmaceuticals, polymers, chemicals, environmental science, petrochemical, battery technology, semiconductor, and mining, demonstrating its versatility in addressing complex analytical challenges across diverse fields.
A472060200C
2060 Raman AnalyzerThe 2060 Raman Analyzer is a non-destructive inline process analyzer that implements Raman spectroscopy to deliver accurate and real-time process monitoring. Thanks to its self-monitoring capabilities, high-throughput spectrometer, and long-lasting laser stability, it provides immediate insights into chemical composition and enables timely adjustments for optimal process control, ensuring consistent product quality, and enhancing overall operational efficiency.Up to 5 probes and/or flow cells can be connected to the analyzer. All 5 channels can be configured independently from each other in the embedded proprietary software.
A472060300C
2060 RISE2060 RISE is a 785nm inline Raman spectrometer designed for rapid, non-destructive analysis of various materials, including incoming raw materials, pharmaceutical APIs, and impurities. Its CMOS detector reduces noise and the need for cooling, while improving sensitivity, allowing detection of sensitive Raman signals.2060 RISE is available in various configurations to suit different needs: the 2060 RISE for standard applications, the 2060 RISE-HT for high-temperature environments, the 2060 RISE-Ex for hazardous areas, and the 2060 RISE-Ex-HT for applications in both extreme heat and hazardous conditions.
A472060310C
2060 RISE-HT2060 RISE-HT is a rugged, high-temperature inline Raman spectrometer designed to withstand harsh industrial environments. With its advanced vortex cooling system, it can operate reliably in temperatures up to 150°C, making it ideal for applications in chemical processing, petrochemical, and pharmaceutical industries. Like its standard version, the 2060 RISE-HT powers a 785nm laser and a high-sensitivity CMOS detector to deliver rapid, non-destructive analysis of various materials.
A472060320C
2060 RISE-Ex2060 RISE-Ex is a compact, explosion-proof inline Raman spectrometer designed for use in hazardous areas. Its unique purge system, located outside the sensor, maintains a safe atmosphere within the device while preserving its small footprint.Ideal for industries like oil and gas, petrochemical, and pharmaceutical, the 2060 RISE-Ex provides reliable and accurate analysis in even the most challenging environments.
A472060330C
2060 RISE-HT-EX2060 RISE-HT-Ex is an innovative, explosion-proof inline Raman spectrometer designed to operate in both hazardous and high-temperature environments. Combining the rugged construction of the 2060 RISE-HT with the safety features of the 2060 RISE-Ex, this powerful analyzer is ideal for challenging industrial applications.Equipped with an advanced cooling system, the 2060 RISE-HT-Ex can withstand temperatures up to 150°C, making it suitable for harsh conditions in refineries, petrochemical plants, and other high-temperature industrial settings. Its robust design and independent sensor architecture ensure continuous monitoring and minimal downtime, even in the most demanding environments.
A629280110C
NIRS XDS Process Analyzer – MicroBundle SinglePointThe NIRS XDS Process Analyzer – MicroBundle provides the next generation of process analyzers for real-time analysis in the pharmaceutical and chemical industries Non-destructive, accurate measurements of practically any sample type (powders, slurries, liquids,..) are performed directly in the process line, granulator, dryer or reaction vessel. The micro bundle fiber optics allows the measuring point to be up to 35 meter away from the XDS NIR process analyzer.
A629280120C
NIRS XDS Process Analyzer – MicroBundle 4 ChannelsThe NIRS XDS Process Analyzer – MicroBundle provides the next generation of process analyzers for real-time analysis in the pharmaceutical and chemical industries. Non-destructive, accurate measurements of practically any sample type (powders, slurries, liquids,..) are performed directly in the process line, granulator, dryer or reaction vessel. Up to 4 probes and/or flow-cells can be connected to the analyzer. All 4 channels can be configured independently from each other and the micro bundle fiber optics allows the 4 measuring points to be up to 35 meter away from the XDS NIR process analyzer.
A629280130C
NIRS XDS Process Analyzer – MicroBundle 9 ChannelsThe NIRS XDS Process Analyzer – MicroBundle provides the next generation of process analyzers for real-time analysis in the pharmaceutical and chemical industries. Non-destructive, accurate measurements of practically any sample type (powders, slurries, liquids,..) are performed directly in the process line, granulator, dryer or reaction vessel. Up to 9 probes and/or flow-cells can be connected to the analyzer. All 9 channels can be configured independently from each other and the micro bundle fiber optics allows the 9 measuring points to be up to 35 meter away from the XDS NIR process analyzer.
A629280210C
NIRS XDS Process Analyzer – SingleFiber SinglePointThe NIRS XDS Process Analyzer – SingleFiber provides the next generation of process analyzers for real-time analysis in the pharmaceutical and chemical industries. Non-destructive, accurate measurements of clear liquids are performed directly in the process line or in a reaction vessel. Single fiber optics allows the measuring point to be up to 100 meter away from the XDS NIR process analyzer.
A629280220C
NIRS XDS Process Analyzer – SingleFiber 4 ChannelsThe NIRS XDS Process Analyzer – SingleFiber provides the next generation of process analyzers for real-time analysis in the pharmaceutical and chemical industries. Non-destructive, accurate measurements of clear liquids are performed directly in the process line or in a reaction vessel. All 4 channels can be configured independently from each other in the software. Single fiber optics allows the 4 measuring points to be up to 100 meter away from the XDS NIR process analyzer.
A629280230C
NIRS XDS Process Analyzer – SingleFiber 9 ChannelsThe NIRS XDS Process Analyzer – SingleFiber provides the next generation of process analyzers for real-time analysis in the pharmaceutical and chemical industries. Non-destructive, accurate measurements of clear liquids are performed directly in the process line or in a reaction vessel. Up to 9 probes and/or flow-cells can be connected to the analyzer. All 9 channels can be configured independently from each other in the software. Single Fiber optics allows the 9 measuring points to be up to 100 meter away from the XDS NIR process analyzer.
A629280310
NIRS XDS Process Analyzer – DirectLight/NonContact-Single pointBased on NIR XDS technology, the NIRS XDS Process Analyzer – DirectLight/NonContact is numbered among the next generation of non-contact process analyzers for real-time analysis above a conveyor belt, web or sheet. Non-destructive, accurate measurements are performed of practically any moving solid product.
A629281110
NIRS Analyzer PRO – ContactReflectionThe NIRS Analyzer Pro is a single point process analysis system based on high resolution diode array technology. It provides non-destructive analysis of solids, granules, or powders through a glass window directly in the process line without bypass – a true inline system.
A629281120
NIRS Analyzer PRO – FiberSystemThe NIRS Analyzer Pro is a single point process analysis system based on high resolution diode array technology. It provides non-destructive analysis of liquids, granules, powders, slurries or opalescent substances by using fiber optics microbundles and contact probes for reflectance and transflectance measurements.
A629281130
NIRS Analyzer PRO – DirectLight/NonContactThe NIRS Analyzer Pro is a single point process analysis system based on high resolution diode array technology. It provides non-destructive analysis of solids like granules and powders. This system is typically mounted above a conveyor belt in order to analyze products passing by. Fast moving, uneven surfaces are able to be analyzed easily with this configuration.
ADI2045010C
ADI 2045TI Process AnalyzerThe ADI 2045TI is a wet chemical analyzer. At its core lies an industrial PC with an industry standard Communication Logic Controller. Its modular wet part gives maximum flexibility to adapt the configuration to a specific application. The burettes or pumps can be chosen for all liquid handling and selection valves implemented for multiple sample streams.Simultaneous analysis between two streams and several methods gives faster response times. The control software on top of tiamo allows the user to program different sequences of analysis and set conditions and alarms. Remote access is achieved with a standard remote desktop tool for further diagnostics.The 2045TI is offering wet chem techniques: titration, Karl Fischer titration, colorimetry, direct measurement and standard additions methods. Data from external devices such as flow, density and turbidity can be imported and processed by the analyzer to compensate for results automatically and provide added monitoring value.
ADI2045100
ADI 2045PL ProcessLabThe ProcessLab ADI 2045PL is a robust routine system for at-line ion analysis on the production floor and in control labs. It is typically used for multiple sampling points and parameters that do not require fast analysis and response times. Samples are taken manually at each sampling point, fed into the ProcessLab (manually or by means of an autosampler), and automatically analyzed.The ProcessLab is offering a variety of techniques: titration, colorimetry and ISE measurements. Additional techniques can be integrated such as density, temperature, flow, turbidity and conductivity.The ProcessLab Manager software offers a flexible user-defined platform with an easy-to-use graphical interface. ProcessLab ADI 2045PLis easily integrated to a local network or fully operated by remote control.
AUT101.S
Autolab PGSTAT101The entry level in the Autolab range of electrochemical instruments, the Autolab/PGSTAT101 in combination with the powerful NOVA software, can be used for most of the standard electrochemical techniques. Autolab/PGSTAT101 is an affordable potentiostat/galvanostat without compromising on quality and specifications, making it an ideal instrument for students and educational purposes.The small footprint allows you to place a high quality potentiostat/galvanostat on a crowded workbench. Analog and digital inputs and outputs for interfacing and controlling external devices are available. The Autolab/PGSTAT101 comes with an internal dummy cell and a built-in analog integrator.
AUT204.S
Autolab PGSTAT204The PGSTAT204 combines the small footprint with a modular design. The instrument includes a base potentiostat/galvanostat with a compliance voltage of 20 V and a maximum current of 400 mA or 10 A in combination with the BOOSTER10A. The potentiostat can be expanded at any time with one additional module, for example the FRA32M electrochemical impedance spectroscopy (EIS) module.The PGSTAT204 is an affordable instrument which can be located anywhere in the lab. Analog and digital inputs/outputs are available to control Autolab accessories and external devices are available. The PGSTAT204 includes a built-in analog integrator. In combination with the powerful NOVA software it can be used for most of the standard electrochemical techniques.
AUT302N.MBA.S
AUT302N.MBA.SThe PGSTAT302N MBA (Multi BA) is a special version of the PGSTAT302N which can be fitted with up to 6 working electrodes. Besides the main working electrode, 5 additional bipotentiostat modules (BA module) can be installed in the instrument, alongside the optional FRA32M module.
AUTM101.S
Multi Autolab/M101The Multi Autolab/M101 is a multi channel potentiostat/galvanostat based on the compact Autolab PGSTAT101. It consist of a Multi Autolab Cabinet which can be fitted with up to 12 M101 modules. Each M101 is a completely independent potentiostat/galvanostat, allowing you to perform different measurements on each channel at the same time.The Multi Autolab can be controlled from up to three different computers simultaneously, allowing to share the available channels among different users.The Multi Autolab instruments can be complemented by a selection of optional modules. Each M101 module can be coupled to one optional module in the instrument. The maximum number of optional modules is 6. Optional modules or additional M101 modules can be installed at any time.
AUTM204.S
Multi Autolab/M204The Multi Autolab is a multi channel potentiostat/galvanostat based on the compact Autolab PGSTAT204. It consist of a Multi Autolab Cabinet which can be fitted with up to 12 M204 modules. Each M204 is a completely independent potentiostat/galvanostat, allowing you to perform different measurements on each channel at the same time.The Multi Autolab can be controlled from up to three different computers simultaneously, allowing to share the available channels among different users.The Multi Autolab instruments can be complemented by a selection of optional modules. Each M204 module can be coupled to one optional module in the instrument. The maximum number of optional modules is 6. Optional modules or additional M204 modules can be installed at any time.
BWT-840001134
TacticID-1064 STThe TacticID®-1064 ST is a 1064 nm handheld Raman analyzer for rapid field identification of explosives, narcotics, and other suspicious materials. The see-through capability of the TacticID-1064 ST can nondestructively analyze samples through opaque and transparent packaging, with sample threat level displayed prominently for first responders, safety personnel, law enforcement, bomb squads, customs and border protection, and hazmat teams to act quickly with minimal sample contact.The TacticID-1064 ST utilizes proven Raman spectroscopy, in combination with patented STRaman® technology, allowing users to get real-time actionable identification of unknown chemicals, narcotics, pharmaceutical drugs, explosives and many other substances even through opaque barriers, significantly reducing operational uncertainty and response time.The TacticID-1064 ST with 1064 nm laser excitation and ST adapter for see-through applications scans a large sample area, producing a fluorescence-free spectrum with no sample burning, allowing users to identify dark and colored materials, tough street samples, inhomogeneous mixtures and materials directly through packaging.This IP68-rated system features a high brightness display with touchscreen and/or hardware button interface for ease of use even through protective gear.
BWT-840001195
TacticID MobileThe TacticID® Mobile is an economical, ergonomic 1064nm handheld Raman spectrometer with targeted libraries for rapid, non-destructive identification of narcotics, hazardous chemicals, and suspicious materials. Designed for easy field operation by safety personnel, samples can be rapidly scanned directly through transparent containers, with identification results clearly displayed on the large, high-brightness and resolution touch screen.The TacticID Mobile uses Raman spectroscopy to measure the molecular fingerprint of a sample that is identified with embedded spectral libraries of narcotics, precursors, toxic and common chemical, pharmaceutical drugs, explosives, and more. With point-of-need identification, first responders get actionable sample identification in less than a minute, accompanied with safety information (GHS and NFPA704), allowing for rapid response with greater certainty.With the TacticID Mobile 1064 nm excitation laser, users can identify tough street samples, colored samples, and impure samples with minimal fluorescence interference. The system can be operated with the touchscreen and hard button interface for use even wearing protective gear. It has a compact design with ruggedized IP68 rubber protection, compliant with MIL-STD-810H drop test.Additional information can be added with each scan including pictures, location tagging, notes, and other identifying information, giving a comprehensive report with all pertinent information in one document. User-created libraries and customization also available.
BWT-840001234
i-Raman EX Portable Raman SpectrometerThe i-Raman® EX is part of our award-winning series of i-Raman portable Raman spectrometers with our patented CleanLaze® laser with 1,064 nm laser excitation. Using a high-sensitivity InGaAs array detector with deep TE cooling, high dynamic range, and a high throughput spectrograph design, this portable Raman spectrometer delivers a high signal-to-noise ratio without inducing autofluorescence, making it possible to measure a wide range of natural products, biological samples (such as cell cultures), and colored samples.The i-Raman EX provides a spectral coverage range from 100 cm-1 to 2,500 cm-1, enabling you to measure across the entire fingerprint region. The system’s small footprint, lightweight design, and low power consumption ensure research-grade Raman analysis capabilities at any location. For expanded analysis capabilities, it can be used with our proprietary Vision software as well as BWIQ® multivariate analysis software and BWID® identification software. With the i-Raman EX, you always have a high precision Raman solution for qualitative and quantitative analysis without fluorescence.BWS485III
BWT-840001255
BWID CWA LibraryRaman Chemical Warfare Agent (CWA) Library for BWID.
- AN-C-147AN-C-147Fast analysis of cations in tap water using Metrosep C 4 - 100/2.0
Reducing the analysis time is a demanding task because it is accompanied by a parallel reduction of peak resolution. With a Microbore column 100 mm in length, standard cations in tap water can be determined in only 5 minutes. Strontium can also be determined by simply extending the run time to 6.5 min.
- AN-C-148AN-C-148Metrohm Inline Dilution – Dilution factors of up to 10,000 in two intelligent steps
Sample dilution is a work-intensive routine task in the analysis laboratory. An automatic two-step dilution exponentiates the dilution factor – 1:100 – thus incorporating a dilution factor of 10,000. The intelligent dilution is made possible by MagIC Net, which calculates the essential dilution steps, and by the dosing properties of the 800 Dosino and the Liquid Handling Station. The Application Note shows statistical results of a 1:10,000 dilution.
- AN-C-149AN-C-149Determination of cations on surfaces of printed circuit boards
Cleanliness is indispensable in electronics production. Ionic contaminations in particular lead to a drastic worsening of the quality of the printed circuit boards. The present Application Note describes the determination of cations on printed circuit board surfaces. The intelligent Partial Loop Injection Technique (MiPT) used for this purpose permits the determination of cations and anions in the same sample. The determination of the anions is described in AN-S-317.
- AN-C-150AN-C-150Fast IC: Separation of standard cations in eleven minutes
Fast IC means short run times on separation columns with a relatively high flow rate and the standard eluent. Here the standard cations are separated within eleven minutes on the Metrosep C 4 - 250/2.0. The sodium and ammonium peaks are separated from one another under these conditions.
- AN-C-151AN-C-151Fast IC: Separation of standard cations in five minutes
Fast IC means short run times on separation columns with a relatively high flow rate. Separation with the Metrosep C 4 - 150/2.0 is even quicker than that in the AN-C-150 at 1.1 mL/min. Here, the standard cations are separated within five minutes. Under the selected conditions, sodium and ammonium are no longer completely separated.
- AN-C-152AN-C-152Fast IC: Separation of ethanolamines in 2.5 minutes
Fast IC means short run times and a high sample throughput on columns with a relatively high flow rate and the standard eluent. Mono-, di- and tri-ethanolamine are separated with the Metrosep C 4 - 150/2.0 within 2.5 minutes.
- AN-C-153AN-C-153Fast IC: Separation of methylamines in four minutes
Fast IC means short run times and a high sample throughput on columns with a relatively high flow rate and the standard eluent. Mono-, di- and trimethylamine are separated with the Metrosep C 4 - 150/2.0 within four minutes.
- AN-C-154AN-C-154Fast IC: Cations in drinking water on a high-capacity column in eleven minutes
Fast and handsome IC! Outstanding peak shapes on columns with the standard flow rate and a strong eluent. When the high-capacity Metrosep C 6 - 250/4.0 is used, this usually means long retention times. A strong eluent allows however the determination of the cations in drinking water in a short run time with very symmetrical peaks.
- AN-C-155AN-C-155Selectivity of the high-capacity Metrosep C 6 - 150/4.0 cation column
The high-capacity Metrosep C 6 - 150/4.0 cation column convinces with outstanding separations, narrow peaks, and a multitude of available eluents. In this Note, the selectivity for alkali, earth alkali, and certain transition metals, in addition to methyl and ethanol amines, is shown using a nitric acid eluent and direct conductivity detection.
- AN-C-156AN-C-156Temperature dependency of the cation separation on the Metrosep C 6 - 150/4.0 column
The column temperature influences the duration of the cation separation on the high-performance Metrosep C 6 - 150/4.0 column. The retention times of lithium, sodium, ammonium, magnesium, and calcium remain practically constant with increasing column temperature, whereas those of potassium, strontium, and barium are considerably shortened. This means that the temperature can be used to reduce analysis time considerably on the Metrosep C 6 - 150/4.0.
- AN-C-157AN-C-157Sodium and potassium in polyol using IC following inline matrix elimination
Polyols are important raw materials in polyurethane production. Contamination in the raw materials have a great influence on reactions and impair the quality of the end product. Alkali metals are particularly strong catalysts for linear or branched reactions. A rapid and precise method for their simultaneous determination is ion chromatography following Inline Matrix Elimination.
- AN-C-158AN-C-158Column stability of the Metrosep C 6 - 250/4.0 with Inline Ultrafiltration and Inline Eluent Preparation
The column stability of the Metrosep C 6 - 250/4.0 was determined in long-term laboratory tests. Two injection series per day were run on each of six days in a row. Each series was comprised of nine tap water injections, three check standard injections and six tap water injections. The IC system was shut down on the seventh day of each series. As a whole, the system ran over 10 weeks and counted a total of 2,150 injections. The results show an outstanding reproducibility and verify the high column stability.
- AN-C-159AN-C-159Cation traces on the Metrosep C 4 - 250/2.0 column after Inline Preconcentration with matrix elimination
Intelligent Inline Preconcentration with Inline Matrix Elimination (MiPCT-ME) is used for trace determination of the six standard cations in addition to zinc and diethylamine. The analysis is completed within 24 minutes on the Metrosep C 4 - 250/2.0 Microbore column. The recovery rates are in excess of 95%. The detection limits calculated with the MagIC Net software are in the lower ng/L range for a preconcentration volume of 4 mL.
- AN-C-160AN-C-160Calcium in Bayer caustic soda
In order to extract aluminum from bauxite, the aluminum ore is exposed with a caustic soda solution under pressure in the temperature range of 150 to 200 °C. Dilution and pH value setting are implemented by the addition of 170 mmol/L citric acid prior to calcium determination with ion chromatography in the Bayer caustic soda. Doing so establishes a pH value of 4.5 and prevents precipitation of aluminum hydroxide. The IC separation takes place on the Metrosep C 4 - 150/4.0 column with a citric acid eluent.
- AN-C-161AN-C-161Trimethylamine N-oxide and biogenic amines in addition to standard cations in white wine
Biogenic amines and trimethylamine N-oxide (TMAO) are indicators for the quality of grape fermentation. The consumption of amine-rich wines often leads to headaches, which is why the amine concentrations in wine must be monitored. This Application Note describes the determination of trimethylamine N-oxide, putrescine, cadaverine and histamine, in addition to various standard cations, with the aid of the Metrosep C 6 - 100/4.0 column and subsequent direct conductivity detection.
- AN-C-162AN-C-162Cationic components in developer solution applying a flow gradient
This Application Note describes the determination of N,N-diethylhydroxylamine (DEHA), triisopropanolamine (TIPA) and a cationic color developing component (CDC) in a developer solution. The analysis is performed on a high-capacity column such as Metrosep C - 250/4.0 with subsequent direct conductivity detection. To reduce the residence time of the strongly retained color developer components, the column flow rate is increased after the elution of the amines.
- AN-C-163AN-C-163Cations in brine with minimal dilution and sub-µL injection
As a rule, brine samples are diluted extremely in order to avoid overloading the column. Manual dilution is very error-prone, which is why this application relies on injection with a 0.25 µL internal loop, thus saving an additional dilution step. Sodium, potassium, magnesium and calcium in brine are determined on a Metrosep C 6 - 150/4.0 column with subsequent direct conductivity detection.
- AN-C-164AN-C-164Amine analysis in gas scrubber solutions from refineries with direct conductivity detection
In natural gas production, the removal of contaminants, and in particular acidic gases such as H2S and CO2, is exceptionally important. These acidic gases are removed in the amine wash through chemical treatment with amines or alkanol amines. This application shows a convenient and precise analysis with the separation of various amines and standard cations on a column of the Metrosep C 6 - 250/4.0 type with subsequent direct conductivity detection.
- AN-C-165AN-C-165Triethylamine in aqueous 1,3,5-trioxane solution with direct conductivity detection
1,3,5-trioxane is a heterocyclic compound formed by trimerization of formaldehyde. Trioxane is used for the production of polyformaldehyde plastics such as poly(oxymethylene) (POM) and solid fuels. Aqueous 1,3,5-trioxane solutions frequently contain trace triethylamine that requires quantification. This is performed on the Metrosep C 3 - 250/4.0 column with subsequent direct conductivity detection.
- AN-C-166AN-C-166Parallel cation (and anion) analysis applying the Metrohm IC Driver 2.0 for Empower
Parallel anion and cation analysis is typically used when both anions and cation have to be analyzed in a sample. Here, the cation part of such an analysis is given. The sample is injected to the cation channel by the injector of the IC instrument bypassing the injector on the 889 IC Sample Center. The whole system is controlled by Empower applying the Metrohm IC Driver 2.0. For anion analysis, see AN-S-350.
- AN-C-167AN-C-167Quality test of an automatic and direct 1:2000 dilution applying Inline Dilution Techique
Automatic dilution reduces manual work and improves the reproducibility and accuracy of the results. So far, the Inline Dilution Technique (MIDT) has been tested in a range of max. 1:100. Using a dedicated sample needle this range is enlarged significantly. This AN shows the performance of an Inline Dilution with a factor of 1:2000 as well as a comparison of manual and inline dilution for a dilution factor of 1:1000.
- AN-C-168AN-C-168Determination of ammonium in tobacco after sulfuric acid extraction
Ammonia is present in tobacco – either naturally or added – and is realesed during smoking. Ammonia increases the appeal of smoking, and is therefore considered to increase the addictive potential. The determination of ammonium in tobacco is performed by acid extraction and ion chromatographic separation followed by non-suppressed conductivity detection.
- AN-C-169AN-C-169Determination of cations in tobacco additives
Tobacco additives may contain cations like ammonium (see AN-C-168) as well as other cations as counter ions of organic acids. These additives include components to retain moisture and flavor of the tobacco. Ammonium is added to increase the appeal of smoking, and is therefore considered to increase the addictive potential. The determination of cations in tobacco additives is performed by ion chromatographic separation followed by non-suppressed conductivity detection.
- AN-C-170AN-C-170N-methyldiethanolamine, piper-azine and standard cations in scrubber solutions
N-methyldiethanolamine and piperazine are used in scrubber solutions, e.g., in the natural gas process. Testing this type of samples by ion chromatography requires a good resolution and the separation of amines from standard cations. The separation is achieved on a Metrosep C 4 - 150/4.0 column applying direct conductivity detection.
- AN-C-171AN-C-171N-methyldiethanolamine and piperazine in scrubber solution
Before the liquefaction process of the natural gas, carbonate and hydrogen sulfide need to be removed through a scrubber solution containing piperazine and N-methyl diethanolamine (MDEA). The concentration ratio of the two components is determined by ion chromatography on a Metrosep C 4 - 150/4.0 column applying direct conductivity detection.
- AN-C-172AN-C-172Cations in snow from an open field
Cation content in snow is greatly dependent on sampling site. Samples from remote areas are expected to exhibit lower cation concentrations. This application shows the analysis of a snow sample from an open field in an agricultural zone. Separation is performed on a microbore Metrosep C 6 - 100/2.0 column with direct conductivity detection. The relatively high ammonia content can be explained by animal husbandry in the vicinity of the sampling site.
- AN-C-173AN-C-173Cations in roadside snow
Cation content in snow is greatly dependent on sampling site. Roadside samples are likely to exhibit a high sodium content caused by the use of road salt. This application shows the analysis of a snow sample from a roadside. Separation is performed on a microbore Metrosep C 6 - 250/2.0 column with direct conductivity detection. The 250 mm column was selected due to the large difference in concentrations between sodium and ammonia. This condition enables a baseline separation of the two cations.
- AN-C-174AN-C-174Rapid determination of cations in drinking water on a microbore separation column
Cation analysis in drinking water is a routine task in ion chromatography and can be achieved with a variety of separating columns. The use of a microbore Metrosep C 6 - 250/2.0 column with a high eluent concentration makes it possible to reduce analysis time to less than 12 minutes. Very symmetrical peaks with high sensitivity for the divalent cations are also achieved. Direct conductivity detection is applied.
- AN-C-175AN-C-175Purity of 2-amino-N-(2,2,2-trifluoroethyl)-acetamide by ion chromatography
2-amino-N-(2,2,2-trifluoroethyl)-acetamide is a organic building block for synthesis of pharmaceutical products. Its purity is crucial for the success of the respective synthesis step. 2,2,2-trifluoroethylamine, glycine, and inorganic cations are of interest. Their total peak area is required to be < 2 % of the peak area of all peaks above the reporting level. Separation and quantification is achieved on a Metrosep C 4 - 250/4.0 cation column.
- AN-C-176AN-C-176Melamine in sawdust for animal feed by UV/VIS detection after cation chromatography
Chipped wood and sawdust may be used in production of feed e.g., for ruminants. Melamine, a raw material for resins in wood adhesives, is limited to be used in feed. Therefore, the melamine concentration in sawdust has to be analyzed. Melamine determined after ion chromatographic separation with UV/VIS detection.
- AN-C-177AN-C-177Dicyclohexylamine (DCHA) and methyldicyclohexylamine (MDCHA) in cooling lubricant applying Inline Dialysis
Abrasive machining of e.g., metal parts requires a cooling lubricant. Their purpose besides cooling and lubrication is to inhibit corrosion. Amines are added to the emulsion to keep the pH high. In the actual application, DCHA and MDCHA have to be analyzed besides other amine components and inorganic cations. To avoid oil contamination on the IC system, Inline Dialysis is applied. The detection is performed by direct conductivity detection.
- AN-C-178AN-C-178Aspartic acid, glutamic acid, TRIS, sodium, and potassium in cardioplegic solution
A cardioplegic solution protects the ischemic myocardium from cell death. It is applied together with hypothermia e.g. in open heart surgery. Here the simultaneous determination of aspartic acid, glutamic acid, tris(aminomethyl)aminomethane (TRIS), sodium and potassium in such a solution is given. The two amino acids can be determined as they are partially in the triple protonated ammonium form at the eluent pH. Determination is achieved by direct conductivity detection.
- AN-C-179AN-C-179Cations and lactic acid in whey powder applying two separation mechanisms in the same analysis
Whey is the remaining liquid after cheese production. It is mainly used as feed. It is also used as dietary supplement as a beverage or in powder form. This application determines lactic acid as well as cations in one determination. The Metrosep C 6 - 250/4.0 column separates sodium, potassium, magnesium, and calcium by ion exchange. It also acts as an ion-exclusion column, which separates lactic acid. Both lactic acid and the cations can be determined in the same run applying direct conductivity detection. While cations typically elute as negative peaks, lactic acid elutes as an early positive peak. MagIC Net shows both in the usual positive direction.
- AN-C-180AN-C-180Bicine in gas sweetening solvent by cation chromatography
Bicine (2-(Bis(2-hydroxyethyl)amino)acetic acid) is a corrosive component. It has to be avoided in acidic gas sweetening solvents. These solvents are based on organic amines. Bicine is amphoteric, holding a carboxylic and an amine group. Under the applied conditions, the amine groups are at least partially protonated and therefore may be separated by cation chromatography. The detection mode is direct conductivity detection.
- AN-C-181AN-C-181Potassium in potassium bitartrate as per USP
Within the scope of the USP monograph modernization, potassium is determined in potassium bitartrate applying cation chromatography with direct conductivity detection. The USP41 monograph for “Potassium bitartrate” does not yet mention an assay for potassium. The separation is performed on a Metrosep C 6 - 150/4.0 column (L76). The assay of potassium is performed with two commercially available products according to USP definitions. All acceptance criteria are fulfilled.
- AN-C-182AN-C-182Potassium in potassium sodium tartrate as per USP
Within the scope of the USP monograph modernization, potassium is determined in potassium sodium tartrate applying cation chromatography with direct conductivity detection. The USP41 monograph for “Potassium sodium tartrate” does not yet mention an assay for potassium. The separation is performed on a Metrosep C 6 - 150/4.0 column (L76). The assay of potassium is performed with two commercially available products according to USP definitions. All acceptance criteria are fulfilled.
- AN-C-183Potassium in potassium bicarbonate effervescent tablets for oral solution
Within the scope of the USP monograph modernization, potassium is determined in potassium bicarbonate effervescent tablets for oral suspension applying cation chromatography with direct conductivity detection. The separation is performed on a Metrosep C 6 - 150/4.0 column (L76). All acceptance criteria are fulfilled.
- AN-C-184Potassium and sodium bicarbonates and citric acid effervescent tablets for oral solution
As an alternative to flame photometry, ion chromatography with non-suppressed conductivity detection has been approved by the USP as a validated method to quantify potassium and sodium content in potassium and sodium bicarbonates and citric acid effervescent tablets for oral solution. The present IC method has been validated according to USP General Chapter <621>.
- AN-C-185Potassium in potassium bicarbonate and potassium chloride effervescent tablets for oral solution
As an alternative to flame photometry, ion chromatography with non-suppressed conductivity detection has been approved by the USP as a validated method to quantify potassium content in potassium bicarbonate and potassium chloride effervescent tablets for oral solution. The Metrosep C 6 - 150/4.0 column (L76) provides the required separation of potassium and magnesium. The present IC method has been validated according to USP General Chapter <621>.
- AN-C-186AN-C-186Sodium in potassium sodium tartrate as per USP
Within the scope of the USP monograph modernization, sodium is determined in potassium sodium tartrate applying cation chromatography with direct conductivity detection. The USP41 monograph for «Potassium sodium tartrate» does not yet mention an assay for sodium. The separation is performed on a Metrosep C 6 - 150/4.0 column (L76). The assay of potassium is performed with two commercially available products according to USP definitions. All acceptance criteria are fulfilled. See AN-C-182 for the respective determination of potassium. Apllying this method allows to determine sodium and potassium simultaneously according to USP.
- AN-C-187AN-C-187UOP 939-96: Basic Nitrogen in LPG by Ion Chromatography
Natural liquefied petroleum gas (LPG) is a mixture of hydrocarbon gases (e.g. propane and butane), but it also contains acidic contaminants (e.g. carbon dioxide or hydrogen sulfide). These gases need to be scrubbed from the petroleum gas as they are highly corrosive. This purification step, referred to as «sweetening», is often performed by using alkaline amine solutions. Thereby the amine solution absorbs the acidic gases, while the raw LPG is neutralized. To guarantee that amine residues in the sweetened gas do not influence the gas quality, the amines in the final LPG are determined by scrubbing the gas with acetic acid as described in UOP 936-96. The recent method enables the quantification of the amines dimethylamine (DMA), diethylamine (DEA), dipropylamine (DPA), and dibutylamine (DBA) by separation from standard cations.
- AN-C-188AN-C-188Ammonium impurities in potassium bitartrate
Potassium bitartrate for pharmaceutical use must comply with USP requirements. The actual monograph (USP 42) uses a colorimetric method for the determination of ammonium impurities. Ion chromatography allows the measurement in a single determination under the same conditions used for the potassium assay (see AN-C-181). In the course of the USP monograph modernization, this ion chromatographic approach makes this type of analysis even easier.
- AN-C-189AN-C-189Cations in lithium ore
The exploration and processing of lithium ores is gaining importance with the growing demand for lithium hydroxide. Lithium hydroxide is a key component in the manufacturing of rechargeable batteries for use in various applications including electric vehicles, home storage systems, power tools and consumer electronics. To ensure the efficiency for advanced processing of high purity lithium hydroxide, a fast and reliable quantitative detection technique is required. This application has been developed to monitor the lithium, sodium, and calcium content in the lithium processing samples and mineral concentrates.
- AN-C-190AN-C-190Analysis of amine emulsifiers besides standard cations
Isopropylamine and dicyclohexylamine are used as emulsifiers and need to be determined in emulsions along with standard cations. However, emulsions must not be injected directly into the ion chromatograph as the organic components may damage the ion exchanger stationary phase in the separation column. Inline Dialysis as sample preparation is the perfect tool for such samples. The ions of interest are separated from the organic phase by diffusion through the hydrophilic membrane, thus protecting the column. Full automation makes the analyses even easier and more efficient for the user.
- AN-C-191AN-C-191Sodium in lanthanum acetate
Lanthanum (La) is a transition metal which oxidizes easily in air to lanthanum(III) oxide. This oxide, as well as salts resulting from its dissolution in acid and recrystallization, is a component of different catalysts. Here, a lanthanum(III) acetate solution prepared by dissolution of lanthanum(III) oxide in acetic acid, has to be tested for a sodium contamination. The high concentration of La3+ is complexed by the dipicolinic acid in the eluent and forms anionic complexes. These complexes are eluted in the front and therefore do not interfere with the sodium impurity as well as other cations such as ammonium and calcium.
- AN-C-192AN-C-192Cations in sodium rich wastewater
Wastewaters often contain high loads of sodium, making the determination of minor cations quite a challenge. In the present wastewater study, the determination of lithium, ammonium, zinc, strontium, and barium is requested. If the sodium concentration exceeds 2 g/L, this negatively influences the peak shape of closely eluting peaks. Applying a appropriate dilution factor to the sample enables the quantification of minor cations. Therefore zinc and barium can be properly quantified with a dilution ratio of 1:2, while lithium and ammonium require minimum dilution factors of at least 1:10 and 1:100, respectively.
- AN-C-193Alkyl amines in scrubber solutions
Harmful industrial flue gases like H2S and CO2 cause corrosion of pipes and damage the environment. Adding the correct amount of amines in scrubber solutions, e.g. ethanolamines and methylamines, will neutralize these gases («gas sweetening»). Non-suppressed cation analysis with direct conductivity detection is a straightforward and robust technique for the quantification of monoethanolamine (MEA), diethanolamine (DEA), triethanolamine (TEA), monomethylamine (MMA), dimethylamine (DMA), and trimethylamine (TMA) via ion chromatography. Thanks to the high capacity of the Metrosep C 6 column, large volumes can be injected without compromising the peak shapes. The analytical technique can be used at laboratory scale but also for process analysis.
- AN-C-194IC Assays for Calcium and Magnesium according to USP
Calcium carbonate has a wide applicability in the pharmaceutical industry as an excipient and also as an active ingredient, and in the food industry as a major dietary supplement. The U.S. Pharmacopoeia (USP) monographs for calcium and magnesium carbonates tablets as well as calcium carbonate and magnesia chewable tablets currently describe manual titration as the assay procedure for calcium and magnesium. The USP has embarked on a global initiative to modernize many of the existing monographs across all compendia. In response to this initiative, two alternative analytical methods were developed to determine the analytes calcium and magnesium. This Application Note presents ion chromatography (IC) procedures using conductivity detection that provide better accuracy and specificity and are suitable for the intended purpose. These validated IC methods (according to USP General Chapter <1225>) offer a significant improvement to the existing assays because they can simultaneously determine both analytes calcium and magnesium, saving both time and effort.
- AN-C-195Cation quantification with increased performance using microbore IC
Microbore ion chromatography offers better sensitivity, shorter retention times, and consumes less eluent, increasing sample throughput and reducing running costs.
- AN-C-196Purity quantification of tris(hydroxymethyl)aminomethane (TRIS) with IC
Tris(hydroxymethyl)aminomethane (TRIS) is often used in life science applications and its purity must be monitored. This analysis is possible with ion chromatography.
- AN-C-197Potassium assay in potassium citrate and citric acid oral solution
Potassium citrate and citric acid oral solutions act as systemic alkalizers. Potassium assays, validated per USP <621> and <1225>, use IC with L76 cation-exchange columns.
- AN-C-198Calcium acetate assay in calcium acetate capsules
The assay of calcium acetate, often used as a phosphate binder for dialysis patients, can be performed with ion chromatography (IC) as per USP <621> and <1225>.
- AN-CIC-001AN-CIC-001Halogens in high-viscosity oils using Combustion IC
Determination of chloride and sulfate (non-quantified) in a high-viscosity oil sample using combustion digestion and subsequent anion chromatography with conductivity detection following sequential suppression.Keyword: pyrohydrolysis
- AN-CIC-002AN-CIC-002Halogens and sulfur in residual solvent using Combustion IC
Determination of fluoride, chloride, bromide and sulfate in residual solvent using combustion digestion as sample preparation and subsequent anion chromatography with conductivity detection following sequential suppression. The analysis is significant for use in dividing waste products into non-halogenated and halogenated solvents.Keyword: pyrohydrolysis
- AN-CIC-003AN-CIC-003Chlorine, bromine and sulfur in low-density polyethylene (ERM®-EC680k) using Combustion IC
The determination of halogens and sulfur in waste products is important. The inline combination of the Mitsubishi Combustion Module with the Metrohm IC is a suitable method for this type of samples. The recovery rates are analyzed with a certified reference material, e.g., a low-density polyethylene (LDPE).Keyword: pyrohydrolysis
- AN-CIC-004AN-CIC-004Total and leachable concentration of halogens and sulfur in latex gloves using Combustion Ion Chromatography and a leaching test
Latex gloves are used in clean room environments in order to prevent contaminations. The use of gloves that release corrosive halogenides or sulfate is forbidden in nuclear power plants. The total content of halogen and sulfur is determined by means of Combustion Ion Chromatography. An eluate test is carried out to check the elutable percentage of halogens and sulfate from gloves. Sample preparation is comprised of preconcentration and matrix elimination (MiPCT-ME), as described in AN-S-304.Keyword: pyrohydrolysis
- AN-CIC-005AN-CIC-005Iodine in a pharmaceutical product using Combustion Ion Chromatography with Inline Matrix Elimination
The iodine content in numerous iodized X-ray contrast media (ICM) is around 50% and is determined with great accuracy using Combustion Ion Chromatography. Large quantities of H2O2 (1,000 mg/L) are required for complete absorption of the iodine. Similarly, the concentration of the internal standard should be 50 mg/L. The water content of the X-ray contrast media is determined by means of Metrohm's Karl Fischer oven method and incorporated in the final calculation.Keyword: pyrohydrolysis
- AN-CIC-006AN-CIC-006Recovery rates of chloride, bromide and sulfate in certified reference materials using Metrohm Combustion Ion Chromatography
Combustion Ion Chromatography combines pro-hydrolytic sample combustion and the absorption of emerging combustion gases in an oxidizing, aqueous solution that is then channeled to an ion chromatograph for the analysis of halogenides and sulfur (as sulfate). The combustion and analysis of the certified reference materials (ZRM) makes clear the reliability of Metrohm Combustion Ion Chromatography.Keyword: pyrohydrolysis
- AN-CIC-007AN-CIC-007Analysis of a standard mixed in liquid using Metrohm Combustion IC
This application describes the determination of fluoride, chloride, bromide and sulfur (as sulfate) in an ethanol standard solution with halo organic (4-halogen benzoic acids; F, Cl and Br) and sulfur organic compounds (3-(Cyclohexylamino)-1-propanesulfonic acid) by means of Metrohm Combustion Ion Chromatography with flame sensor and Inline Matrix Elimination.Keyword: pyrohydrolysis
- AN-CIC-008AN-CIC-008Fluorine in polyisobutene using Metrohm Combustion IC
Polyisobutene (PIB) is an important raw material for a large range of products. Quality control requires the determination of the fluorine content. This task is easily done by Metrohm Combustion IC applying flame sensor technology and Inline Matrix Elimination.Keyword: pyrohydrolysis
- AN-CIC-009AN-CIC-009Chloride and sulfur in cyclohexane using Metrohm Combustion IC
Cyclohexane is an important organic solvent. Recycled cyclohexane must be tested for trace substances, e.g., chloride and sulfate. Metrohm Combustion Ion Chromatography with flame sensor and Inline Matrix Elimination is the method of choice.Keyword: pyrohydrolysis
- AN-CIC-010AN-CIC-010Halogens in a polymer sample applying Metrohm Combustion IC according to IEC 60754
The Restriction of Hazardous Substances Directive (RoHS) requires to reduce the halogen content in several organic materials used in electrical and electronic equipment. In this context, there is a huge interest for using halogen-free polymers. To check for halogens in polymers according to standard IEC 60754, Metrohm Combustion IC applying flame sensor technology and Inline Matrix Elimination is an indispensable method. The examined polymeric material contains halogens at a level of up to 1%.
- AN-CIC-011AN-CIC-011Analysis of an ion exchanger using Metrohm Combustion IC
The manufacture of ultrapure water for the pharmaceuticals industry or the semiconductor industry requires high-quality ion exchangers. Metrohm Combustion Ion Chromatography is an indispensable tool in this connection for testing the purity of anion exchange material. The output sample was wet and had to be dried at 105 °C in a special oven with waste air evacuation.Keyword: pyrohydrolysis
- AN-CIC-012AN-CIC-012Halogens and sulfur in clay using Metrohm Combustion IC
Clay is used for the manufacture of roofing tiles. Quality controls during this process require the determination of halogen and sulfur content. This is ideally accomplished using Metrohm Combustion IC. With this method, the sulfur is determined as sulfate and the halogens as halogenides. Because clay often contains high contents of alkali and earth alkali metal ions that attack the pyrolysis tube, tungsten oxide is added prior to combustion.Keyword: pyrohydrolysis
- AN-CIC-013AN-CIC-013Analysis of certified liquefied gas using Metrohm Combustion IC
This Application Note looks at the determination of fluorine and sulfur in certified liquefied gas using Metrohm Combustion IC. Sequential determinations proceed in parallel to a certain extent: While the absorption solution of a sample that has already been combusted is being analyzed with IC, the combustion of the next sample is already underway.Keyword: pyrohydrolysis
- AN-CIC-014AN-CIC-014Chloride traces in the wax fraction of crude oil distillation using Metrohm Combustion IC
Paraffin and lubricating oils are yielded from the wax fraction of raw oil distillation. The chloride content of both should be low. This Application Note describes chloride determination after inline combustion. Although it does not happen in this application, this method can also be used to quantify the sulfur content.Keyword: pyrohydrolysis
- AN-CIC-015AN-CIC-015Test of basic material for printed circuit boards for absence of halogens using Metrohm Combustion IC
The EU directive for limiting the use of certain hazardous substances in electrical and electronic devices and IEC 61249-2-21 define limit values for halogen contents in materials that are used in electronics. Metrohm Combustion IC with ion chromatography determination permits precise, rapid and automated halogen determination in raw materials that are used in printed circuit boards according to IEC 61189-2.Keyword: pyrohydrolysis
- AN-CIC-016AN-CIC-016Halogen traces in coal with the Metrohm Combustion IC
The burning of coal contaminates the atmosphere with halogens. Fluorine and chlorine are natural components of coal, whereas the bromide that is found therein is often adulterated as calcium bromide in order to reduce mercury emissions. This Application Note shows the results of combustion digestion with Combustion IC for three coal samples, each with a different bromide content.Keyword: pyrohydrolysis
- AN-CIC-017AN-CIC-017Fluorine in copper concentrates using Metrohm Combustion IC
Copper concentrate is an important raw material for copper mills. The concentrate is often contaminated with corrosive fluorine, which is why the fluorine concentration must be checked at regular intervals. A convenient and reliable determination method is Combustion IC in combination with sacrificing vial technology. The sample is placed inside the quartz combustion pipe in a horizontally positioned quartz vial, both ends of which are sealed with glass wool. During combustion, the quartz-destroying components (e.g., fluoride, alkali and earth alkali metals) that are released are captured by the quartz vial and the quartz wool, ensuring that they are thus unable to reach the quartz combustion pipe at all.Keyword: pyrohydrolysis
- AN-CIC-018AN-CIC-018Halogens in liquefied gas with Metrohm Combustion IC and LPG/GSS module for sampling
This Note addresses the determination of the fluorine and chlorine content of a liquefied gas sample (LPG, Liquid Petroleum Gas), i.e. halogens in a mixture of propane and butane. Fluorine originates from perfluorobutane and chlorine from methyl chloride. LPG/GSS modules are used to introduce 50 µL of sample into the combustion system. The halogens released during combustion are determined using ion chromatography with intelligent partial loop injection technique following Inline Matrix Elimination.Keyword: pyrohydrolysis
- AN-CIC-019AN-CIC-019Halogens in palm oil with Metrohm Combustion IC
Palm oil is a vegetable oil that is used not only in the food industry but also for the manufacture of soaps and body care products. It is furthermore an important raw material for the generation of biodiesel. Depending on the degree of refinement, palm oil can be red, reddish or even colorless in appearance. The carotenes responsible for the color are removed during refinement and the oil becomes increasingly clear. In this Note, the chlorine and sulfur content of various palm oils are determined using Combustion IC.Keyword: pyrohydrolysis
- AN-CIC-020AN-CIC-020Fluorine in coal sample applying Metrohm Combustion IC
Coal contains a certain amount of fluorine, chlorine, and sulfur compounds. During combustion of the coal, these components release corrosive acids (e.g., fluorine compounds form hydrofluoric acid). Thermal power plants therefore request low-fluorine coal to avoid massive hydrofluoric acid production. In this application note, fluorine content in coal is determined by ion chromatography after pyrohydrolysis.
- AN-CIC-021AN-CIC-021Halogen and sulfur in chlorinated and brominated halobutyl rubber applying Combustion IC
Halobutyl rubber is frequently used in the production of pharmaceutical stoppers. It is ideal for this application due to its low permeability to gases and its chemical resistance. Chlorinated and brominated butyl rubber stoppers are analyzed for their halogen and sulfur content. Halogen and sulfur compounds are released by pyrohydrolysis and analyzed by subsequent ion chromatography (IC).
- AN-CIC-022AN-CIC-022Bromine content in polystyrene – optimization of the absorption solution for Combustion IC
Polystyrol is brominated to increase flame retardation. The brominated polystyrene finally consists of 25 to 35% of bromine. The determination of bromine by combustion ion chromatography (CIC) requires a specially optimized absorption solution to trap all bromide. This work shows the optimization of the absorption solution for high-bromine samples.
- AN-CIC-023AN-CIC-023Halogens and sulfur in LPG according to ASTM D7994
ASTM D7994 - 17 describes the determination of fluorine, chlorine, and sulfur in liquefied petroleum gas (LPG) by oxidative pyrohydrolytic combustion followed by ion chromatography. A synthetic butane sample is analyzed. 50 µL of the sample is injected into the combustion system using the LPG Module. The combustion products are analyzed by IC applying intelligent Partial Loop Injection Technique after Inline Matrix Elimination.
- AN-CIC-024AN-CIC-024Organic chloride in naphtha fraction of crude oil distillation according to ASTM D8150
The content of organic chloride in crude oil is determined according to ASTM D8150 in the naphtha fraction after distillation. The naphtha fraction is washed with caustic and water, respectively, to remove hydrogen sulfide and inorganic halides. Here, the determination of organic chloride after inline combustion is presented. Although the sulfur content was of no interest in this application, the same setup allows sulfur quantification.
- AN-CIC-026AN-CIC-026Organic bound fluorine in Ezetimibe by Combustion Ion Chromatography
Ezetimibe is a cholesterol-reducing drug. It reduces the cholesterol resorption in the small intestine. The molecule holds two fluorophenyl groups. Applying Combustion IC the amount of fluorine in the drug is determined. To avoid an excessive introduction of fluoride into the system, Ezetimibe is dissolved in ethanol prior to the combustion.
- AN-CIC-027AN-CIC-027Halogens in polymer by Combustion Ion Chromatography
Polymer materials that are used for building and decoration purposes need to be flame resistant. To reach the required level of resistance flame-retardants are added to the plain polymer. Flame-retardants are often haloorganic compounds. The use of such components and the respective concentration of introduced halogens can be determined by Combustion IC. The recovery over the full system is tested with acertified reference material (CRM).
- AN-CIC-028AN-CIC-028Fluorine and chlorine in iron ore by Combustion Ion Chromatography
Iron ore is an important resource for steel production. Its natural content of halogens is a quality characteristic due to the corrosiveness of the respective halogenides. Combustion IC applying the sacrificial vial technology is used for the analysis of fluorine and chlorine in ore. WO3 usually is added to improve the release of SO2 and therefore sulfur recovery. In this application, it also significantly improves the recovery of fluoride.
- AN-CIC-029AN-CIC-029Organic halides in crude oil
Crude oil typically contains no organic halides. These are introduced at production sites, in pipelines, or in storage tanks. These components produce HF, HCl, and other acids in reforming and hydro-treating processes, leading to corrosion and catalyst poisoning. Speciation of the halides is an important parameter to measure in order to trace the contamination source. The current specifications expect to find less than 2 mg/kg organic chlorine in crude oil. Sulfur in crude oil could be quantified on the fly. Due to the specific request in this application, only the halogens are determined.
- AN-CIC-030AN-CIC-030Fluorine determination from fluorochemicals in fabrics applying Combustion IC
In textiles, the water-repelling effect may be introduced by different treatments, such as the application of fluorochemicals. These compounds, especially perfluoroorganic substances, are extremely persistent in the environment and are therefore listed as emergent contaminants. Combustion IC with pyrohydrolysis and subsequent ion chromatographic determination is applied to analyze the fluorine content in fabrics.
- AN-CIC-031AN-CIC-031Sulfur determination in ammonia gas applying Combustion IC
Sulfur species are critical contaminants in ammonia gas. They can cause high-temperature sulfidation of metals, form aggressive complexes with other elements, or react subsequently in processes where the ammonia gas is used. The concentration of such impurities tends to be very low, but they may not exceed critical levels of 0.5 mg/L. Although this level is very close to the system blank of the Combustion IC system, the setup can be used to prove that such critical limits are not exceeded.
- AN-CIC-032AN-CIC-032Chloride as an indicator of residual solvent presence in cellulose ester-based foil
Cellulose ester foils are produced using chlorinated solvents. The residual amount of the solvent used in production evaporates within a few days in ambient conditions. The residual solvent is determined by combustion IC, through the conversion of organically bound chlorine to chloride by pyrohydrolysis. The final product needs to be free of all chlorinated solvents. Therefore, critical contents of such compounds can be detected in quality control analysis. Application of MiPT in this study has enabled an automated and precise calibration out of a single standard.
- AN-CIC-033Monitoring PFASs in water sources
AOF (adsorbable organic fluorine) is used to screen for per- and polyfluorinated alkyl substances in aqueous matrices via pyrohydrolytic combustion and ion chromatography.
- AN-CIC-034Fast analysis of AOX in waters by CIC
Combustion ion chromatography (CIC) measures AOX (adsorbable organically bound halogens, i.e., AOCl, AOBr, AOI) and AOF as well as CIC AOX(Cl) according to DIN 38409-59 and ISO 18127.
- AN-CIC-035Halogens and sulfur in solid samples according to EN 17813
Organic halides must be monitored in the environment. Combustion ion chromatography (CIC) is used for accurate halogen analysis in solids following EN 17813:2023.
- AN-COR-001AN-COR-001Corrosion part 1 – basic concepts
Corrosion refers to a process that involves deterioration or degradation of metal. The most common example of corrosion is the formation of rust on steel. Most corrosion phenomena are of electrochemical nature and consist of at least two reactions on the surface of the corroding metal.
- AN-COR-002AN-COR-002Corrosion Part 2 – Calculation of Corrosion Parameters with NOVA
Electrochemical methods provide an alternative to traditional methods used to determine the rate of corrosion. For example, corrosion rates, the rates at which a specimen corrodes, can be calculated from simple electrochemical measurements like a linear sweep voltammetry (LSV).
- AN-COR-003Measurement of polarization resistance
Polarization resistance (Rp) can quantify the corrosion resistance of metals as an alternative to Tafel analysis. Its methodology and practical use as described in ASTM G59 are discussed.
- AN-COR-004AN-COR-004Corrosion part 4 – equivalent circuit models
Electrochemical impedance spectroscopy or EIS has been used effectively to measure the polarization resistance for corrosion systems and for the determination of corrosion mechanisms.
- AN-COR-005AN-COR-005Corrosion part 5 – corrosion Inhibitors
A corrosion inhibitor is a substance that reduces the corrosion rate of a metal. A corrosion inhibitor is usually added in a small concentration to the corrosive environment. This application note shows how Metrohm Autolab instruments can be used to check the quality of inhibitors.
- AN-COR-006AN-COR-006Critical Pitting Temperature (CPT) as per ASTM G150
This Application Note is based on the ASTM standard G150, developed to test the resistance of stainless steel, and otheralloys related to stainless steel, on pitting formation at elevated temperature. This is achieved by determining the potential-independent critical pitting temperature (CPT), defined as the lowest temperature at which pitting evolution occurs. The CPT experiment consists of applying a potential to the specimen while the cell temperature is raised and recording the current.
- AN-COR-008AN-COR-008Stepwise dissolution measurement
In this Application Note, stepwise dissolution measurement (SDM) is applied to aluminum samples coated with different materials, in order to gain insights in corrosion protection. The combination of the Autolab PGSTAT204 with the 1 L Autolab corrosion cell and the NOVA software provides the suitable setup to perform SDM and other corrosion experiments.
- AN-COR-009AN-COR-009Electrochemical impedance spectroscopy of three coated aluminum samples
In this Application Note, EIS is applied on three coated aluminium samples, before and after the stepwise dissolution measurement (SDM). This technique has been reviewed in the Application Note AN-COR-08.
- AN-COR-010AN-COR-010Electrochemical Corrosion Studies of Various Metals
Corrosion of metals is a problem seriously affecting not only many industrial sectors, but also private life, resulting in enormous costs. In this application note, the results gained during electrochemical corrosion studies on different metals are compared to literature data.
- AN-COR-011AN-COR-011ASTM G100: Cyclic Galvanostaircase Polarization
The ASTM standard G100 is an electrochemical method to test localized corrosion of aluminum 3003-H14 and other alloys. A cyclic galvanostatic staircase polarization (galvanostaircase) is composed of an upward and a downward scan. The potential values at the end of each step are collected and linearly fitted, and the potential values at zero current are found.
- AN-COR-012ASTM G5: Potentiodynamic anodic polarization measurements
This Application Note evaluates corrosion in Type 430 stainless steel according to ASTM G5 with VIONIC powered by INTELLO and an ASTM-compliant corrosion cell setup.
- AN-COR-014AN-COR-014Corrosion Inhibitor Efficiency Measurement in Turbulent Flow Conditions with the Autolab Rotating Cylinder Electrode (RCE), According to ASTM G185
The rotating cylinder electrode (RCE) is a technique used in corrosion research to simulate in a laboratory environment the turbulent flow which usually occurs when liquids are transported through pipelines. The RCE is used to generate a turbulent flow at the surface of a sample, simulating the pipe flow conditions. Experiments that involve an RCE are regulated by the ASTM G185 standard. In this application note, The RCE with a 1018 carbon steel cylinder sample was used with the linear polarization (LP) measurement technique.
- AN-COR-015AN-COR-015Corrosion Rates Measurements in Quiescent and Turbulent Flow conditions by using Rotating Cylinder Electrode (RCE)
The rotating cylinder electrode (RCE) is successfully used in a laboratory environment to generate a turbulent flow at the surface of a sample, simulating realistic pipe flow conditions. In this application note, the corrosion rate is measured and compared between quiescent and turbulent flow conditions, while keeping all the other experimental conditions unchanged. The linear polarization (LP) technique was used together with the RCE (with and without rotation).
- AN-COR-016ASTM G61: Standard test method for conducting cyclic potentiodynamic polarization
This Application Note details ASTM G61-compliant corrosion measurements performed with VIONIC powered by INTELLO using Metrohm’s ASTM-compliant corrosion cells.
- AN-COR-017AN-COR-017Coulometric Reduction as per ASTM B825
The ASTM B825 is used to determine the corrosion and tarnish film on metal surfaces. This is achieved by using the so-called cathodic reduction method. With the help of a Metrohm Autolab PGSTAT302N and a Metrohm Autolab 1 L corrosion cell, a procedure to replicate the ASTM B825 is shown.
- AN-COR-018AN-COR-018Evaluation of organic coatings on metals using Autolab PGSTAT based on ISO 17463 – Paints and Varnishes
The International Standard ISO 17463 describes the determination of the anticorrosive properties of high impedance organic protective coatings on metals. This technique uses cycles composed of electrochemical impedance spectroscopy (EIS) measurements, cathodic polarizations and potential relaxation. This application note shows the compliance of the Metrohm Autolab PGSTAT M204 and flat cell with the standard ISO 17463.
- AN-COR-019Determining the corrosion rate with INTELLO
Tafel analysis is an important electrochemical technique used to understand reaction kinetics. By studying the Tafel slope, it reveals the rate-determining steps in electrode reactions, aiding fields like corrosion and fuel cell research. This method helps industries optimize processes and improve device performance by tailoring materials and conditions for greater efficiency.
- AN-CS-001AN-CS-001Reproducibility of 10 µg/L injections after cation suppression
Cation chromatography with sequential suppression enables the determination of cations in their hydrogen carbonate form. The eluent – usually nitric acid – is converted into carbonic acid. Following its decomposition into carbon dioxide and water, the former is continuously removed by the CO2 suppressor. The reduction of baseline noise thus achieved permits the lowering of the detection limits and improves reproducibility, even at very low cation concentrations. This Note shows the reproducibilities determined for cation concentrations of 10 µg/L.
- AN-CS-002AN-CS-002Ammonium – Sequential suppression with linear calibration
Ammonium determination after sequential suppression frequently exhibits non-linear calibration curves. The reason for this is the ammonium hydroxide that arises and that is present in a form characterized by low dissociation. The sequential cation suppression forms the more highly dissociated ammonium hydrogen carbonate. Ammonium and the other standard cations exhibit linear calibration curves (R > 0.9997).
- AN-CS-003AN-CS-003Biogenic amines in addition to standard cations with conductivity detection following sequential suppression and Dose-in Gradient
The concentrations of toxic, biogenic amines in foods, particularly in fish and wine, are an important quality characteristic. The present Application Note shows the separation of putrescine, cadaverine and histamine in addition to the standard cations. Separation takes place on a Metrosep C Supp 1 - 250/4.0 with Dose-in Gradient; quantification via conductivity detection following sequential suppression.
- AN-CS-004AN-CS-004Determination of choline in baby milk powder
Choline is important for the biosynthesis of numerous molecules, e.g., the neurotransmitter acetylcholine, and exists as an intermediate product in the human metabolism. Concentration determination takes place after microwave digestion. Separation is performed on the Metrosep C Supp 1 - 250/4.0 column following sequential suppression. Separation from the standard cations is outstanding.
- AN-CS-005AN-CS-005Determination of tetrabutylammonium in atorvastatin using sequential suppression
Atorvastatin is a medication that is used for reducing cholesterol levels. A sensitive and reliable method for TBA detection is required, given that trace amounts of tetrabutylammonium (TBA) are to be found in the presence of atorvastatin and its derivatives. One such method is ion chromatographic separation on the Metrosep C Supp 1 - 250/4.0 with subsequent conductivity detection and sequential suppression.
- AN-CS-006AN-CS-006Aliphatic amines and ethanol amines in addition to standard cations by sequential suppression
This Application Note shows the selectivity of the Metrosep C Supp 1 - 250/4.0 column for alkyl and ethanol amines in addition to standard cations under isocratic conditions. Quantification takes place using conductivity detection following sequential suppression.
- AN-CS-007AN-CS-007Lithium in addition to other cations in seepage water from minerals through sequential suppression
With the advent of electric automobiles, the demand for lithium batteries and with it the demand for lithium material will increase sharply. Brine lakes and hard silicate minerals are numbered among the most important sources of lithium. This Application Note addresses cation determination in seepage water from lithium minerals. Alkali and earth alkali metals are separated in the lithium digestions on the Metrosep C Supp 1 - 250/4.0 column, with subsequent conductivity detection after sequential suppression.
- AN-CS-008AN-CS-008Determination of dimethylamine in meropenem using sequential suppression
Meropenem is a beta-lactam antibiotic that is classed among the carbapenems; it suppresses murein biosynthesis and thus the buildup of the bacterial cell wall. Dimethylamine is an important precursor in meropenem synthesis and must therefore be monitored as an impurity. Detection is performed on the Metrosep C Supp 1 - 250/4 column with subsequent conductivity detection after sequential suppression.
- AN-CS-009AN-CS-009Leaching tests for sample vials in cation trace analysis with sequential suppression
Sequential suppression in cation chromatography significantly improves detection limits. The determination of the blank value of the sample vial being used is thus essential for being able to achieve such low detection limits. The leaching tests of various sample vials proceed with the intelligent Preconcentration Technique with Matrix Elimination on the Metrosep C Supp 1 - 250/4.0 column with conductivity detection following sequential suppression. The 50 mL Corning® Cell Culture Flasks from Sigma-Aldrich (CLS430168) exhibit the lowest blank values.
- AN-CS-010AN-CS-010Traces of lithium and sodium besides monoethanolamine in water-steam circuits of thermal power plants
Boiler feed water is a working medium in thermal power plant. To keep corrosion low, the pH value should be in the slightly alkali range, which is why amines are added to the feed water. This addition must be monitored regularly. Also important is the monitoring of the sodium concentration, because an increase of this indicates that cooling water is seeping into the condenser. Ion chromatography with conductivity detection following sequential suppression is the optimum system for monitoring, particularly in combination with intelligent Sample Preconcentration and Matrix Elimination.
- AN-CS-011AN-CS-011Cation traces in lithium hexafluorophosphate
Lithium hexafluorophosphate (LiPF6) is used as an electrolyte in rechargeable batteries. Its high solubility in non-polar solvents and its non-coordinating character in particular make lithium hexafluorophosphate the ideal salt for use in lithium-ion cells. This Application describes the determination of cation traces in LiPF6 with conductivity detection following sequential suppression.
- AN-CS-012AN-CS-012Determination of trimenthylamine and standard cations in 30% hydrogen peroxide (H2O2)
Hydrogen peroxide is available in different purity grades depending on its use. High purity H2O2 (electronic grade) requires very low contamination levels, e.g., less than 1 μg/L of trimethylamine (TMA). This application describes the determination of trimethylamine in a high-purity H2O2 solution (30%). Analysis is performed using Inline Preconcentration with Matrix Elimination (MiPCT-ME) applying conductivity detection after sequential cation suppression.
- AN-CS-013AN-CS-013Cations in deionized water and calculation of LOD and MDL of MiPCT
Trace cation analysis in high purity water (sub-μg/L range) requires cation chromatography after sequential suppression and intelligent Preconcentration Technique (MiPCT). Trace cations in deionized water (DI) are determined and the method detection limit (MDL according to US EPA) as well as the limit of detection (LOD = 3 x S/N) is calculated. MDL and LOD are very similar in the lowest ng/L range for this setup with 6 mL preconcentration volume.
- AN-CS-014AN-CS-014Biogenic amines besides other cations in red wine applying a high-pressure gradient
Biogenic amines are released during the winemaking process. In wine, they are present as odorless salts. However, in the mouth their flavor is partially liberated, influencing the appearance for the wine taste. Besides this, biogenic amines have been related to lack of hygiene or poor manufacturing practices. The biogenic amines are determined applying suppressed cation chromatography.
- AN-CS-015AN-CS-015Limit of choline in succinylcholine on a Metrosep C Supp 1 - 150/4.0 closely following USP
Succinylcholine is a short-term paralyzing agent used e.g., for tracheal intubation. Choline is a building block of the drug and needs to be determined as an impurity. USP applies cation chromatography with conductivity detection after suppression. Eluent composition and column type do not exactly comply with the USP method. However, the results fulfill the respective requirements. The choline concentration of the sample is out of USP specifications.
- AN-CS-016AN-CS-016Metrosep C Supp 2 - 150/4.0: Amines applying suppressed cation chromatography
The Metrosep C Supp 2 column family is polystyrene/divinylbenzene based and therefore sequential cation suppression may be applied. This AN shows the separation and detection of different amines on the 150 mm version of the column with subsequent conductivity detection after sequential cation suppression.
- AN-CS-017AN-CS-017Metrosep C Supp 2 - 250/4.0: Ammonium in acidic absorption solution – proof of concept
Acidic solutions used as scrubber solutions for ammonium typically have a pH of 2 or lower. This pH value is too low for silica based IC columns typically applied in direct conductivity detection of cations. The Metrosep C Supp 2 - 250/4.0 is polymer based and allows injecting low pH samples. An acidified drinking water sample spiked with ammonium is analyzed. The results indicate that such acidic solutions can be analyzed with conductivity detection after sequential cation suppression.
- AN-CS-018AN-CS-018Metrosep C Supp 2 - 250/4.0: Cations in wastewater applying a Dose-in gradient
Cation analysis by IC in wastewater is a proven method. Limiting factor is often the Na/NH4 separation. High sodium concentrations may make ammonium determination impossible due to peak overlapping. The use of sequential suppression and a Dose-in gradient improve the Na/NH4 separation and enables determination of low ammonium concentrations.
- AN-CS-019AN-CS-019Trace ammonium and trimethyl-amine in 30% hydrogen peroxide applying sequential suppression
Determination of trace levels of cations and amines in hydrogen peroxide is important in quality determination of high-grade semiconductor chemicals. In particular, some manufactures look for 1 ppb trimethylamine or less in hydrogen peroxide samples. Ion chromatography after MiPCT-ME* with conductivity detection after sequential cation suppression is applied.
- AN-CS-020AN-CS-020Fast IC with Metrosep C Supp 2 - 100/4.0: Four cations in five minutes
The short Metrosep C Supp 2 - 100/4.0 allows applying a higher eluent flow. Together with a more concentrated eluent (7.0 instead of 5.0 mmol/L nitric acid) the run time of the four cations, sodium, potassium, magnesium, and calcium can be reduced to 5 minutes. Conductivity detection after sequential suppression is applied.
- AN-CS-021Sodium in sodium bicarbonate and sodium phosphates compounded injections
Compounded injections of sodium bicarbonate are sterile solutions for correcting metabolic acidosis and other conditions requiring systemic alkalinization. Compounded injections of sodium phosphates serve as a phosphate source to either prevent or correct hypophosphatemia in patients with restricted oral intake. Ion chromatography (IC) with suppressed conductivity detection is the standardized way to accurately quantify sodium in these solutions.
- AN-D-001Metrohm IC Driver for OpenLab CDS
This application focuses on the simultaneous analysis of cations and suppressed anions with a dual channel Metrohm IC operated by OpenLab CDS.
- AN-D-002Anions and cations in beer
This Application Note presents ion chromatography as a precise method to analyze anions in beer as well as cations with non-suppressed conductivity. Automation with Inline Ultrafiltration is also discussed.
- AN-D-003Quality control of dialysis concentrates
Ion chromatography (IC) provides an automated, fast, and sensitive solution to accurately quantify cationic and anionic components including acetate simultaneously. This comprehensive approach makes IC an economic alternative to traditional techniques for the quality control of pharmaceutical solutions like haemodialysis concentrates. Ease-of use, accuracy, and the high-throughput of IC increase productivity and comply with the demands of modern routine and research labs.
- AN-DV-001DropView solutions for treatment of electrochemical and optical results
Electrochemistry, spectroscopy, and spectroelectrochemistry (SEC) are widely used techniques in many fields. However, the data curves obtained from these analyses are quite varied, and not all electrochemical peaks and spectroscopic bands can be measured with the same procedures. This Application Note examines four tools included in the DropView 8400 and DropView SPELEC softwares to facilitate the measurement and analysis of the collected curves and data. The following measurement options are explained in detail: automeasurement, set on curve measurement, set free measurement, and set step measurement.
- AN-EC-001AN-EC-001Study of the mass transport characteristics of K3[Fe(CN)6]/ K4[Fe(CN)6] oxidation and reduction reaction using AUTOLAB RDE
The mass transport characteristics of the diffusion controlled oxidation and reduction of the ferri/ferro cyanide couple was studied using the Autolab RDE with a low noise liquid Hg contact.
- AN-EC-002AN-EC-002Reference electrodes and their usage
A reference electrode has a stable and well-defined electrochemical potential (at constant temperature), against which the applied or measured potentials in an electrochemical cell are referred. A good reference electrode is therefore stable and non-polarizable. In other words, the potential of such an electrode will remain stable in the used environment and also upon the passage of a small current. This application note lists the most used reference electrodes, together with their range of use.
- AN-EC-003Ohmic Drop Part 1 – Basic Principles
This application explains ohmic iR drop in electrochemical cells, its causes, and strategies to minimize its impact for accurate and reliable potential measurements.
- AN-EC-004Ohmic iR Drop Part 2 – Measurement: Current Interrupt and Positive Feedback
This application introduces two tools (current interrupt and positive feedback) that measure and compensate for up to 90% of the ohmic iR drop, a common error in electrochemistry.
- AN-EC-005AN-EC-005EQCM study of underpotentially-deposited (UPD) lead adlayer on gold
The Autolab Electrochemical Quartz Crystal Microbalance (EQCM) is an optional module for the Autolab PGSTAT which can be used to control a 6 MHz crystal oscillator. This technique can be used to perform electrogravimetric measurements with detection limits in the sub μg range.
- AN-EC-006AN-EC-006Displacement Deposition of Platinum on Gold Electrodes
This document describes a very simple procedure that can be used to produce small deposits of platinum on a goldsubstrate. This simple procedure is based on an electrochemical process known as displacement deposition, during which the deposition of a noble metal occurs by the oxidation of a precursor metal adlayer deposited on the substrate, at open circuit potential (OCP).
- AN-EC-007AN-EC-007Differences between digital scans, analog scans, and signal integration
In this Application Note, analog and digital staircase potential signals are applied to a platinum working electrode in an acidic solution. The differences in measured currents are highlighted and compared with a similar experiment where the current is being calculated from the measured charge.
- AN-EC-008AN-EC-008Basic overview of the working principle of a potentiostat/galvanostat (PGSTAT) – electrochemical cell setup
A basic overview of the working principle of a potentiostat/galvanostat is presented. Depending on the application, the connections of the instrument to the electrochemical cell can be (or must be) set up in different ways. Below, the three commonly used electrochemical cell setups are discussed together with the role of the electrodes used in electrochemical measurements.
- AN-EC-009AN-EC-009Spectroelectrochemical measurements
In this application note, the combination between electrochemistry and spectroscopy is shown, with the oxidation of ferrocyanide to ferricyanide monitored with IR spectra taken at defined potential steps. The increase in absorbance at 425 nm corresponding to the formation ferricyanide.
- AN-EC-010AN-EC-010In-temperature ionic conductivity measurements with the Autolab Microcell HC setup
To improve the performance of electrochemical energy storage devices like batteries and supercapacitors, one can focus on enhancing the ion conductivity (ƠDC) of the electrolyte. It is a common method for obtaining ƠDC values of different electrolyte systems, to carry out electrochemical impedance spectroscopy (EIS) experiments, at different temperatures, in a 2-electrode setup.
- AN-EC-011AN-EC-011Investigation of intermediates in the electrodeposition of copper using the Autolab rotating ring disc electrode (RRDE)
Copper is arguably one of the most technologically relevant metals, especially for the semiconductor industry. The deposition process used in this industry is known as the dual-damascene process and it involves the electrodeposition of copper from an acidic cupric compound, in the presence of additives.This Application Note illustrates the use of the Autolab rotating ring disc electrode (RRDE) for the study of electrodeposition of copper and the detection of the Cu+ intermediate.
- AN-EC-012AN-EC-012Different approaches for capacitance measurements
The relative permittivity εr, also known as dielectric constant, is of great importance in materials characterization. It can be defined as the ratio between the amount of electrical energy stored in a material and the amount of electrical energy stored in a vacuum. One of the easiest way to obtain the relative permittivity is to calculate it from capacitance values. In this Application Note, five techniques to retrieve capacity values have been compared.
- AN-EC-013AN-EC-013The importance of using four-terminal sensing for EIS measurements on low-impedance systems
In this application note, electrochemical impedance spectroscopy (EIS) is used to test a commercial battery connected in two different ways. In the first EIS measurement, the battery is connected in a two-terminal sensing configuration. In the second EIS measurement, the battery is connected in a four-terminal sensing (Kelvin sensing) configuration. The difference in how the leads are connected results in different measured impedance values for the battery.
- AN-EC-014AN-EC-014Oxygen Reduction Reaction with the Rotating Ring Disk Electrode
The oxygen reduction reaction (ORR) is important to the functional readiness of a fuel cell. Rotating ring disk electrode (RRDE) experiments allow the reaction to be studied in hydrodynamic conditions to determine kinetic properties via the Levich and Koutecký-Levich equations. Mechanistic information is simultaneously obtained from the reaction of intermediates at the secondary (ring) electrode. This application note describes how the RRDE from Metrohm Autolab can be used to study the ORR.
- AN-EC-015AN-EC-015Metrohm 663 VA stand for Heavy Metal Ions detection in Water Sample
The determination of heavy metal ions in a solution is one of the most successful application of electrochemistry. In this application note, anodic stripping voltammetry is used to measure the presence of two analytes, in a sample of tap water.
- AN-EC-017AN-EC-017Cyclic Voltammetry and Electrochemical Impedance Spectroscopy measurements carried out with the Microcell HCsetup – the TSC SW Closed and the TSC Battery cells
The TSC SW Closed and TSC Battery cells are compact systems designed for measurements on air or moisture-sensitive materials, such as those used in batteries. In this document, two testing procedures are explained. The first procedure is withpotentiostatic cyclic voltammetry (CV), while the second is via electrochemical impedance spectroscopy (EIS).
- AN-EC-018AN-EC-018Electrochemical Impedance Spectroscopy of a Commercial Battery with different Types of Connections
The way low-impedance devices, like fuel cells and battery, are connected to a load influences their performances. In this document, a comparison of EIS results on a commercial Li-ion battery is shown. Different EIS measurements have been performed, changing the way the battery has been connected to the potentiostat.
- AN-EC-019AN-EC-019How to use a convolution method in voltammetric analysis
Convolution voltammetry consists essentially of a voltammetric, chronoamperometric, or chronocoulometric experiment followed by a mathematical transformation - convolution. Using a convolution method, the effect of the decrease of the concentration gradient can be eliminated from the total response of the electrode. This application note explains how the convolution in NOVA works.
- AN-EC-020AN-EC-020Calculation of Cell Constants using the Autolab Microcell HC TSC70 and TSC1600
In order to calculate the conductivity of an electrolyte, the cell constant of the cell must be known. The combination of the Metrohm Autolab PGSTAT204 equipped with the FRA32M module in combination with the Autolab Microcell HC setup was used for the determination of the conductivity cell constants of TSC1600 temperature controlled electrochemical cell.
- AN-EC-023AN-EC-023Determination of the T-dependent conductivity of a solid proton conductor
The proton conductivity of membranes made of a proton conductive material is an essential quantity to be determined. In this application note, we present the results of an exemplary study of σDC(T) determined by impedance spectroscopy for a novel solid proton conductor in its dry state.
- AN-EC-024AN-EC-024Study of electrochemical kinetics of a classical redox couple using the Autolab Microcell HC
The kinetic and mass transfer parameters of the electro-oxidation reaction of TEMPO were measured using the TSC Surface measuring cell for the Autolab Microcell HC system. The cell allows the study of electrochemical processes in liquid electrolytes in a three electrode configuration under temperature control.
- AN-EC-025Study of the hydrogen region at platinum electrodes with linear scan cyclic voltammetry
The study of the electrochemical behavior of platinum in acidic media is of crucial importance in fundamental electrochemistry and electrocatalysis. Most electrocatalytic processes occurring at Pt electrodes are highly sensitive to the structure of the platinum surface. Cyclic voltammetry (CV) is a widely used rapid measurement technique that provides both a qualitative and quantitative fingerprint of platinum surfaces. A comparison of results given by linear and staircase CVs is presented in this Application Note.
- AN-EC-026Comparison between linear and staircase cyclic voltammetry on a commercial capacitor
Capacitors are electronic components necessary for the success of the electronics industry. They have also become essential components of both electric and hybrid vehicles. Electrochemical tests, such as potentiostatic cyclic voltammetry, are used to check the performance of capacitors. VIONIC powered by INTELLO can perform both staircase and linear cyclic voltammetries (CV). This Application Note gives a comparison between the linear and the staircase potentiostatic cyclic voltammetries and highlights the necessity of using the linear CV to best study the performance of capacitors.
- AN-EC-027Measuring the potential at the counter electrode with VIONIC powered by INTELLO
Many different configurations are made possible when using two-, three-, or four-electrode cell setups in research. Depending on the experimental requirements, one setup may be preferred over another. Therefore, the proper electrode arrangements for these three situations are defined in this Application Note. As an example, the potential at the counter electrode is measured during the platinum oxidation in acidic media, with the second sense (S2) of VIONIC powered by INTELLO. Since dissolved Pt in solution could bias the results, it is important to be able to monitor the potential of the counter electrode.
- AN-EC-028Measuring hydrogen permeation according to ASTM G148
In this Application Note, hydrogen permeation experiments are conducted following the procedure described in the ASTM standard G148.
- AN-EC-030Electrochemistry of microelectrodes: a comparison with common-size electrodes
In this Application Note, the electrochemical properties of electrodes with a micrometer-size surface area are compared with the electrochemical properties of electrodes with millimeter-size surface area. The comparison is made through cyclic voltammetry in a Fe3+/Fe2+ (ferro/ferri) solution, and the differences in the voltammograms are explained with the different diffusion profiles at the electrode-electrolyte interface.
- AN-EC-031Monitoring ferrocyanide oxidation using hyphenated EC-Raman
This Application Note highlights the use of Metrohm Hyphenated EC-Raman Solutions to monitor the reversible oxidation of ferrocyanide at a gold electrode.
- AN-EC-032Hydrogen permeation with a single instrument according to ASTM G148
The Devanathan-Stachurski cell (or «H cell») is successfully used to evaluate the permeation of hydrogen through sheets or membranes. As small amounts of hydrogen pass through the sheet or membrane, a very sensitive potentiostat is required for its detection. A study of the hydrogen permeation properties of different iron sheets is discussed in this Application Note while taking the instrumental requirements into account.
- AN-EC-033Utilizing hyphenated EC-Raman to study a model system
This Application Note presents a walkthrough of an experiment on 4-nitrothiophenol using hyphenated EC-Raman, a combination of Raman spectroscopy and electrochemistry.
- AN-EC-034Ion-selective electrodes based on screen-printed technology
Advances in polymeric membranes and screen-printed technologies have enabled miniaturized, portable potentiometric sensors ideal for point-of-care analysis.
- AN-EC-035Using a portable standalone system for easy fermentation monitoring
By using an enzymatic sensor with a screen-printed electrode, producers can measure lactic acid production, thereby monitoring fermentation processes.
- AN-EC-036Ohmic iR drop Part 3 – Measurement with EIS
This Application Note explains manual and automated iR drop correction with electrochemical impedance spectroscopy and cautions against using less accurate methods.
- AN-EC-037Differential electrochemical mass spectrometry
Differential electrochemical mass spectrometry (DEMS) is used to monitor gaseous and volatile species during electrochemical reactions in situ.
- AN-EC-038Measuring ionic conductivity using screen-printing technology
Using disposable 11COND screen printed electrodes and electrochemical impedance spectroscopy, conductivity in drinking water can be measured using only 100 µL samples.
- AN-EC-039Spectro-electrochemiluminescence study of simultaneous emission from two luminophores
Spectro electrochemiluminescence experiments comparing photodiode and microspectrometer detectors, showing how each sensor captures ECL signals for the analysis of single and dual luminophore systems.
- AN-EC-040ECL detection of fentanyl
This Application Note presents an electrochemiluminescence (ECL) method for a fast, accessible, and cost-effective alternative method to detect fentanyl.
- AN-EC-041Studying nickel deposition with EQCM-D and EC-Raman
This application note demonstrates EQCM D for simultaneous mass and dissipation analysis of Ni(OH)₂ electrodeposition.
- AN-EIS-001Electrochemical impedance Spectroscopy (EIS) Part 1 – Basic Principles
Electrochemical impedance spectroscopy (EIS) is a widely used multidisciplinary technique for characterizing the behavior of complex electrochemical systems. EIS is employed in the study of a range of complex systems including batteries, catalysis, and corrosion processes. This Application Note focuses on the basic principles of EIS measurements.
- AN-EIS-002Electrochemical Impedance Spectroscopy (EIS) Part 2 – Experimental Setup
A typical electrochemical impedance spectroscopy (EIS) experimental setup consists of an electrochemical cell, a potentiostat/galvanostat, and a frequency response analyzer (FRA). This Application Note introduces common EIS experimental setups as well as details of the main experimental parameters.
- AN-EIS-003Electrochemical Impedance Spectroscopy (EIS) Part 3 – Data Analysis
Here, the most common circuit elements for EIS are introduced which may be assembled in different configurations to obtain equivalent circuits used for data analysis.
- AN-EIS-004Electrochemical Impedance Spectroscopy (EIS) Part 4 – Equivalent Circuit Models
Explore how to construct simple and complex equivalent circuit models for fitting EIS data in this Application Note. Nyquist plots are shown for each example.
- AN-EIS-005AN-EIS-005Electrochemical Impedance Spectroscopy (EIS) Part 5 – Parameter Estimation
In the application note AN-EIS-004 on equivalent circuit models, an overview of the different circuit elements that are used to build an equivalent circuit model was given. After identifying a suitable model for the system under investigation, the next step in the data analysis is estimation of the model parameters. This is done by the non-linear regression of the model to the data. Most impedance systems come with a data-fitting program. In this application note, the way NOVA is uses to fit the data is shown.
- AN-EIS-006AN-EIS-006Electrochemical Impedance Spectroscopy (EIS) Part 6 – Measuring raw signals in EIS
In this application note, the advantage of recording the raw time domain data for each individual frequency during an electrochemical impedance measurement is described.
- AN-EIS-007AN-EIS-007EIS Data fitting – How to obtain good starting values of equivalent circuit elements
Electrochemical impedance spectroscopy (EIS) is a powerful technique which provides information about the processes occurring at the electrode-electrolyte interface. The data collected with EIS are modeled with a suitable electrical equivalent circuit. The fitting procedure will change the values of the parameters until the mathematical function matches the experimental data within a certain margin of error. In this Application Note, some suggestions are given in order to get acceptable initial parameters and to perform an accurate fitting.
- AN-EIS-009Mott-Schottky Analysis
This Application Note presents the Mott-Schottky measurement, an extension of electrochemical impedance spectroscopy (EIS), on a popular semiconducting material.
- AN-FC-001AN-FC-001Fuel cells part 1 – what is a fuel cell?
A fuel cell is an electrochemical energy conversion device that produces electricity and heat by electrochemically combining a fuel (typically hydrogen) and an oxidant (typically oxygen). The higher efficiency also results in much lower carbon dioxide emissions and negligible amounts of SOx and NOx (when reformed fuel is used) compared with fossil fuel-based technologies for the same power output.
- AN-FC-002AN-FC-002Fuel cells part 2 – types of fuel cells
To overcome the various technical problems, many different fuel cell types have been developed. In this Application Note, proton exchange membrane, direct methanol and solid oxide fuel cells are discussed in more detail.
- AN-FC-003AN-FC-003Fuel cells part 3 – characterization using EIS
In this Application Note the use of Electrochemical Impedance Spectroscopy (EIS) for the characterisation of PEM fuel will be demonstrated. It will be shown that EIS is a powerful diagnostic tool for the determination of the following factors that can influence the performance of a PEM fuel cell.
- AN-FC-004AN-FC-004Impedance Measurements on Fuel Cells and Fuel Cell Stacks at High Currents: Part 1 – Autolab in combination with an electronic load
In this application note, a combination of PGSTAT and electronic load is use to perform electrochemical impedance spectroscopy in a fuel cell operating at high currents.
- AN-FC-005AN-FC-005Impedance measurements on fuel cells and fuel cell stacks at high currents: Part 2 – Autolab in combination with an electronic load
The use of impedance measurements on fuel cells under load makes it possible to study the influence of the different fuel cell elements on the behavior and (if detectable) on the ageing of the fuel cell. To perform high current density measurements, the Autolab systems can be connected to a third party electronic load. This extends the measurable range of the instrument by several current decades.
- AN-FC-006AN-FC-006i/V characterization of a fuel cell stack, DC measurements at high current densities
The operational behavior of a fuel cell stack is usually evaluated by determining the polarization and power density curves of the cell. These curves provide a quick characterization of the stack performance and an assessment of its optimal operating conditions (temperature, humidity, electrocatalyst, ion-exchange membrane).
- AN-FET-001Characterization and performance studies of field-effect transistors (FETs) using μStat-i 400
In recent years, field-effect transistors (FETs) have become more commonly used as a sensing platform for a multitude of electrochemical and biological applications. These devices are promising bioelectronic transducers that allow both low-potential operation and stable potentiometric measurements. FETs are now seen as an attractive alternative to using conventional electrochemical detection systems in the scientific community. This Application Note gives in-depth guidance about how to operate Metrohm DropSens bipotentiostat devices for the characterization of FETs and their use as transducers. A single μStat-i 400 device, a small and portable bipotentiostat and galvanostat, is used to demonstrate the experiments.
- AN-FLU-001AN-FLU-001Fluorescence spectroelectrochemistry of [Ru(bpy)3]2+/3+ in semi-infinite diffusion regime
In this Application Note, the Metrohm DropSens SPELEC instrument is used with the FLUORESCENCE KIT for time-resolved monitoring of electrochemical reactions in a semi-infinite diffusion regime by performing fluorescence spectroelectrochemistry of the [Ru(bpy)3]2+/3+ redox couple.
- AN-FLU-002Understanding the mechanism of a bioassay indicator by fluorescence
Alamar Blue is monitored with fluorescence spectroelectrochemistry during its irreversible reduction to resorufin and further reversible reduction to dihydroresorufin.
- AN-H-001AN-H-001Determination of TAN in oils
Determination of Total Acid Number (TAN) values in mineral oils and similar fluids.
- AN-H-003AN-H-003Determination of sulfate in phosphoric acid
Determination of the sulfate content of wet process phosphoric acid.
- AN-H-004AN-H-004Determination of fluoride by boric acid titration
This Application Note explains how fluoride determination in acid etching baths can be performed with thermometric titration.
- AN-H-005AN-H-005Determination of cuprous ions in the presence of ferrous ions
Determination of cuprous ions in the presence of ferrous ions in electrochemical copper leaching solutions.
- AN-H-006AN-H-006Determination of nonionic surfactants
Determination of a nonionic surfactant of the alkyl propylene oxide derivative type in commercial mixtures containing anionic surfactants.
- AN-H-007AN-H-007Standardization of sodium tetraphenylborate solution
Standardisation of sodium tetraphenylborate (NaTPB) solution for the determination of potassium and for nonionicsurfactants.
- AN-H-008AN-H-008Determination of phosphate by magnesium titration
Determination of soluble orthophosphate ions, for example soluble phosphate in fertilizers such as DAP.
- AN-H-009AN-H-009Determination of sulfate in brines
Determination of the sulfate content of brines.
- AN-H-010AN-H-010Determination of calcium in drilling fluids
Thermometric titration quickly and accurately assesses the total solids content of fluids employed in drilling oil and gas wells within minutes.
- AN-H-011AN-H-011Determination of the total solids content of drilling fluids
Thermometric titration is presented as a simple, fast, and reliable method to determine calcium content in various drilling fluids.
- AN-H-012AN-H-012Determination of ferrous ion content of heat exchanger wash solutions
Determination of ferrous ions in heat exchanger and vessel acid wash solutions, for measuring the effectiveness of acid inhibitors used in the solutions. Depending on the condition of the sample, the lower practical limit for the determination will vary from approximately 20-100mg/Kg Fe2+. Samples with high silicic acid contents require relatively large amounts of dilution water to render them mobile, and this limits the aliquot size and hence the amount of Fe2+ which can be analyzed.
- AN-H-013AN-H-013Determination of moisture content of ultrafine solids
Determination of water in moist particulate solids such as cobalt oxyhydroxide.
- AN-H-014AN-H-014Determination of free acid content of solutions containing Fe(III)
Determination of free acid in solutions containing metal ions, particularly Fe(III).
- AN-H-015AN-H-015Determination of acetic anhydride in acylation mixtures
Determination of acetic anhydride in the presence of acetic acid in acylation mixtures.
- AN-H-016AN-H-016Determination of acetic, phosphoric, and nitric acid mixtures
Determination of mixtures of phosphoric, nitric, and acetic acids used in etching aluminum in the manufacture of semiconductor devices.
- AN-H-017AN-H-017Determination of bromide and chloride in photographic developer solutions
Determination of bromide and chloride in photographic developer solutions.
- AN-H-018AN-H-018Determination of chloride in drilling fluids
Determination of chloride in oil well drilling fluids.
- AN-H-019AN-H-019Determination of chlorine in household bleaches
Determination of chlorine in household bleaches.
AG.25
Silver micro electrode 25 µmSilver micro electrode with a disk diameter of 25 µm.
AG.30
Silver micro electrode 30 µmSilver micro electrode with a disk diameter of 30 µm.
AG.300
Silver micro electrode 300 µmSilver micro electrode with a disk diameter of 300 µm.
AG.500
Silver disk micro-electrode tip of 500 μm diameterSilver disk micro-electrode tip of 500 μm diameter.
AU.10
Gold micro electrode 10 µmGold micro electrode with a disk diameter of 10 µm.
AU.100
Gold micro electrode 100 µmGold micro electrode with a disk diameter of 100 µm.
AU.200
Gold micro electrode 200 µmGold micro electrode with a disk diameter of 200 µm.
AU.25
Gold micro electrode 25 µmGold micro electrode with a disk diameter of 25 µm.
AU.300
Gold micro electrode 300 µmGold micro electrode with a disk diameter of 300 µm.
AU.40
Gold micro electrode 40 µmGold micro electrode with a disk diameter of 40 µm.
AU.50
Gold micro electrode 50 µmGold micro electrode with a disk diameter of 50 µm.
AU.500
Gold micro electrode 500 µmGold micro electrode with a disk diameter of 500 µm.
CORR.CAP
Corrosion cell lidCORR.CLAMP
Stainless steel clampCORR.GAS
Gas inlet/outletCORR.GL14
Open top cap size 14CORR.GL32
Open top cap size 32CORR.HOLD
Polyoxymethylene sample holderCORR.LUGG
Luggin capillaryCORR.SILC
Silicon O-ringCORR.STEEL
Stainless steel (SS 316) counter electrodeCORR.TB
Water bath tube connectionCORR.VESSEL
Corrosion cell vessel (400 millilitre)DRP-110AQ-U50
Screen-printed carbon electrodes modified with anthraquinoneSPCEs modified with anthraquinone-2-carboxylic acid are designed for pH monitoring using differential pulse voltammetry as a detection technique
DRP-110AUP-U50
Screen-printed carbon electrodes modified with gold particlesGold particles modified SPCEs are designed to improve the electroactive area of the electrode to increase the electronic transfer properties and to make easier the latter immobilization of biomolecules such as oligonucleotides, antibodies, proteins, etc.
DRP-110CAION-U50
Screen-printed carbon electrodes modified with calcium ionophoreDisposable Screen-Printed Electrodes are based on a calcium ionophore for the selective detection of this ion. Recommended for working with microvolumes. Ideal for decentralized and ‘in situ’assays.
DRP-110CUION-U50
Screen-printed carbon electrodes modified with copper ionophoreDisposable Screen-Printed Electrodes are based on a copper (II) ionophore for the selective detection of this ion and are recommended for working with microvolumes. Ideal for decentralized and ‘in situ’assays.
DRP-110CUPH-U75
Screen-Printed Carbon Electrodes modified with Copper(II) phthalocyanineCopper(II) phthalocyanine modified carbon SPEs were designed for gas detection among other research applications.
DRP-110FEION-U50
Screen-Printed Carbon Electrodes modified with iron ionophoreDisposable Screen-Printed Electrodes are based on a iron (II) ionophore for the selective detection of this ion. Recommended for working with microvolumes. Ideal for decentralized and ‘in situ’assays.
DRP-110FEPH-U75
Iron (II) phthalocyanine modified screen-printed electrodeOxidase enzyme mediators are electrochemical species that facilitate the oxidation of hydrogen peroxide at lower detection potentials.
DRP-110FERRI-U50
Potassium ferricyanide modified screen-printed electrodeThis screen-printed electrode modified with potassium ferricyanide is suitable for developing second-generation enzymatic based sensors
DRP-110HION-U50
Screen-printed carbon electrodes modified with hydrogen ionophoreThese disposable Screen-Printed Carbon Electrodes (SPCEs) are modified with a hydrogen ionophore in the working electrode. They are designed for detecting protons making possible pH monitoring since the potential can be easily correlated with the pH of the solution. Recommended for working with microvolumes and ideal for decentralized and ‘in situ’ assays.
DRP-110IRP-U50
Screen-printed carbon electrodes modified with iridium particlesIridium particles modified SPCEs can be used for different electrocatalytical applications such as monitorization of hydrogen peroxide, oxygen evolution reaction, triglycerides detection or proton sensing in pH device.
DRP-110KION-U50
Screen-Printed Carbon Electrodes modified with potassium ionophoreThese disposable Screen-Printed Carbon Electrodes (SPCEs) are modified with a potassium ionophore in the working electrode. They are designed to measure potassium ion by open circuit potentiometry (OCP) in a range of concentration from 10-6 to 1 M (from 0.039 to 39000 ppm).These potassium sensors are recommended for working with microvolumes and are ideal for decentralized and ‘in situ’ assays.
DRP-110MNPH-U75
Screen-printed carbon electrodes modified with manganese(II) phthalocyanineManganese(II) phthalocyanine modified SPEs are ideal for the determination of hydrogen peroxide at a low detection potentials. These electrodes are recommended for the development of enzymatic biosensors based on oxidases.
DRP-110MOS2-U50
Screen-printed electrode modified with molybdenum disulfideDisposable screen-printed carbon electrodes modified with molybdenum disulfide. Suitable for catalytical and photocatalytical applications.Photocurrents are obtained when irradiating with an UV LED light into de working electrode. Energy of beam light is employed in promoting an electron from the valence gap to the conduction band. While the electrode can be involved in reductions reaction, the positive hole left behind can be involved in oxidation reactions making these electrodes suitable to perform switchable redox reactions controlled by a source of UV light
DRP-110NAION-U50
Screen-Printed Carbon Electrodes modified with sodium ionophoreThese disposable Screen-Printed Carbon Electrodes (SPCEs) are modified with a sodium ionophore in the working electrode. They are designed to measure sodium ion by open circuit potentiometry (OCP) in a range of concentration from 10-4 to 1 M (from 2.3 to 23000 ppm).
DRP-110NHION-U50
Screen-printed carbon electrodes modified with ammonium ionophoreThese disposable Screen-Printed Electrodes are based on an ammonium ionophore for the selective detection of this ion and are recommended for working with microvolumes and are ideal for decentralized and ‘in situ’assays.
DRP-110NO3ION-U50
Screen-printed carbon electrodes modified with nitrate ionophoreDisposable Screen-Printed Electrodes are based on a nitrate ionophore for the selective detection of this ion. Recommended for working with microvolumes. Ideal for decentralized and ‘in situ’assays.
DRP-110PDP-U50
Screen-printed carbon electrodes modified with palladium particlesPalladium particles modified SPEs are ideal for the determination of hydrogen peroxide at a low detection potentials. These electrodes are recommended for the development of enzymatic biosensors based on oxidases.
DRP-110PHEN-U50
Screen-printed carbon electrodes modified with phenanthrolineSPCEs modified with 1,10-phenanthroline-5,6-dione are ideal for detecting NADH evolution in enzymatic dehydrogenase based sensors
DRP-110PLYS-U50
Poly-L-Lysine modified Screen-Printed Carbon ElectrodeThe screen-printed carbon electrodes modified with Poly-L-Lysine have been designed for cell culture and protein anchoring
DRP-110PPYR-U50
Polypyrrole modified screen-printed carbon electrodeMesoporous Carbon modified Screen-Printed Carbon Electrode designed for the development of (bio) sensors with an enhanced electrochemical active area. Recommended for ammonia gas, biological molecules, detection of pollutants, anions detection among other applications in multiple sectors and fields.
DRP-110PTP-U50
Screen-printed carbon electrodes modified with platinum particlesPlatinum particles modified SPEs are ideal for the determination of hydrogen peroxide at a low detection potentials. These electrodes are recommended for the development of enzymatic biosensors based on oxidases.
DRP-110RHP-U50
Screen-printed carbon electrodes modified with rhodium particlesRhodium particles modified SPCEs can be used for different electrocatalytical applications such as monitorization of hydrogen peroxide, hydrogen evolution, oxygen reduction reaction, formic acid or methanol oxidation reactions, halogens or reduction of inorganic nitrogen, as nitrate or nitric oxide.
DRP-110SFT-U50
Surface treated screen-printed carbon electrode110SFT has a carbon working electrode with a surface treatment that allows better aqueous wetting and homogenisa-tion of the working surface. This modification makes these electrodes ideal for use as substrates when a homogeneous surface is required, for example, in catalytic process research or impedance measurements, among other applications.
DRP-110TIO2-U50
Screen-printed carbon electrode modified with AnataseDisposable screen-printed carbon electrodes modified with anatase. Suitable for catalytical and photocatalytical applications.Photocurrents are obtained when irradiating with an UV LED light into de working electrode. Energy of beam light is employed in promoting an electron from the valence gap to the conduction band. While the electrode can be involved in reductions reaction, the positive hole left behind can be involved in oxidation reactions making these electrodes suitable to perform switchable redox reactions controlled by a source of UV light
DRP-110ZNO-U50
Screen-printed carbon electrode modified with zinc oxideDisposable screen-printed carbon electrodes modified with zinc oxide. Suitable for catalytical and photocatalytical applications.Photocurrents are obtained when irradiating with an UV LED light into de working electrode. Energy of beam light is employed in promoting an electron from the valence gap to the conduction band. While the electrode can be involved in reductions reaction, the positive hole left behind can be involved in oxidation reactions making these electrodes suitable to perform switchable redox reactions controlled by a source of UV light
DRP-11COND-U50
Screen-printed carbon electrode for conductivity measurementsDisposable screen-printed electrodes designed to measure conductivity aqueous media in a typical range of 84 µS cm-1 to 111.8 mS cm-1. Conductivity sensors are recommended for working with microvolumes and are ideal for decentralized and ‘in situ’ assays.Recommended instuctions to work with these SPEs:Let the sample temper at 25 ºC to obtain accurate measurements; Place 100 μL onto the cell with the aid of a micropipette; Measure |Z| in ohm at 10 kHz with an EIS potentiostat; Subtract resistance value, r0, in ohm to the |Z| to correct contribution of the electrodes; If |Z| = 3638 Ω and r0 = 100 Ω then|Z| – r0 = 3638 Ω – 100 Ω = 3538 ΩCalculate inverted value and multiply by one million to achieve conductivity in μS; (1/3538 Ω) x 1000000 = 283 μSMultiply the value by the Kcell to obtain final result in μS·cm-1; If Kcell = 5 cm-1 then283 μS x 5 cm-1 = 1413 μS cm-1
DRP-11L-U75
Screen-Printed Carbon Electrode (Aux.:C;Ref.:Ag/AgCl)Screen-Printed Carbon Electrode (Aux.:C;Ref.:Ag/AgCl)
DRP-4W110AUP-U20
4 WEs screen-printed Gold particles/Carbon electrode (1 Aux.: C; 1 Ref.: Ag)DRP-4W410-U20
Co-Phthalocyanine modified 4W screen-printed carbon electrodeSuitable for the evelopment of enzymatic (bio)sensors based on oxidases. Suitable for detecting four signals simultaneously allowing differential measurements of four analytes in the solution. Also,this electrochemical platform is useful for developing other (bio)sensing applications in multiple sectors and fields.
DRP-4W710-U20
Prussian blue modified 4W screen-printed carbon electrodeSuitable for the evelopment of enzymatic (bio)sensors based on oxidases. Suitable for detecting four signals simultaneously allowing differential measurements of four analytes in the solution. Also,this electrochemical platform is useful for developing other (bio)sensing applications in multiple sectors and fields.
DRP-550BT-U75
Screen-printed platinum electrode / Ink BTScreen-printed platinum electrode / Ink BT ideal for electrosynthesis, compounds characterization and development of (bio)sensing applications in multiple sectors and fields.
DRP-8W110AUP-U20
8 WEs screen-printed Gold particles/Carbon electrode (1 Aux.: C; 1 Ref.: Ag)DRP-8W410-U20
Co-Phthalocyanine modified 8W screen-printed carbon electrodeSuitable for the evelopment of enzymatic (bio)sensors based on oxidases. Suitable for detecting four signals simultaneously allowing differential measurements of four analytes in the solution. Also,this electrochemical platform is useful for developing other (bio)sensing applications in multiple sectors and fields.
DRP-8W710-U20
Prussian blue modified 8W screen-printed carbon electrodeSuitable for the evelopment of enzymatic (bio)sensors based on oxidases. Suitable for detecting four signals simultaneously allowing differential measurements of four analytes in the solution. Also,this electrochemical platform is useful for developing other (bio)sensing applications in multiple sectors and fields.
DRP-8X110STR-U10
8X Streptavidin modified screen-printed electrodeScreen-printed electrochemical array formed by eight 3-electrode electrochemical cells. Specially designed for the development of multiple simultaneous analysis where stable high affinity surface for a large amount of biotinylated molecules is required.
DRP-8X220AT-U20
8X Screen-printed Gold electrodeDRP-96X110AUP-U2
96X Gold particles modified screen-printed electrodeDRP-96X410-U2
96X Screen-printed Co-phthalocyanine/Carbon electrodeDRP-96X710-U2
96X Screen-printed Prussian Blue/Carbon electrodeDRP-AGTR10-U20
Optically transparent silver screen-printed electrodeOptically transparent silver screen-printed electrode, suitable for the evelopment of (bio)sensing applications. Ideal for performing spectroelectrochemical transmission experiments.
DRP-AUFET30-U50
Flexible Gold Field-Effect Transistors with coplanar gateDisposable flexible devices for Field-Effect Transistor (FET) are made of gold onto plastic substrate. These electrodes are useful to obtain sensing phases.
DRP-BIOFV1-U75
Electrochromic sensor for biofuel cells developmentSelf-powered electrochromic biosensors with a potential of being “instrumentless” sensoric devices for analyte detection and for the development of biofuel cells (BFC).The 2 carbon electrodes can be modified with appropriate enzymes to become the cathode and anode of BFC; the PEDOT electrode can be modified with a dye that changes its color when it is oxidized or reduced. Thus, the power of the BFC can be used to start the oxidation or reduction of the dye, and, hence its color change, thus making this device a BFC sensor.Two silver paths placed in the lateral sides of the substrate are intended for connection with an external device to measure or control the potential.
DRP-C110-NTC-U50
Screen-printed carbon electrode with NTC thermistorScreen-printed carbon electrode with NTC thermistor to detect the temperature of the system under test. The temperature sensor, located on the back of the substrate, consists of an NTC thermistor. It requires prior calibration and the recommended operating temperature range with this sensor is 10 °C to 60 °C.
DRP-C550-U75
Screen-printed platinum electrode / Work in solutionScreen-printed platinum electrode with the sensing area closer to the end of the strip. Ideal for immersing the electrode into solution and for electrosynthesis, compounds characterization and development of (bio)sensing applications in multiple sectors and fields.
DRP-CO10-U20
Thick Film Cobalt electrode (Aux.: C; Ref.: Ag) / Individually packagedDRP-FS-BDD-U1
Free-standing boron-doped diamond (BDD) electrodic materialProduct based on a free-standing boron-doped diamond material, which provides excellent electronic transfer properties for its use as an ultra-sensitive electroanalytical platform.
DRP-G-IDEAG5-U20
Interdigitated Silver electrode/ 5 microns lines and gaps / Glass substrateDRP-G-IDECU5-U20
Interdigitated copper electrodeInterdigitated copper electrode suitable for the development of (bio)sensing applications in multiple sectors and fields. The interdigitated configuration makes these electrodes ideal for conductivity and impedance measurements.
DRP-G-IDEMIX-U20
Mix of interdigitated electrodesMix of interdigitated electrodes of differnt materials and spacing. Suitable to perform tests prior the development of a concrete application
DRP-GLU10HC-U50
Screen-printed electrodes for wide linear-range glucose detectionScreen-printed electrodes intended for the determination of Glucose in liquid samples allowing measurement of high concentrations of glucose up to 25 mM.
DRP-G-MEA222-U20
Gold MicroElectrode array d. 3mm / Microholes 10 microns/ Glass substrateGold MicroElectrode array d. 3mm / Microholes 10 microns/ Glass substrate
DRP-G-MEA555-U20
Platinum MicroElectrode array d. 3mm / Microholes 10 microns/ Glass substratePlatinum MicroElectrode array d. 3mm / Microholes 10 microns/ Glass substrate
DRP-G-MEAB222-U20
Gold Band MicroElectrode arraysGold Band MicroElectrodes Arrays are composed of an auxiliary, reference and working electrode all made in gold. The working electrode is a metallic surface made of gold covered by a SU-8 resin microperforated, defining an array of bands of 10 µm width. These microarray electrodes exhibit enhanced diffusion, sensitivity and detection limits.
DRP-G-MEAB555-U20
Platinum Band MicroElectrode arraysPlatinum Band MicroElectrodes Arrays are composed of an auxiliary, reference and working electrode all made in platinum. The working electrode is a metallic surface made of platinum covered by a SU-8 resin microperforated, defining an array of bands of 10 µm width. These microarray electrodes exhibit enhanced diffusion, sensitivity and detection limits
DRP-IDEAU200-HPT-WB
Interdigitated gold electrode with heaterInterdigitated elecrode recommended for the development of gas sensors by depositing a sensing layer (semiconductor metal oxide) in the interdigitated area. Bondable contacts allow wire bonding process. On the other side, a Platinum heater can be used to control the operating temperature in the sensing layer, due to the high thermal conductivity of the ceramic substrate used in this device.
DRP-LACT10-U50
Lactate sensorSuitable for the determination of L(+)-Lactate determination in liquid samples.
DRP-MH-110-U20
Screen-printed carbon electrodes with microholesThese disposable screen-printed carbon electrodes consist of a working electrode with 19 spherical microholes distributed hexagonally
DRP-ORPSEN-U20
Sensors (screen printed electrodes) for ORP measurementsDRP-ORPSTD
ORP standard for DRP-ORPSTAT reader (5 mL)DRP-OTEMIX-U40
Mix of Screen-printed Optically transparent Electrodes: ITO10, P10, AGTR10 and AUTR10 (10 units/model)DRP-P-IDEAG100-U50
Interdigitated Silver Electrode / 100 microns lines and gaps / Plastic transparent substrateDRP-P-IDEAU50-U50
Interdigitated gold electrode over plastic substrateGold interdigitated electrodes made on flexible plastic substrate with dimension for bands/gaps of 50 µm. The interdigitated configuration enhances sensibility and detection limits.
DRP-P-IDEITO100-U50
Interdigitated ITO Electrode / 100 microns lines and gaps / Plastic transparent substrateDRP-P-IDEITO50-U50
Interdigitated ITO electrode over transparent plastic substrateITO interdigitated electrodes made on flexible transparent plastic substrate with dimension for bands/gaps of 50 µm. The interdigitated configuration enhances sensibility and detection limits.
DRP-PL6
Laboratory Practice - Determination of L-lactic acid in winesThese practical kits allow students with or without electrochemical experience to complement their academicprograms by an inquiry-based learning on research experiences. They are also useful for those researchers that are starting in the biosensing field.Lactate detection is of great importance in a wide range of areas, including the wine industry, where it is frequently used as key indicator of wine quality. Amperometric biosensors for lactate detection, used in this practice, are an optimal alternative to perform this analysis since they allow the selective detection of this analyte at low concentrations in a simple way. The main goals in this laboratory teaching kit are: defining the detection potential, studying the inter-electrode reproducibility, the establishment of a calibration curve, and the measurement of L-lactic acid in wine samplesThe kit contains:• The professor outline• The student outline• A box of suitable screen-printed electrodes shipped in an isulated kit (50 units)
DRP-PL7
Laboratory Practice - Determination of chloride in synthetic sweatThese practical kits allow students with or without electrochemical experience to complement their academicprograms by an inquiry-based learning on research experiences. They are also useful for those researchers that are starting in the biosensing field.The determination of chloride in synthetic sweat plays a key role in the early diagnosis of cystic fibrosis (CF) in people of all ages. People with CF have a high level of chloride in sweat. In voltametric sensors the analytical signal usually employed is the peakcurrent generated when a suitable potential window is scanned. This peak current is related to the concentration of the analyte. The main objectives of this didactic laboratory kit are the establishment of a calibration curve to study the accuracy of the procedure for the determination of chloride in synthetic sweat sample.The kit contains:The professor outline; The student outline; A box of suitable screen-printed electrodes (50 units); Solid NaCl (300 mg); Sinthetic sweat (3 solutions with different concentrations);
DRP-PL8
Laboratory Practice - Determination of hydrogen peroxide in milkThese practical kits allow students with or without electrochemical experience to complement their academicprograms by an inquiry-based learning on research experiences.They are also useful for those researchers that are starting in the biosensing field. Hydrogen peroxide can be found in milk at different stages of its processing. Despite this, the addition of peroxide to milk in any concentration is not allowed in many countries including EU. This is the reason why developing economical and accurate devices for the determination of its existence in the whole line of milk processing must be done.The main objectives of this laboratory kit are the establishment of a calibration curve, analysis of the analytical performance of the sensor and evaluation on the precision of the assay for the determination of hydrogen peroxide in milk.The kit contains:The professor outline; The student outline; A box of suitable screen-printed electrodes (50 units);
DRP-PL9
Laboratory Practice - Determination of alcohol content in beerThese practical kits allow students with or without electrochemical experience to complement their academicprograms by an inquiry-based learning on research experiences. They are also useful for those researchers that are starting in the biosensing field.According to European regulations, the labelling of drinks containing more than 1.2% by volume of alcohol must indicate the actual volumetric alcoholic strength. Due to the health and legal importance that implies showing the alcohol content of a beer in its label, it is important to determine its percentage with good precision and selectivity.The main goals in this laboratory teaching kit are studying the establishment of a calibration curve and the determination of the alcohol content in samples of commercial beers by employing a fast and easy electrochemical assay. The kit contains:The professor outline; The student outline; A box of suitable screen-printed electrodes (50 units);
DRP-PW-4XIDEAU20-U50
Multi-interdigitated Gold Electrode / 20 microns lines and gaps / Plastic White SubstrateThese multi-electrodes are formed by four interdigitated gold electrodes in one piece. The interdigitated configuration improves the detection limits and sensitivity. The dimensions of the bands/gaps are 20 μm.
DRP-PW-4XIDEAU30-U50
Multi-interdigitated Gold Electrode / 30 microns lines and gaps / Plastic White SubstrateThese multi-electrodes are formed by four interdigitated gold electrodes in one piece. The interdigitated configuration improves the detection limits and sensitivity. The dimensions of the bands/gaps are 30 μm.
DRP-PW-4XIDEAU40-U50
Multi-interdigitated Gold Electrode / 40 microns lines and gaps / Plastic White SubstrateThese multi-electrodes are formed by four interdigitated gold electrodes in one piece. The interdigitated configuration improves the detection limits and sensitivity. The dimensions of the bands/gaps are 40 μm.
DRP-PW-4XIDEAU50-U50
Interdigitated Gold Electrode / 50 microns lines and gaps / Plastic White SubstrateThese multi-electrodes are formed by four interdigitated gold electrodes in one piece. The interdigitated configuration improves the detection limits and sensitivity. The dimensions of the bands/gaps are 50 μm.
DRP-PW-4XIDEAU60-U50
Multi-interdigitated Gold Electrode / 60 microns lines and gaps / plastic white substrateThese multi-electrodes are formed by four interdigitated gold electrodes in one piece. The interdigitated configuration improves the detection limits and sensitivity. The dimensions of the bands/gaps are 60 μm.
DRP-PW-IDEAU50-U50
Interdigitated gold electrode over white plastic substrateGold interdigitated electrodes made on white flexible plastic substrate with dimension for bands/gaps of 50 µm. The interdigitated configuration enhances sensibility and detection limits.
DRP-PW-IDEPD50-U50
Interdigitated palladium electrode over white plastic substratePalladium interdigitated electrodes made on white flexible plastic substrate with dimension for bands/gaps of 50 µm. The interdigitated configuration enhances sensibility and detection limits.
DRP-PW-PD10-U20
Thin Film Palladium electrode (Aux.: C; Ref.: Ag) / Plastic substrateDRP-UA10-U50
Uric acid sensorSuitable for the determination of uric acid
DRP-X4410-U75
Dual screen-printed Co-Phthalocyanine/Carbon working electrodesDRP-X7710-U75
Dual screen-printed Prussian Blue/Carbon working electrodesSuitable for detecting two signals simultaneously allowing differential measurements of two analytes in the solution. Recommended for the development of enzymatic (bio)sensors based on oxidases.
DRP-XFF10-U75
Dual screen-printed Ferrocyanide/Carbon working electrodesEQCM.AU
EQCM 6 MHz Au/TiO2 crystal working electrodeEQCM 6 MHz Au/TiO2 crystal working electrode
EQCM.CE
EQCM counter electrodeGold coil counter electrode for Autolab EQCM cell.
EQCM.PT
EQCM 6 MHz Pt-coated crystal working electrodeEQCM 6 MHz Pt-coated crystal working electrode
EQCM.REF.EL.S
Reference Electrode Ag/AgCI 3M KCIReference Electrode Ag/AgCl 3M KCl
IR.75
Iridium micro electrode 75 µmIridium micro electrode with a disk diameter of 75 µm.
PD.100
Palladium micro electrode 100 µmPalladium micro electrode with a disk diameter of 100 µm.
PD.200
Palladium micro electrode 200 μmPalladium disk micro-electrode tip of 200 μm diameter.
PD.25
Palladium micro electrode 25 µmPalladium micro electrode with a disk diameter of 25 µm.
PD.300
Palladium micro electrode 300 µmPalladium micro electrode with a disk diameter of 300 µm.
PD.500
Palladium micro electrode 500 µmPalladium micro electrode with a disk diameter of 500 µm.
PT.10
Platinum micro electrode 10µmPlatinum microelectrode with a disk diameter of 10µm
PT.100
Platinum micro electrode 100 µmPlatinum micro electrode with a disk diameter of 100 µm.
PT.20
Platinum micro electrode 20 µmPlatinum micro electrode with a disk diameter of 20 µm
PT.200
Platinum micro electrode 200 µmPlatinum micro electrode with a disk diameter of 200 µm.
PT.25
Platinum micro electrode 25 µmPlatinum micro electrode with a disk diameter of 25 µm.
PT.300
Platinum micro electrode 300 µmPlatinum micro electrode with a disk diameter of 300 µm.
PT.50
Platinum micro electrode 50 µmPlatinum micro electrode with a disk diameter of 50 µm.
PT.500
Platinum micro electrode 500 µmPlatinum micro electrode with a disk diameter of 500 µm.
PT.SHEET.S
Platinum sheet electrodeThis electrode consists of a thin sheet of platinum embedded into a glass shaft. This electrode can be used as a counter electrode for most electrochemical measurements. The surface area is approximatively 1 cm².
RDE.AG50.S
Silver working electrode 5 mmSilver working electrode with a disk diameter of 5 mm.
RDE.AU50.S
Gold working electrode 5 mmGold working electrode with a disk diameter of 5 mm.
RRDE.AUPT.S
Rotating ring disk electrode, Gold disk Platinum ringThe RRDE electrode tip consist of a 5 mm disc of gold with a concentric platinum ring at a distance of 375µm, leading to a theoretical collection efficiency of 24.9%.
RRDE.GCPT.S
Rotating ring disk electrode, Glassy Carbon disk Platinum ringThe RRDE electrode tip consist of a 5 mm disc of Glassy Carbon with a concentric platinum ring at a distance of 375µm, leading to a theoretical collection efficiency of 24.9%.
RRDE.PTPT
Rotating Ring Disk Electrode, Platinum disk Platinum ringThe RRDE electrode tip consist of a 5 mm disc of platinum with a concentric platinum ring at a distance of 375µm, leading to a theoretical collection efficiency of 24.9%.
RRDE.PTPT.S
Rotating Ring Disk Electrode, Platinum disk Platinum ringThe RRDE electrode tip consist of a 5 mm disc of platinum with a concentric platinum ring at a distance of 375µm, leading to a theoretical collection efficiency of 24.9%.
6.05406.070
KFC equipment with generator electrode without diaphragm for OMNIS Oven ModuleComplete accessory set for coulometric Karl Fischer titrations with a generator electrode without diaphragm on an OMNIS Oven Module
6.05609.000
KFT equipment for OMNIS TitratorComplete accessory set for volumetric Karl Fischer titration.
6.05609.010
KFT equipment for OMNIS Titrator with PolytronComplete accessory set for volumetric Karl Fischer titration with Polytron.
6.05610.050
KFT equipment for Eco KF TitratorComplete accessory set for volumetric Karl Fischer titration
6.05610.060
KFT equipment for Eco KF Titrator with PolytronComplete accessory set for volumetric Karl Fischer titration with Polytron
6.05700.000
Consumable Kit OMNIS GripperFour slide sleeves and rubber gripper fingers each for replacement on the gripper finger of the OMNIS Sample Robot.
6.05700.010
Consumable Kit OMNIS Pump Module (2-channel)Two pump tubings each and associated press clamps for replacement in the OMNIS pump module. One Consumable Kit can be used for re-equipping two peristaltic pumps of the pump module.
6.05700.140
Consumable Kit, cylinder unit OMNISFEP tubing connections M6 (40 cm) and antidiffusion tip for 6.03001.xxx and 6.03004.xxx OMNIS cylinder units.
6.05700.160
Consumable Kit seals for the 6.02710.000 KF Dis-Cover lidReplacement seals for 6.02710.000 lid, 25 pieces.
6.05700.170
Consumable Kit seals for the 6.02710.010 KF Dis-Cover lidReplacement seals for 6.02710.010 lid, 16 pieces
6.05700.250
Consumable Kit OMNIS Gripper for 6.02601.030Four rubber gripper fingers for replacement on the gripper finger of the OMNIS Sample Robot.
6.05700.401
Consumable Kit, cylinder unit OMNIS 2 mLCylinder unit OMNIS 2 mL complete with cylinder, piston, cylinder base, valve disk, centering tube, and cylinder housing, including programmed data chip.
6.05700.411
Consumable Kit, cylinder unit OMNIS 5 mLCylinder unit OMNIS 5 mL complete with cylinder, piston, cylinder base, valve disk, centering tube, and cylinder housing, including programmed data chip.
6.05700.421
Consumable Kit, cylinder unit OMNIS 10 mLCylinder unit OMNIS 10 mL complete with cylinder, piston, cylinder base, valve disk, centering tube, and cylinder housing, including programmed data chip.
6.05700.431
Consumable Kit, cylinder unit OMNIS 20 mLCylinder unit OMNIS 20 mL complete with cylinder, piston, cylinder base, valve disk, centering tube, and cylinder housing, including programmed data chip.
6.05700.441
Consumable Kit, cylinder unit OMNIS 50 mLCylinder unit OMNIS 50 mL complete with cylinder, piston, cylinder base, valve disk, centering tube, and cylinder housing, including programmed data chip.
6.05700.451
Consumable Kit, cylinder unit OMNIS special 20 mLCylinder unit special 20 mL, complete with cylinder, piston, cylinder base, valve disk, centering tube, housing, and data chip. For 6.03004.220 OMNIS cylinder unit.
6.05700.460
Consumable Kit, cylinder unit OMNIS special 10 mLCylinder unit special 10 mL, complete with cylinder, piston, cylinder base, valve disk, centering tube, housing, and data chip. For 6.03004.210 OMNIS cylinder unit.
6.05800.000
Upgrade Sample Robot S to MThe set contains all of the components required for upgrading an already existing OMNIS Sample Robot from size S to size M. In addition to the required rack and module bases, all of the required cables, screws and arm extensions are included, as is the function license. As before, the set also contains a drain channel for OMNIS Sample Robot M/L.
6.05800.010
Upgrade Sample Robot S to LThe set contains all of the components required for the upgrade of an already existing OMNIS Sample Robot from size S to size L. In addition to the required rack and module bases, all of the required cables, screws and arm extensions are included, as is the function license. As before, the set also contains a drain channel for OMNIS Sample Robot M/L.
6.05800.020
Upgrade Sample Robot M to LThe set contains all of the components required for the upgrade of an already existing OMNIS Sample Robot from size M to size L. Apart from the required rack and module bases, all the required cables, screws, arm extensions as well as the function license are included.
6.05800.030
Upgrade peristaltic pump moduleThis set contains all of the components that are required for the upgrade of a peristaltic (2-channel) pump module to a peristaltic (4-channel) pump module in the OMNIS Sample Robot Pick&Place. In addition to the pumps required, all the necessary tubing and canisters are included to equip one additional rinsing pump and one additional aspiration pump each.
6.05800.060
Upgrade Kit: IC EcoUpgrade Kit for retrofitting the Eco IC with a pulsation absorber.
6.05800.070
Lid tray upgrade for OMNIS Sample Robot S to M/LThis set includes a top lid tray for upgrading a Sample Robot S lid tray for use in the OMNIS Sample Robot M or L.
6.05800.080
Upgrade peristaltic pump moduleThis set contains all of the components that are required for the upgrade of a peristaltic (2-channel) pump module to a peristaltic (4-channel) pump module in the OMNIS Sample Robot Pick&Place. In addition to the pumps required, all the necessary tubing and canisters are included to equip one additional rinsing pump and one additional aspiration pump each. Compatible with OMNIS software version 2.13.2 and 2.17 or higher.
6.05800.540
Upgrade Pick&Place module WSMThis set contains all of the components required to extend an OMNIS Workstation Module (1T/0P) or (1T/2P) to include a second workstation. Sample throughput can be doubled as a result of the extension.
6.05800.560
Upgrade stirrer WSMThis set contains all of the components required to equip a workstation of an OMNIS Workstation Module with a magnetic stirrer.
6.05800.570
Upgrade peristaltic pump module WSMThis set contains all of the components that are required for the upgrade of an OMNIS Workstation Module involving the addition of 2 pumps. This set can be used not only to extend the number of pumps from 0 to 2, but also from 2 to 4, and enables the effective cleaning of sensors and sample vessels. In addition to the pumps required, all of the necessary tubing and canisters are included for equipping 1 rinsing pump and 1 aspiration pump each.
6.05800.600
Upgrade OMNIS Sample Robot S-M WSMThis set contains all of the components required for upgrading an already existing OMNIS Sample Robot WSM from size S to size M. In addition to the required rack and module bases, all of the required cables, screws, and arm extensions are included, as is the function license. As before, the set also contains a drain channel for the OMNIS Sample Robot M/L
6.05800.610
Upgrade OMNIS Sample Robot S-L WSMThis set contains all of the components required for upgrading an already existing OMNIS Sample Robot WSM from size S to size L. In addition to the required rack and module bases, all of the required cables, screws, and arm extensions are included, as is the function license. As before, the set also contains a drain channel for the OMNIS Sample Robot M/L.
6.05800.620
Upgrade OMNIS Sample Robot M-L WSMThis set contains all of the components required for upgrading an already existing OMNIS Sample Robot WSM from size M to size L. In addition to the required rack and module bases, all of the required cables, screws, and arm extensions are included, as is the function license.
6.05800.630
Conversion Kit: OMNIS Sample Robot M/L P&P to WSMThis set contains the required parts for preparing an existing Sample Robot Pick&Place M or L, which has a maximum of 1 pump module and 2 Pick&Place Modules, for the utilization of an OMNIS Workstation Module.
6.05802.000
MB Retrofit KitAdaptation kit for retrofitting the optimization of the 2 mm setup for non-suppressed or chemically suppressed ProfIC or Compact IC instruments.
6.05802.010
MB Retrofit Kit, SESAdaptation kit for retrofitting the optimization of the 2 mm setup for sequentially chemically suppressed ProfIC or Compact IC instruments.
6.06001.380
Temperature gradient function licenseTemperature gradient function license for OMNIS Sample Robot Oven. This license enables the slow heating-up of an unknown sample and the determination of the optimum heating-up temperature.
6.06071.010
MIRA Cal Pharma USB StickSimple-to-use software that is primarily used for downloading and analyzing data, printing reports, creating spectral libraries and operating procedures, as well as managing 21 CFR Part 11 compliance.
6.06071.030
MIRA P USB stickUser-friendly software that is primarily used for downloading and analyzing data, printing reports, creating spectral libraries and operating procedures, as well as managing compliance with FDR 21 CFR Part 11 regulations.
6.06071.040
Calibrate/Verify Accessory (CVA)50:50 (v:v) Toluene/Acetonitrile ASTM standard for calibration of the wave number axis of MIRA M-3/P spectrometers and polystyrene for wave number verification according to EP 2.2.48.
6.07311.010
Boat Introduction Module, quartzBoat Introduction Module for the Combustion IC for use with the quartz combustion tube. This module uses a sample boat to transfer samples into the oven for combustion.It also includes a pair of tweezers and a petri dish for handling the sample boat.
6.07311.020
Boat Introduction Module, ceramicBoat Introduction Module for the Combustion IC for use with the ceramic combustion tube. This module uses a sample boat to transfer samples into the oven for combustion.It also includes a pair of tweezers and a petri dish for handling the sample boat.
6.07311.030
Liquid Introduction Module, manual (TEI)The Liquid Introduction Module enables the combustion of liquid samples by using an automatic syringe to inject the sample directly. The module can be used for samples with a boiling point 420 °C.This module can also guide gaseous or LPG samples into the oven from the GLS Sampler CIC.
6.07311.040
Liquid Introduction Module, automated (TEI)The Liquid Introduction Module enables the combustion of liquid samples by using the Liquid Autosampler CIC to inject the sample directly. The module can be used for samples with a boiling point < 420 °C.This module can also guide gaseous or LPG samples from the GLS Sampler CIC into the oven.
6.07311.100
Quartz combustion tube (TEI)Quartz combustion tube for the Combustion Oven (TEI).
6.07311.110
Ceramic combustion tube (TEI)Ceramic combustion tube for the Combustion Oven (TEI).
6.07311.200
Sample cup, quartz, pk=3Quartz cup for sample injection in Metrohm Combustion IC (TEI), 3 pcs.
6.07311.210
Sample cup, quartz, pk=30Quartz cup for sample injection in Metrohm Combustion IC (TEI), 30 pcs.
6.07311.220
Sample cup, ceramic, pk=3Ceramic cup for sample injection in Metrohm Combustion IC (TEI), 3 pcs.
6.07311.230
Sample cup, ceramic, pk=30Ceramic cup for sample injection in Metrohm Combustion IC (TEI), 30 pcs.
6.07311.240
Slider boat, quartzSlider boat for the Boat Introduction Module 6.07311.010, quartz.
6.07311.250
Slider boat, ceramicBoat drive for sample boat of the 6.07311.020 Boat Introduction Module, ceramic.
6.07311.260
Boat guiding tubeBoat guiding tube for the Boat Introduction Module quartz (6.07311.010) or ceramic (6.07311.020).
6.07311.270
O-Ring Set (TEI), siliconeO-Ring Set (TEI) for the combustion tube and the guide tubing for the Boat Introduction Module.
6.07311.280
O-Ring Set combustion tube (TEI), siliconeO-Ring Set (TEI) for the combustion tube.
6.07311.290
Septum for Introduction Module (TEI)Septum for liquid injection port of the Introduction Modules (TEI) 6.07311.010, 6.07311.020, 6.07311.030, 6.07311.040.
6.07311.300
Septum cap Liquid Introduction ModuleLid for fastening the 6.07311.290 septum in place in the Liquid Introduction Module.
6.07311.310
Oxygen and UPW supply tubing (TEI)Tubing for oxygen and ultrapure water supply at the inlet to the combustion tube (TEI).
6.07311.350
Replacement filter Combustion Oven (TEI)Spare filter for the fan in the Combustion Oven (TEI).
6.07312.010
Solid sample tray no. 1Solid sample tray no. 1 for the Solid Autosampler CIC (2.0136.0620) for 20 positions.
6.07312.020
Solid sample tray no. 2Solid sample tray no. 2 for the Solid Autosampler CIC (2.0136.0620) for 20 positions.
6.07312.030
Solid sample tray no. 3Solid sample tray no. 3 for the Solid Autosampler CIC (2.0136.0620) for 20 positions.
6.07313.020
Screw incl. ferrule for Liquid Autosampler CIC (TEI)Screw including collapsible ferrule for 1/16" tubing to connect the transfer line to the needle on the Liquid Autosampler CIC (TEI).
6.07313.040
Wash/waste container set for Liquid Autosampler CIC (TEI)Wash/waste container set for the Liquid Autosampler CIC (TEI).
6.07313.050
Prime Vial Set for Liquid Autosampler CIC (TEI)Set of Prime Vials for the preparation of the Liquid Autosampler CIC (TEI).
6.07313.100
Syringe 100 µl manual injection (TEI)Dosing syringe for manual injection of liquid samples using one of the three Introduction Modules (6.07311.010, 6.07311.020, or 6.07311.030).
6.07313.110
Replacement needle for CIC (TEI)Replacement needle (TEI) for dosing syringe for Liquid Autosampler CIC (2.0136.0610) or manual liquid sample injection.
6.07314.010
Needle for GLS Sampler CIC (TEI), pk=3Replacement needle for sample injection with the GLS Sampler CIC (TEI).
6.07314.020
Needle coupling for GLS Sampler CIC (TEI)Coupling to connect the injection needle with the sample flow path of the GLS Sampler CIC (TEI).
6.07314.030
Quick connect, Swagelok, for GLS Sampler CIC (TEI)Quick connect for sample cartridge for connection to the GLS Sampler CIC (TEI).
6.07314.040
Hood for GLS Sampler CIC (TEI)Acrylic glass cover for the GLS Sampler CIC (TEI) which can be connected to a fume cupboard.
6.07401.010
Holder OMNIS NIR, cuvette, 1 mmCuvette holder for the OMNIS NIR Analyzer for 1 mm quartz cuvettes (6.7401.200).
6.07401.020
Holder OMNIS NIR, cuvette, 2 mmCuvette holder for the OMNIS NIR Analyzer for 2 mm quartz cuvettes (6.7401.210).
6.07401.030
Holder OMNIS NIR, cuvette, 5 mmCuvette holder for the OMNIS NIR Analyzer for 5 mm quartz cuvettes (6.7401.220).
6.07401.040
Holder OMNIS NIR, cuvette, 10 mmCuvette holder for the OMNIS NIR Analyzer for 10 mm quartz cuvettes (6.7401.230).
6.07401.050
Holder OMNIS NIR, vial, 2 mmVial Holder for the OMNIS NIR Analyzer for 2 mm disposable vials (6.7402.070).
6.07401.060
Holder OMNIS NIR, vial, 4 mmVial Holder for the OMNIS NIR Analyzer for 4 mm disposable vials (6.7402.250).
6.07401.070
Holder OMNIS NIR, vial, 8 mmVial Holder for the OMNIS NIR Analyzer for 8 mm disposable vials (6.7402.240).
6.07401.080
Holder OMNIS NIR, vial, 10 mmVial Holder for the OMNIS NIR Analyzer for 10 mm disposable vials (6.7402.100).
6.07401.100
Holder OMNIS NIR, flow-through cellsCuvette holder for the OMNIS NIR Analyzer for flow-through cells(6.7401.300; 6.7401.310; 6.7401.320; 6.7401.330; 6.7401.340).
6.07401.110
Flow-through connector set, 1/8"Connection set for flow-through cells with an OMNIS Sample Robot.Contains flangeless sleeve 1/8", 10 pcs., Flangeless fitting with nut, 1/8", 10 pcs. and FEP tubings 1/8" x 1.59 mm, 4 pcs.
6.07401.320
Flow-through cell, 2 mmFlow quartz cuvettes with an optical path length of 2.0 mm suitable for near-infrared spectroscopy (NIRS) analyses.Compatible with:Holder OMNIS NIR, flow-through cell (6.070401.100);
6.07401.330
Flow-through cell, 2.5 and 5 mmFlow quartz cuvettes with quartz glass window and two optical path lengths (2.5 mm or 5.0 mm) suitable for near-infrared spectroscopy (NIRS) analyses.Compatible with:Holder OMNIS NIR, flow-through cell (6.070401.100)
6.07401.340
Flow-through cell, 5 and 10 mmFlow quartz cuvettes with quartz glass window and two optical path lengths (5.0 mm or 10.0 mm) suitable for near-infrared spectroscopy (NIRS) analyses.Compatible with:Holder OMNIS NIR, flow-through cell (6.070401.100);
6.07402.100
Large holder OMNIS NIR, 100 mmLarge holder for large sample vessel OMNIS NIR, 100 mm (6.07402.110).Permits unambiguous positioning of the sample vessel and the rotation of the sample vessel.
6.07402.110
Large cup OMNIS NIR, 100 mmLarge sample vessel for the spectra acquisition of powders and granulates in reflection at various sample positions.Compatible with:Large holder OMNIS NIR, 100 mm (6.07402.100);
6.07402.120
Large lid OMNIS NIR, black, 100 mmLarge lid (black) for large sample vessel OMNIS NIR, 100 mm (6.07402.110) for the reduction of stray light and slight compression of the sample.
6.07402.140
Petri dishes, PS, 100 mm, qty. 100Disposable petri dishes of polystyrene with a diameter of 100 mm.Compatible with:Large holder OMNIS NIR, 100 mm (6.07402.100).;
6.07402.150
Petri dish, Duroplan, 100 mm, qty. 1Petri dish of Duroplan glass with a diameter of 100 mm.Compatible with:Large holder OMNIS NIR, 100 mm (6.07402.100).;
6.07402.200
Small holder OMNIS NIR, 60 mmSmall holder for small sample vessel OMNIS NIR, 60 mm (6.07402.210).Permits unambiguous positioning of the sample vessel and the rotation of the sample vessel.
6.07402.210
Small cup OMNIS NIR, 60 mmSmall sample vessel for the spectra acquisition of powders and granulates in reflection at various sample positions.Compatible with:Small holder OMNIS NIR, 60 mm (6.07402.200);
6.07402.220
Small lid OMNIS NIR, black, 60 mmSmall lid (black) for small sample vessel OMNIS NIR, 60 mm (6.07402.210) for the reduction of stray light and slight compression of the sample.
6.07402.240
Petri dishes, PS, 60 mm, qty. 100Disposable petri dishes of polystyrene with a diameter of 60 mm.Compatible with:Small holder OMNIS NIR, 60 mm (6.07402.200).;
6.07402.250
Petri dish, Duroplan, 60 mm, qty. 1Petri dish of Duroplan glass with a diameter of 60 mm.Compatible with:Small holder OMNIS NIR, 60 mm (6.07402.200).;
6.07402.260
Transflection vessel OMNIS NIR, 60 mmOptically flat transflection vessel for the spectral measurement of liquids.
6.07402.300
Flexible holder OMNIS NIRFlexible holder with a variable diameter of up to 30 mm for the examination of samples in vials in reflection.
6.07402.910
Small reflector OMNIS NIR, 1 mmReflector with a gap size of 1 mm (optical path length of 2 mm) for the transflection measurement of liquids.Suitable for disposable 28 mm reflection vials (6.7402.140).
6.07402.920
Small reflector OMNIS NIR, 2 mmReflector with a gap size of 2 mm (optical path length of 4 mm) for the transflection measurement of liquids. Suitable for disposable 28 mm reflection vials (6.7402.140).
6.07402.930
Small reflector OMNIS NIR, 4 mmReflector with a gap size of 4 mm (optical path length of 8 mm) for the transflection measurement of liquids.Suitable for disposable 28 mm reflection vials (6.7402.140).
6.07402.940
Large reflector OMNIS NIR, 1 mmReflector with a gap size of 1 mm (optical path length of 2 mm) for the transflection measurement of liquids.Suitable for transflection vessels (6.07402.260 and 6.7401.000).
6.07402.950
Large reflector OMNIS NIR, 2 mmReflector with a gap size of 2 mm (optical path length of 4 mm) for the transflection measurement of liquids.Suitable for transflection vessels (6.07402.260 and 6.7401.000).
6.07402.960
Large reflector OMNIS NIR, 4 mmReflector with a gap size of 4 mm (optical path length of 8 mm) for the transflection measurement of liquids.Suitable for transflection vessels (6.07402.260 and 6.7401.000).
6.07402.970
Small reflector OMNIS NIR, 0.5 mmReflector with a gap size of 0.5 mm (optical path length of 1 mm) for the transflection measurement of liquids.Suitable for disposable vials 28 mm reflection (6.7402.140).
6.07410.000
OMNIS NIR LampSpare lamp for 2060 The NIR Analyzer and OMNIS NIR Analyzer with built-in hour counter.
6.07410.010
Dust protection cover OMNIS NIRDust protection cover for the OMNIS NIR Analyzer. Protects the Analyzer against dust and dirt for prolonged periods when not in use.
6.07410.020
Gripper fingers 8–28 mmGripper fingers for OMNIS Sample Robot – NIR for gripping vials with an outer diameter of 8–28 mm.
6.07410.030
External standards OMNIS NIR, reflectionSet of 5 reflection standards and 1 wavelength standard for checking the wavelength accuracy, the photometric linearity, and the noise characteristics of the OMNIS NIR Analyzer in reflection mode.
6.07410.040
External standards OMNIS NIR, transmissionSet of 5 transmission standards and 1 wavelength standard for checking the wavelength accuracy, the photometric linearity, and the noise characteristics of the OMNIS NIR Analyzer in transmission mode.
6.07501.010
ASTM Calibration Standard50:50 (v:v) Toluene/Acetonitrile ASTM standard for calibration of the wavenumber axis of MIRA/MISA systems. Class 3B operation.
6.07502.000
Vial HolderVial holder attachment for MIRA systems. Accommodates 15 x 26 mm glass vials.
Tablet Holder
Tablet holder attachment for MIRA systems that is used for analysis of formulated tablets of various sizes and shapes.
6.07505.000
LWD Attachment LensLong distance point-and-shoot Adapter (LWD) for MIRA systems with a focal length of 7.6 mm. Class 3B operation.
6.07505.010
SWD Attachment LensShort distance point-and-shoot Adapter (SWD) for MIRA systems with a focal length of 1.00 mm. Class 3B operation.
6.07505.020
XLWD Attachment LensExtra-long distance point-and-shoot Adapter (XLWD) for MIRA systems with a focal length of 18 mm. Class 3B operation.
6.07505.030
P-SERS AttachmentAccommodates Metrohm's proprietary P-SERS strips. Operation with laser class 1. The P-SERS attachment allows full insertion of P-SERS strips ensuring optimal measurement conditions.
6.07505.040
MISA Vial AttachmentSuitable for 15 x 26 mm glass vials. MISA vial attachment can be used for measurements with Metrohm's gold or silver SERS nanoparticles. Laser Class 1 operation.
6.07506.000
Right-Angle AttachmentThe right-angle attachment is designed to allow the user to collect data by placing the substance on a surface and then laying the MIRA down next to it with the right angle tip covering the substance. Ideal for a baggy on hood of a squad car. Eliminates many of the variables during testing. Class 3B operation.
6.07506.010
Universal attachmentThe Universal attachment is designed to be a universal tip for use in three different positions. Position 3 is used for direct contact. Position 2 is used for thin plastic bags, for which the focal point is approximately 1.0 mm from the end of the adapter. Position 1 is used for focusing through bottles, for which the focal point is approximately 8 mm from the end of the metal tip. Class 3B operation.
6.07506.020
Standoff AttachmentThe Standoff Attachment is designed to allow the user to determine the spectrum of a substance from a distance of 0.25 to 1.5 meters. Perfect for determination of the contents of a 55-gallon drum or barrel or to stand in a doorway and scan a container from across the room.
6.07506.030
Contact Ball Probe AttachmentThe Contact Ball Probe Attachment is designed to allow the user to collect data from a sample with no concern of proper focus. Simply contact the sample or immerse the probe to acquire the data. The stainless steel construction allows for easy cleaning. Class 3B operation.
6.07506.040
SERS AttachmentThe SERS attachment enables the user to perform a very easy measurement of the SERS spectrum of a substance that has been applied to a P-SERS test strip. After applying a sample to the P-SERS test strip, the user simply inserts it into the slot of the SERS attachment for analysis.
6.07506.050
Protective Sheath for Contact Ball ProbeThe disposable protective sheath is made of extremely thin LDPE and is used to prevent cross-contamination when using the ball probe in several containers. Quantity: 250 pieces.
6.07506.060
Intelligent Universal Attachment (iUA)iUA is an intelligent 3-position collection optics accessory for MIRA systems. The iUA combines the flexibility of a universal attachment with the intelligent mode of operation of MIRA SmartTip Attachments. Each position indicates the ideal purpose of that position, i.e. surface, bag, or bottle.
6.07506.070
Autofocus Stand-off Attachment (AFSO)Maximize safety with standoff identification of chemicals, explosives, drugs, and toxic materials.Identify threats from 2 meters away; Operate remotely when risk is high; Get quick and easy information with automated routines; Identify >20,000 substances in seconds; Robot mountable for complete hot-zone assessment ;
6.07506.100
Silver P-SERS Substrate (Ag), 50 piecesSilver P-SERS substrates (Printed SERS substrates). The substrates are designed to fit directly into the SERS attachment for optimal signal collection. Potential target analytes that show favorable performance with silver P-SERS substrates include illicit drugs, medicines, dyes and amines. Available in packs of 50.
6.07506.110
Silver P-SERS Substrate (Ag), 500 piecesSilver P-SERS substrates (Printed SERS substrates). The substrates are designed to fit directly into the SERS attachment for optimal signal collection. Potential target analytes that show favorable performance with silver P-SERS substrates include illicit drugs, medicines, dyes and amines. Available in packs of 500.
6.07506.120
Silver P-SERS Substrate (Ag), 5000 piecesSilver P-SERS substrates (Printed SERS substrates). The substrates are designed to fit directly into the SERS attachment for optimal signal collection. Potential target analytes that show favorable performance with silver P-SERS substrates include illicit drugs, medicines, dyes and amines. Available in packs of 5000.
6.07506.130
Gold P-SERS Substrate (Au), 50 piecesGold P-SERS substrates (Printed SERS substrates). The substrates are designed to fit directly into the SERS attachment for optimal signal collection. Potential target analytes that show favorable performance with gold P-SERS substrates include pesticides, medicines, and thiols. Available in packs of 50.
6.07506.140
Gold P-SERS Substrate (Au), 500 piecesGold P-SERS substrates (Printed SERS substrates). The substrates are designed to fit directly into the SERS attachment for optimal signal collection. Potential target analytes that show favorable performance with gold P-SERS substrates include pesticides, medicines, and thiols. Available in packs of 500.
6.07506.150
Gold P-SERS Substrate (Au), 5000 piecesGold P-SERS substrates (Printed SERS substrates). The substrates are designed to fit directly into the SERS attachment for optimal signal collection. Potential target analytes that are easier to detect with gold P-SERS substrates include pesticides, medicines, and thiols. Available in packs of 5000.
607506160
Silver P-SERS Substrate (Ag), 25 piecesSilver P-SERS substrates (Printed SERS substrates). The substrates are designed to fit directly into the SERS attachment for optimal signal collection. Potential target analytes that show favorable performance with silver P-SERS substrates include illicit drugs, medicines, dyes and amines. Available in packs of 25.
607506170
Gold P-SERS Substrate (Au), 25 piecesGold P-SERS substrates (Printed SERS substrates). The substrates are designed to fit directly into the SERS attachment for optimal signal collection. Potential target analytes that show favorable performance with gold P-SERS substrates include pesticides, medicines, and thiols. Available in packs of 25.
607506300
Silver Colloid, 10 mLSERS active silver colloidal solution. Potential target analytes that show favorable performance with silver colloid include illicit drugs, medicines, dyes, and amines - 10 ml package.
607506310
Silver Colloid, 50 mLSERS active silver colloidal solution. Potential target analytes that show favorable performance with silver colloid include illicit drugs, medicines, dyes, and amines - 50 ml package.
607506340
Silver Colloid, 500 mLSERS active silver colloidal solution. Potential target analytes that show favorable performance with silver colloid include illicit drugs, medicines, dyes, and amines - 500 ml package.
607506350
Gold Colloid, 10 mLSERS active gold colloidal solution. Potential target analytes that show favorable performance with gold colloid include pesticides, medicines, and thiols - 10 mL package.
607506360
Gold Colloid, 50 mLSERS active gold colloidal solution. Potential target analytes that show favorable performance with gold colloid include pesticides, medicines, and thiols - 50 mL package.
607506390
Gold Colloid, 500 mLSERS active gold colloidal solution. Potential target analytes that show favorable performance with gold colloid include pesticides, medicines, and thiols - 500 mL package.
ID Kit, Illicit Materials
The ID Kit - Illicit Materials contains all the components a MIRA / MISA user requires to analyze a crude street sample and determine whether opioid and other illicit drugs are present.The kit contains a disposable spatula, dropper, a small vial of solvent, and 2 silver P-SERS strips (Ag). The user simply scoops a small amount of the unknown sample into the vial of solvent and then either dip the P-SERS strip into the vial OR use the provided dropper to apply sample onto the strip.The ID Kit allows the detection and identification of trace amounts of opioid, even in highly fluorescent street samples.
6.07506.440
ID Kit – Au NPThe ID Kit - Au NP contains the components a Mira / Misa user requires to perform a SERS analysis using gold colloidal solution. The kit contains a disposable spatula, dropper, sample vials and a bottle of gold colloid.
607506450
ID Kit - Ag NPThe ID Kit - Ag NP contains the components a Mira / Misa user requires to perform a SERS analysis using silver colloidal solution. The kit contains a disposable spatula, dropper, sample vials, and a bottle of silver colloid.
607506460
ID Kit – Au P-SERSThe ID Kit - Au P-SERS contains the components a Mira / Misa user requires to perform a SERS analysis using gold P-SERS strips. The kit contains a disposable spatula, dropper, sample vials and 2 gold P-SERS strips.
6.07506.470
ID Kit – Ag P-SERSThe ID Kit - Ag P-SERS contains the components a Mira / Misa user requires to perform a SERS analysis using silver P-SERS strips. The kit contains a disposable spatula, dropper, sample vials and 2 silver P-SERS strips.
607506480
SERS Discovery KitIntroductory kit for SERS analysis containing gold and silver P-SERS strips and gold and silver colloids.
6.07507.000
Mira Sampling Blackout ClothOptical Blackout cloth for sampling in sunlight conditions.
6.07507.100
MIRA DS Field Carry PouchThe MIRA DS Field Carry Pouch is a utility pouch with padded sides for carrying the MIRA into the field. It has space for MIRA, four AA batteries, the right-angle attachment, iUA, calibration standard, and a few ID Kits.The Field Carry Pouch can be attached to any of the current military pouch/backpack systems.
607507300
TacticID-1064 ST Basic Smart Attachment PouchPouch for TacticID-1064 ST Basic package attachments.
607507310
TacticID-1064 ST Advanced Smart Attachment PouchPouch for TacticID-1064 ST Advanced package attachments.
607509000
Smart Attachment, See-ThroughTacticID-1064 ST sampling attachment providing larger spot size and sampling depth for see-through capability and preventing sample burning of colored samples.
607509010
Smart Attachment, GeneralSmart sampling attachment with a working distance of 6 mm.
607509020
Smart Attachment, SWDShort Working Distance (SWD) Smart Attachment with a working distance of 1 mm.
607509030
Smart Attachment, Vial HolderSmart sampling attachment for vials. Accommodates 15 mm x 45 mm glass vials.
607509040
Smart Attachment, LWDLong Working Distance (LWD) Smart Attachment with a working distance of 8 mm.
607509050
Smart Attachment, Right AngleTacticID-1064 ST right-angle adapter for hands-free measurements.
607509060
Smart Attachment, Immersion ProbeSmart immersion probe for direct contact sampling with a working distance of approximately 5 mm.Length: 8 inchesOperating Pressure: up to 2 bar at room temperature
607509070
TacticID-1064 ST Polystyrene AttachmentSmart sampling attachment for calibration and validation on the Metrohm TacticID-1064 ST.
607510000
12V 6.6A power supply for i-Raman NxGPower supply for i-Raman NxG and i-Raman Duo systems.
607510010
Interlock Plug for i-Raman NxGInterlock plug for i-Raman NxG and i-Raman Duo systems.
607510030
USB-C to USB-C cable for i-Raman NxGUSB-C to USB-C cable for i-Raman NxG and i-Raman Duo systems.
607510040
Polystyrene Validation CapValidation cap with integrated polystyrene standard for lab-grade Raman probes with shaft diameter of 9.5 mm.
607510050
Laser key for i-Raman NxGLaser keys for i-Raman NxG and i-Raman Duo systems.
607510060
AC Power Cord for i-Raman SeriesAC power cord for i-Raman NxG and i-Raman Duo systems.
607510070
Laser Safety Goggles, 532 nm wavelengthLaser Safety Goggles, 532 nm Wavelength.
607510080
High Throughput Lab-grade Raman Probe (532 nm)High-throughput lab-grade fiber optic Raman probe assembly with trigger button. 1.5 meter fiber length.Compatible with i-Raman NxG 532.
607510090
High Throughput Lab-grade Raman Probe (532 nm), 5mHigh-throughput lab-grade fiber optic Raman probe assembly with trigger button. 5 meter fiber length.Compatible with i-Raman NxG 532.
607510120
Standard Shaft for Lab-Grade Probe (532 nm)Replacement shaft for 532 nm excitation lab-grade Raman probe assembly. Working distance 5.4 mm.
607510130
Laser Safety Goggles, 785 nm wavelengthLaser Safety Goggles, 785 nm Wavelength.
607510140
High Throughput Lab-grade Raman Probe (785 nm)High-throughput lab-grade fiber optic Raman probe assembly with trigger button. 1.5 meter fiber length.Compatible with i-Raman NxG 785S and 785H models.
607510150
High Throughput Lab-grade Raman Probe (785 nm), 5mHigh-throughput lab-grade fiber optic Raman probe assembly with trigger button. 5 meter fiber length.Compatible with i-Raman NxG 785S and 785H models.
607510180
See-Through Raman probe (785 nm)See-through probe for measurements through packaging. 1.5 meter fiber length. Includes focus adapter, surface regulator, and light shield. Compatible with i-Raman NxG 785S and 785H models.
607510190
See-Through Raman probe (785 nm), 5 mSee-through probe for measurements through packaging. 5-meter fiber length. Includes focus adapter, surface regulator, and light shield.Compatible with i-Raman NxG 785S and 785H models.
607510220
Standard Shaft for Lab-Grade Probe (785 nm)Replacement shaft for 785 nm excitation lab-grade Raman probe assembly. Working distance 5.5 mm.
607510230
See-Through Shaft (785 nm)See-through shaft for use with lab-grade Raman probes. Optimized for 785 nm laser.Contains focus adapter, surface regulator, and light shield.
607510240
Hastelloy Immersion Shaft for Lab-grade Raman ProbeC-276 Hastelloy immersion shaft compatible with lab-grade Raman probes. Includes adjustable shaft adapter. Compatible with 532, 785, 860 and 1064 nm wavelengths.
607510250
Laser Safety Goggles, 1064 nm wavelengthLaser Safety Goggles, 1064 nm Wavelength.
607510260
High Throughput Lab-grade Raman Probe (1064 nm)High-throughput lab-grade fiber optic Raman probe assembly with trigger button. 1.5 meter fiber length.Compatible with i-Raman NxG 1064.
607510270
High Throughput Lab-grade Raman Probe (1064 nm), 5 mHigh-throughput lab-grade fiber optic Raman probe assembly with trigger button. 5 meter fiber length.Compatible with i-Raman NxG 1064.
607510300
See-Through Raman probe (1064 nm)See-through probe for measurements through packaging. 1.5 meter fiber length. Includes focus adapter, surface regulator, and light shield.Compatible with i-Raman NxG 1064.
607510310
See-Through Raman Probe (1064 nm), 5 mSee-through probe for measurements through packaging. 5-meter fiber length. Includes focus adapter, surface regulator, and light shield.Compatible with i-Raman NxG 1064.
607510340
Standard Shaft for Lab-Grade Probe (1064 nm)Replacement shaft for 1064 nm excitation lab-grade Raman probe assembly. Working distance 5.9 mm.
607510350
See-Through Shaft (1064 nm)See-through shaft for use with lab-grade Raman probes. Optimized for 1064 nm laser.Contains focus adapter, surface regulator, and light shield.
607510360
High Throughput Lab-grade Raman Probe for i-Raman DuoHigh-throughput lab-grade fiber optic Raman probe assembly with trigger button. 1.5 meter fiber length. Compatible with i-Raman Duo.
6.07510.370
High Throughput Lab-grade Raman Probe for i-Raman Duo, 1.5 mHigh-throughput lab-grade fiber optic Raman probe assembly with trigger button. 1.5 meter fiber length. Compatible with i-Raman Duo.
607510400
Universal Raman Probe HolderProbe holder for use with Metrohm's lab-grade Raman probes, including lab-grade shafts, industrial-grade immersion shafts, and see-through shafts. Provides manual coarse and fine XYZ adjustments.
607510410
Vial Holder AccessoryVial holder accessory for use with lab-grade Raman probes with shaft diameter of 9.5 mm. Compatible with 15 mm-diameter vial. 6-pack of 15 mm borosilicate glass vials included.
607510420
Cuvette Holder AccessoryCuvette holder for use with lab-grade Raman probes with shaft diameter of 9.5 mm. Compatible with standard cuvettes of 12.5 mm x 12.5 mm outer diameter (1 cm path length) for sampling liquids or powders.
607510430
Distance Regulator CapDistance regulator cap for standard lab-grade Raman probe shaft.
607510450
Lab-Grade Raman Probe (785 nm)Lab-grade fiber optic Raman probe assembly with trigger button. 1.5 meter fiber length. Compatible with i-Raman Plus 785S and 785HR models.
607510460
Lab-Grade Raman Probe (785 nm), 5 mLab-grade fiber optic Raman probe assembly with trigger button. 5 meter fiber length. Compatible with i-Raman Plus 785S and 785HR models.
607510490
Lab-Grade Raman Probe (532 nm)Lab-grade fiber optic Raman probe assembly with trigger button. 1.5 meter fiber length. Compatible with i-Raman Plus 532.
607510500
Lab-Grade Raman Probe (532 nm), 5 mLab-grade fiber optic Raman probe assembly with trigger button. 5 meter fiber length. Compatible with i-Raman Plus 532.
607510850
International Plug Adaptor607511010
Stainless Steel Immersion Shaft for Lab-grade Raman Probe316 Stainless steel immersion shaft compatible with lab-grade Raman probes. Includes adjustable shaft adapter. Compatible with 532, 785, 860 and 1064 nm wavelengths.
607511270
Laser Enclosure for i-Raman NxGEnclosure for i-Raman sampling accessories, including microsampling system and probe holder. The enclosure eliminates direct ocular and/or skin exposure to the laser emission, making the otherwise class 3B i-Raman series laser as safe as a class 1 laser. The enclosure is ergonomically designed to facilitate sample loading and system operation. Compatible with i-Raman NxG, i-Raman Duo, and i-Raman Plus products.
607511300
Carrying case for i-Raman NxG and i-Raman PlusCarrying case for i-Raman NxG and i-Raman Plus. The case fits one i-Raman NxG or i-Raman Plus system, a fiber-optic probe, USB and power cables, laser goggles, and laser interlock and keys.System and accessories are not included. Case dimensions are 22 in x 17.1 in x 10.75 in.
607511600
Polystyrene Cap for See-Through ProbeValidation cap for see-through probe with built-in ASTM standard polystyrene.
6.1204.090
Stirrer tipStirrer tip for VA stands
6.1204.200
Stirrer for VA StandStirrer for VA Stand, complete, metal-free
6.1204.500
Stirrer for Professional VA instrumentsStirrer for Professional VA instruments, complete, metal-free.
6.1236.020
Sleeve with SGJ 14/12 mmSleeve with SGJ 14/12 mm and O-ring.
6.1236.030
Sleeve with SGJ 14/12 mmSleeve with SGJ 14/12 mm.
6.1236.040
Sleeve with SGJ 14/12 mmFor electrodes without standard ground joint.
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- 8.101.80028.101.8002Installation instructions for tiamo 2.X
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- 8.101.80058.101.8005Manual for TitrIC 2.0
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- 8.102.80718.102.8071Declaration of conformity for Metrohm IC Driver 2.0 for Empower
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OMNIS NIR Analyzer Liquid, OMNIS NIR Analyzer Solid, OMNIS NIR Analyzer Liquid/Solid
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Manual for 'OMNIS Sample Robot S – NIR' and 'OMNIS Sample Robot M – NIR'
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- 8.110.80318.110.8031Manual for IC equipment: MiPCT (6.5330.140)
English
Inne języki
- 8.110.80328.110.8032Manual for IC equipment: Dose-in Gradient (6.5330.150)
English
Inne języki
- 8.110.80338.110.8033Manual for IC equipment: MiPCT-ME (6.5330.160)
English
Inne języki
- 8.110.80348.110.8034Manual for IC equipment: MiPuT (6.5330.170)
English
Inne języki
- 8.110.80358.110.8035Manual for IC equipment: MiPT (6.5330.180)
English
Inne języki
- 8.110.80368.110.8036Manual for IC equipment: Dosino Regeneration (6.5330.190)
English
Inne języki
- 8.110.80388.110.8038Manual for IC equipment: Additional eluent on the Eluent Production Module (6.5330.090)
English
Inne języki
- 8.110.80398.110.8039Manual for IC equipment Inline Ultrafiltration - MiPT
English
Inne języki
- 8.110.82138.110.8213Manual for Autodatabase 1.0 software, English
English
- 8.110.82238.110.8223Instructions for Use for 6.6034.013 Software ICNet 2.1, english
English
- 8.110.82638.110.8263Instructions for Use for 6.6034.023 Software ICNet 2.2, english
English
- 8.110.83538.110.8353Instructions for Use for 6.6012.X50 Software TiNet 2.5 Compliant, english
English
- 8.663.10038.663.1003Instructions for Use 663 VA Stand
Versión 1
English
Inne języki
- 8.665.10238.665.1023Instructions for Use 665 Dosimat, English
English
- 8.670.10238.670.1023Instructions for Use 670 Titroprocessor, english
English
- 8.676.10038.676.1003Instructions for Use 676 Sample Changer, english
English
- 8.679.10138.679.1013Instructions for Use 679 Rancimat, english
English
- 8.679.10238.679.1023Quick References 679 Rancimat, english
English
- 8.681.10038.681.1003Instructions for Use 681 Pump Unit, english
English
- 8.682.10038.682.1003Instructions for Use 682 Titroprocessor, english
English
- 8.683.10038.683.1003Instructions for Use 683 Pump Unit, english
English
- 8.684.10138.684.1013Instructions for Use 684 KF Coulometer, english
English
- 8.685.10038.685.1003Instructions for Use 685 Dosimat, English
English
- 8.686.10138.686.1013Instructions for Use 686 Titroprocessor, english
English
- 8.690.10338.690.1033Instructions for Use 690 Ion Chromatograph, english
English
- 8.691.10038.691.1003Instructions for Use 691 pH Meter, english
English
- 8.692.10038.692.1003Instructions for Use 692 pH/Ion Meter, english
English
- 8.692.10238.692.1023Supplement to Instructions for Use 692 pH/Ion Meter, english
English
- 8.693.10738.693.1073Tutorial "First aid for polarography and voltammetry", english
English
- 8.695.10038.695.1003Manual 695 Autosampler, English
English
- 8.695.10278.695.1027Supplement to Instructions for Use 695 Autosampler, german/english
English
Inne języki
- 8.698.10138.698.1013Instructions for Use 698 Autosampler, english
English
- 8.700.10238.700.1023Instructions for Use 700 Dosino, English
English
- 8.701.10038.701.1003Instructions for Use 701 KF Titrino, english
English
- 8.702.00038.702.0003Application book 702 SET/MET Titrino, english
English
- 8.702.10338.702.1033Instructions for Use 702 SET/MET Titrino, english
English
- 8.703.10038.703.1003Instructions for Use 703 Ti Stand, english
English
- 8.704.10038.704.1003Instructions for Use 704 pH Meter, english
English
- 8.705.10038.705.1003Instructions for Use 705 UV Digester, english
English
- 8.707.10138.707.1013Instructions for Use 707 KF Oven, English
English
- 8.708.10038.708.1003Instructions for Use 708 Sampling Unit, english
English
- 8.709.10338.709.1033Instructions for Use 709 IC Pump, english
English
- 8.711.10138.711.1013Remote Control Reference 711 Liquino, English
English
- 8.711.10238.711.1023Instructions for use 711 Liquino, English
English
- 8.712.10038.712.1003Instructions for Use 712 Conductometer, english
English
- 8.712.10238.712.1023Quick References 712 Conductometer, english
English
- 8.713.10038.713.1003Instructions for Use 713 pH Meter, english
English
- 8.714.80538.714.8053Short Instructions for Use 6.6027.153 Software «IC Metrodata for Windows», german
English
- 8.715.10238.715.1023Instructions for Use 715 Dosimat, english
English
- 8.716.10138.716.1013Instructions for Use 716 DMS Titrino, english
English
- 8.716.11138.716.1113Supplement to Instructions for Use 716 DMS Titrino, english
English
- 8.717.10038.717.1003Instructions for Use 717 Sample Changer, english
English
- 8.718.10038.718.1003Instructions for Use 718 STAT Titrino, english
English
- 8.719.11038.719.1103Instructions for Use 719 S Titrino, english
English
- 8.719.11138.719.1113Quick References 719 S Titrino, english
English
- 8.720.10038.720.1003Instructions for Use 720 KFS Titrino, english
English
- 8.721.10038.721.1003Instructions for Use 721 NET Titrino, english
English
- 8.722.10038.722.1003Instructions for Use 722 Rod Stirrer, english
English
- 8.725.10138.725.1013Instructions for Use 725 Dosimat, English
English
- 8.726.10238.726.1023Short introduction to 726 Titroprocessor, english
English
- 8.726.11038.726.1103Instructions for Use 726 Titroprocessor, english
English
- 8.726.80078.726.8007Instructions for Use for 6.6026.000 Software «726 TP Backup», german/english
English
- 8.727.10038.727.1003Instructions for Use 727 Ti Stand, english
English
- 8.728.80018.728.8001Manual for 728 Magnetic Stirrer
English
Inne języki
- 8.729.10068.729.1006Instructions for Use 729 Dosimat Interface, German/French/English
English
Inne języki
- 8.730.11038.730.1103Instructions for Use 730 Sample Changer, English
English
- 8.730.11138.730.1113Quick References 730 Sample Changer, English
English
- 8.731.10038.731.1003Instructions for Use 731 Relay Box, english
English
- 8.732.10338.732.1033Instructions for Use 732 IC Detector/733 IC Separation Center, english
English
- 8.732.10438.732.1043Quick References 732 IC Detector/733 IC Separation Center, english
English
- 8.736.00038.736.0003Application book 736 GP Titrino, english
English
- 8.736.10038.736.1003Instructions for Use 736 GP Titrino, english
English
- 8.736.10138.736.1013Quick References 736 GP Titrino, english
English
- 8.737.10038.737.1003Instructions for Use 737 KF Coulometer, english
English
- 8.743.80028.743.8002Installation 743 Rancimat software 1.1
English
Inne języki
- 8.743.80038.743.8003Manual 743 Rancimat
English
Inne języki
- 8.743.80278.743.8027Supplement to 743 Rancimat PC Software 1.0, german/english
English
Inne języki
- 8.744.10038.744.1003Instructions for Use 744 pH Meter, English
English
- 8.746.10538.746.1053Instructions for Use 746 VA Trace Analyzer, english
English
- 8.746.80038.746.8003Instructions for Use for VA Database 2.0 Software, english
English
- 8.748.10038.748.1003Instructions for Use 748 DH Sample Changer, english
English
- 8.750.10238.750.1023Instructions for Use 750 Autosampler, english
English
- 8.751.11038.751.1103Instructions for Use 751 GPD Titrino, english
English
- 8.751.11138.751.1113Quick References 751 GPD Titrino, english
English
- 8.751.20038.751.2003Applikation book 751 GPD Titrino, english
English
- 8.752.10138.752.1013Manual for 752 Pump Unit, English
English
- 8.753.10038.753.1003Instructions for Use 753 Suppressor Module, english
English
- 8.754.10038.754.1003Instructions for Use 754 Dialysis Unit, english
English
- 8.757.10138.757.1013Instructions for Use 757 VA Computrace Hardware, English
English
- 8.757.80238.757.8023Instructions for Use 757 VA Computrace Software 2.0, english
English
- 8.758.12038.758.1203Instructions for Use 758 KFD Titrino, english
English
- 8.758.12138.758.1213Quick References 758 KFD Titrino, english
English
- 8.758.12238.758.1223Short Instructions for Use 758 KFD Titrino, english
English
- 8.759.10038.759.1003Installation instructions 759 Swing Head, english
English
- 8.760.10138.760.1013Instructions for Use 760 Sample Changer, english
English
- 8.761.10438.761.1043Instructions for Use 761 SD Compact IC, english
English
- 8.761.10638.761.1063Instructions for Use 761 Compact IC, english
English
- 8.761.80278.761.8027Supplement to CD Metrodata 761 PC Software 1.1, german/english
English
Inne języki
- 8.762.10038.762.1003Instructions for Use 762 IC Interface, english
English
- 8.763.10038.763.1003Instructions for Use 763 PVC Thermomat, english
English
- 8.763.80028.763.8002Installation 763 PVC Thermomat software 1.1
English
Inne języki
- 8.765.10238.765.1023Instructions for Use 765 Dosimat, English
English