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Support & service (2)MATi 14
Fully automatic measurement of waters with low conductivity in accordance with USP 645Automated system for the determination of conductivity in sterile waters in accordance with USP 645. Up to 28 samples can be placed on the rack and processed within one series. The sample is transferred from the sample beaker into the external titration cell and analyzed completely automatically in accordance with the 3-stage USP Standard procedure. The system is controlled by the OMNIS software.The thermostat for controlling the temperature of the external titration vessel must be ordered separately.
2.1010.1120
OMNIS Sample Robot S – WSM (1T/2P)OMNIS Sample Robot S – WSM, equipped with an OMNIS Workstation Module with 2 pumps for cleaning and extraction of the sensors and sample vessels, a workstation, rod stirrers, and extensive accessories for getting started directly with fully automated titration. The system provides space in two sample racks for 32 sample beakers of 120 mL each. This modular system is supplied completely installed and can thus be put into operation in a very short time. The system can also be extended upon request to include 2 additional peristaltic pumps and another workstation, thus doubling the throughput. If additional workstations are required, then the Sample Robot S can be extended to become an L-sized OMNIS Sample Robot, thus enabling samples from 7 racks to be processed in parallel on up to 4 workstations to quadruple the sample throughput.
2.1014.0010
Pick&Place moduleModule for installation in the module plate of the Pick&Place of the OMNIS Sample Robot. This workstation takes up the sample beaker for the analysis. Used sensors are cleaned or parked in the storage beaker of the Pick&Place module between analyses. If stirring is required during the analysis, then a separate rod stirrer must be used for this workstation.
2.772.0030
Pump Unit 772 "Rinse"Peristaltic pump for rinsing sample beakers and electrodes. The "Rinse" version contains extensive accessories for rinsing. The pump can be actuated through a Relay Box 731. It is suitable for the conveyance of solvents.
2.1024.0030
OMNIS Workstation Module (2T/4P)Module for installation in the OMNIS Sample Robot WSM. This module contains 2 workstations for the automatic processing of sample vessels and 4 pumps for the automatic cleaning of sample vessels and sensors (rinsing and extraction) at both workstations. The workstations take up the sample beaker for the analysis. Used sensors can be cleaned or parked in the storage beakers of the workstations between analyses. If stirring is required during the analysis, then a separate rod stirrer or a magnetic stirrer can be installed for each workstation.
2.1014.0110
Pick&Place module with stirrerModule for installation in the module plate of the Pick&Place of the OMNIS Sample Robot. This workstation takes up the sample beaker for the analysis. The built-in magnetic stirrer makes it possible to analyze samples that were prepared externally on a magnetic agitator directly in the Sample Robot without having to remove the magnetic stirring bar beforehand. Used sensors are cleaned or parked in the storage beaker of the Pick&Place module between analyses.
MATi 06
Automatic titration of acids and bases for up to 12 samplesFully automatic system for potentiometric titration of acids and bases in series of up to 12 samples. The titration is carried out directly in the beaker on the rack. Afterwards, the electrode is cleaned automatically using the membrane pumps built into the sample changer and the titration beaker is emptied. The control of this system is handled by the user-friendlyOMNIS software.
2.1030.1020
OMNIS Sample Robot Oven 2 x 6 mLOMNIS Sample Robot Oven with 2 oven modules 6 mL and extensive accessories for the direct transition to fully automated thermal sample preparation with subsequent water determination in accordance with Karl Fischer. The system provides space in 2 sample racks for 100 sample beakers of 6 mL each. This modular system is supplied completely installed and can thus be put into operation in a very short time.
2.1024.0010
OMNIS Workstation Module (1T/0P)Module for installation in the OMNIS Sample Robot WSM. This module contains a workstation for the automatic processing of sample vessels without pumps. The workstation takes up the sample beaker for the analysis. Used sensors can be cleaned or parked in the storage beaker of the workstation between analyses. If stirring is required during the analysis, then a separate rod stirrer or a magnetic stirrer can be attached for this workstation.
2.1012.1010
OMNIS Sample Robot L Pick&PlaceOMNIS Sample Robot L with a "Peristaltic" (4-channel) pump module and a Pick&Place module in addition to extensive accessories for the direct transition to fully automatic titration. The system provides space in seven sample racks for 112 sample beakers of 120 mL each.The system can be extended upon request to include up to four peristaltic pumps and three additional Pick&Place modules, thus quadrupling the throughput while at the same time also guaranteeing long and interruption-free operation.
2.1024.0020
OMNIS Workstation Module (1T/2P)Module for installation in the OMNIS Sample Robot WSM. This module contains a workstation for the automatic processing of sample vessels and two pumps for the automatic cleaning (rinsing and extraction) of sample vessels and sensors. The workstation takes up the sample beaker for the analysis. Used sensors can be cleaned or parked in the storage beaker of the workstation between analyses. If stirring is required during the analysis, then a separate rod stirrer or a magnetic stirrer can be installed for this workstation.
2.1030.1010
OMNIS Sample Robot Oven 1 x 6 mLOMNIS Sample Robot Oven with 1 oven module 6 mL and extensive accessories for the direct transition to fully automated thermal sample preparation with subsequent water determination in accordance with Karl Fischer. The system provides space in 2 sample racks for 100 sample beakers of 6 mL each. This modular system is supplied completely installed and can thus be put into operation in a very short time. The system can also be extended upon request to include an additional oven module, thus doubling the throughput.
2.1030.1030
OMNIS Sample Robot Oven 1 x 8 mLOMNIS Sample Robot Oven with 1 oven module 8 mL and extensive accessories for the direct transition to fully automated thermal sample preparation with subsequent water determination in accordance with Karl Fischer. The system provides space in 2 sample racks for 100 sample beakers of 8 mL each. This modular system is supplied completely installed and can thus be put into operation in a very short time. The system can also be extended upon request to include an additional oven module, thus doubling the throughput.
2.898.0110
898 XYZ Sample Changer 82 x 120 mLThe 898 XYZ Sample Changer convinces with its speed and the number of samples that can be processed without supervision. Two sample racks with 41 x 120 mL beakers each can be fitted on the Sample Changer and processed continuously there. As soon as the processing of the first sample rack has been completed, it can be replaced with a rack with new samples. The sensors used are always in top condition, thanks to the built-in washing station with membrane pump. The control takes place via computer operation using the tiamo™ titration software.
2.898.0210
898 XYZ Sample Changer 48 x 250 mLThe 898 XYZ Sample Changer convinces with its speed and the number of samples that can be processed without supervision. Two sample racks with 24 x 250 mL beakers each can be fitted on the Sample Changer and processed continuously there. As soon as the processing of the first sample rack has been completed, it can be replaced with a rack with new samples. The sensors used are always in top condition, thanks to the built-in washing station with membrane pump. The control takes place via computer operation using the tiamo™ titration software.
2.855.3010
Robotic Analyzer Basic with OMNIS SoftwareThe Robotic Analyzer Basic package contains all the components for a fully automated titration or measurement in the smallest possible space in a minimum of time.In addition to the Robotic Titrosampler Basic with a rack for 59 samples in 120 mL PP beakers, the package also includes a rod stirrer, a peristaltic pump and a Dosino with 20 mL dosing unit and the OMNIS control software.Only electrode cables, sensors and additional dosing devices as needed must be added, so that it will be available for flexible use as Acid-Base, TAN/TBN, Chloride or Fluoride Analyzer.
MATi 10
Automated volumetric KF titrationsFully automated system for volumetric Karl Fischer water content determination in up to 24 samples. The system is controlled with OMNIS software and consists of an 814 USB Sample Processor, a 901 Titrando and extensive accessories.The samples are weighed out into the beakers, sealed to protect against humidity and placed on the rack. Before the actual titration, they are dissolved in a defined volume of KF working medium, after which the water content is titrated.This method is particularly suitable for samples that dissolve readily in the KF working medium. In addition, solubility can be improved by using suitable solubility promoters.
2.1011.1010
OMNIS Sample Robot M Pick&PlaceOMNIS Sample Robot M with a "Peristaltic" (4-channel) pump module and a Pick&Place module in addition to extensive accessories for the direct transition to fully automatic titration. The system provides space in five sample racks for 80 sample beakers of 120 mL each.The system can be extended upon request to include up to four peristaltic pumps and three additional Pick&Place modules, thus quadrupling the throughput. If even more samples are to be placed on the Sample Robot, then this Sample Robot can be expanded to become an L-sized OMNIS Sample Robot, thus enabling 112 samples to be processed in parallel on up to four Pick&Place modules and thus guaranteeing long and interruption-free operation.
2.855.1030
Robotic Analyzer Light with OMNIS SoftwareThe Robotic Analyzer Light package contains all the components for a fully automated titration or measurement in the smallest possible space in a minimum of time.In addition to the Robotic Titrosampler Basic with a rack for 22 samples in 120 mL PP beakers, the package also includes a rod stirrer, a peristaltic pump and a Dosino with 20 mL dosing unit and the OMNIS control software.Only electrode cables, sensors and additional dosing devices as needed must be added, so that it will be available for flexible use as Acid-Base, TAN/TBN, Chloride or Fluoride Analyzer.Should the number of samples increase, then the option also exists of expanding the system to the Robotic Analyzer Basic.
MATi-11
Automated volumetric KF titration including sample preparationFully automated system for volumetric Karl Fischer water content determination in up to 53 samples. This system is controlled with OMNIS software and consists of an 815 Robotic USB Sample Processor XL, a 901 Titrando, a Polytron PT 1300 D and extensive accessories.The samples are weighed out into beakers, sealed to protect against humidity and placed on the rack. Before the actual titration, a defined volume of KF reagent is added and the sample is pulverized with the help of a Polytron. The water that is released is titrated afterwards. Even samples of poor solubility, e.g., tablets, can be analyzed without difficulty with this method. The use of solubility promoters can be avoided in this way.
2.864.1130
864 Robotic Balance Sample Processor TAN/TBNThe Robotic Balance Sample Processor TAN/TBN offers the rapid and convenient preparation and analysis of petrochemical products in a single system.An aliquot of the sample is fully automatically weighed into the titration beaker and diluted with solvent, after which titration is used to determine the TAN and/or TBN value. After analysis, the titration beaker is emptied and the electrode is cleaned and conditioned. Traceability is ensured by the direct preparation on the Balance Sample Processor and the danger of mixing up externally prepared samples is eliminated.The entire system is monitored with the proven titration and control software tiamo™, the database of which documents each preparation step (including sample size) and the titration results, clearly and separately for each sample.
2.1010.1010
OMNIS Sample Robot S Pick&PlaceOMNIS Sample Robot S with a "Peristaltic" (2-channel) pump module and a Pick&Place module in addition to extensive accessories for the direct transition to fully automatic titration. The system provides space in two sample racks for 32 sample beakers of 120 mL each. This modular system is supplied completely installed and can thus be put into operation in a very short time.The system can also be extended upon request to include two additional peristaltic pumps and another Pick&Place module, thus doubling the throughput. If additional workstations are required, then this Sample Robot is already able to be expanded to become an L-sized OMNIS Sample Robot, thus enabling samples from seven racks to be processed in parallel on up to four Pick&Place modules and quadrupling the sample throughput.
2.1016.0010
Peristaltic (2-channel) pump moduleModule for installation in the module plate of the Pick&Place of the OMNIS Sample Robot. This workstation is equipped with both a rinsing pump and an aspiration pump. They are used to clean the sensors in a Pick&Place module and to empty the sample beaker after the analysis before it is returned to the rack once again.
2.1016.0110
Peristaltic (4-channel) pump moduleModule for installation in the module plate of the Pick&Place of the OMNIS Sample Robot. This workstation is equipped with two rinsing pumps and two aspiration pumps each. They are used to clean the sensors in two Pick&Place modules and to empty the sample beaker after the analysis before it is placed back in the rack once again.
2.843.0030
843 Pump Station (membrane) - rinse/aspirate for Compact Sample ChangerThe 843 Pump Station (membrane) has two built-in membrane pumps. These can be controlled directly from the 869 Compact Sample Changer via remote signals. The Rinse / Aspirate version is provided with all the accessories needed for automatically emptying the titration beaker and rinsing the titration equipment. The accessories is defined for usage with the 869 Compact Sample Changer.
2.843.0050
843 Pump Station (membrane) - rinse/aspirate for Sample ProcessorsThe 843 Pump Station (membrane) has two built-in membrane pumps. These can be controlled directly from the Sample Processor via pump commands. The Rinse / Aspirate version is provided with all the accessories needed for automatically emptying the titration beaker and rinsing the titration equipment. The accessories are intended for use with the 814 and 815 Sample Processors.
2.843.0130
843 Pump Station (peristaltic) - rinse/aspirate for Compact Sample ChangerThe 843 Pump Station (peristaltic) has two built-in peristaltic pumps. These can be controlled directly from the 869 Compact Sample Changer via remote signals. The Rinse / Aspirate version is provided with all the accessories needed for automatically emptying the titration beaker and rinsing the titration equipment. The accessories are defined for usage with the 869 Compact Sample Changer.
2.843.0150
843 Pump Station (peristaltic) - rinse/aspirate for Sample ProcessorsThe 843 Pump Station (peristaltic) has two built-in peristaltic pumps. These can be controlled directly from the Sample Processors via pump commands. The rinse/aspirate version is provided with all the accessories needed for automatically emptying the titration beaker and rinsing the titration equipment. The accessories are intended for use with the 814 and 815 Sample Processors.
MATi 07
Automated titration system for up to 28 samplesFully automated system for the performance of potentiometric titrations such as acid/base, Redox and classic halogenide titration in series of up to 28 samples. The system is controlled with the OMNIS software. At the end of the determination, the electrode and buret tips are cleaned automatically using the Pump Station and the beaker is emptied.The electrode must be selected separately, depending on the application.
MATi 08
Automated pipetting and titration system for up to 100 samplesAutomated system for the performance of potentiometric titrations on acids and bases. Up to 100 samples can be placed on the sample rack. The sample is pipetted out of the beaker into the external titration vessel, after which a completely automatic determination is carried out. The volume to be pipetted can vary between 0.5 and 9.0 mL. After the titration, the external vessel is cleaned thoroughly using the membrane pumps built into the Sample Processor. The control of this completely automatic analysis system takes place using the proven OMNIS software.
MATi 13
Fully automated determination of the permanganate index in accordance with DIN EN ISO 8467Automated system for the determination of the permanganate index in accordance with DIN EN ISO 8467. Up to 24 samples can be placed on the rack and processed within one series. The sample is pipetted from the sample beaker into the external titration cell and analyzed completely automatically in accordance with the requirements of the DIN standard. After the titration, the external cell is cleaned thoroughly using the membrane pumps built into the sample changer. The system is controlled by the OMNIS software.The thermostat for heating the external titration vessel must be ordered separately.
- AB-417AB-417Automated volumetric Karl Fischer titration using MATi 11
MATi 11 (MATi = Metrohm Automated Titration) is a completely configured system for water content determination in solid or liquid samples using automated volumetric Karl Fischer titration. It contains a Polytron PT 1300 D for the homogenization of the samples. Up to 53 samples are analyzed directly in 120 mL titration beakers. The samples are weighed in the titration beaker and sealed with aluminum foil and a foil holder so that they neither lose nor absorb water.
- AN-T-134AN-T-134Chloride in salted butter – Automated standard method reduces saves time and helps increase throughput
The salt content in food is a critical parameter, given that the WHO recommends a maximum daily intake of 5 g for an adult. In butter with a salt content exceeding 0.1%, it can be determined by a precipitation titration of chloride with silver nitrate. However, during manual titration the operator cannot leave the system unattended because he has to exchange the sample beakers manually which is time consuming and prone to errors.This Application Note describes the automated determination of chloride in salted butter in accordance with ISO 15648, ISO 21422, IDF 179 and IDF 242. If automated according to the norms and standards, salt determination can be performed completely unattended with superior reproducibility of results increasing efficiency in the laboratory.
- AN-T-228Determination of aluminum and zirconium in antiperspirants
This Application Note presents a complementary method that allows a consecutive determination after the sample preparation (digestion) of both metal ions in one beaker with an optical sensor and xylenol orange as an indicator.
- AN-T-074Conductivity, pH value, alkalinity, and hardness in tap water
In this application note, a fully automated system is presented which allows the determination of several parameters according to various standards within one analysis. These include conductivity (ISO 7888, EN 27888, ASTM D1125, EPA 120.1), the pH value (EN ISO 10523, ASTM D1293, EPA 150.1), alkalinity (EN ISO 9963, ASTM D1067, EPA 310.1), and Ca/Mg content (ISO 6059, ASTM D1126, EPA 130.2). Additionally, the system transfers the required sample volume into an external titration vessel for the analysis, reducing manual sample preparation. Furthermore, all sensors can be automatically calibrated and the titer of each titrant can also be determined.
- AN-T-075Conductivity, pH value, alkalinity, and chloride in tap water
In this application note, a fully automated system is presented which allows the determination of several parameters according to various standards within one analysis. These include conductivity (ISO 7888, EN 27888, ASTM D1125, EPA 120.1), pH value (EN ISO 10523, ASTM D1293, EPA 150.1), alkalinity (EN ISO 9963, ASTM D1067, EPA 310.1), and chloride content (ISO 9297, ASTM D512, EPA 325.3). Additionally the system transfers the required volume of sample into an external titration vessel, further reducing manual sample preparation. Furthermore, all sensors can be calibrated automatically and the titer of each titrant can also be determined.
- AN-T-076Conductivity, pH value, alkalinity, hardness, and chloride in tap water
In this application note, a fully automated system is presented which allows the determination of several parameters according to various standards within one analysis. These include conductivity (ISO 7888, EN 27888, ASTM D1125, EPA 120.1), pH value (EN ISO 10523, ASTM D1293, EPA 150.1), alkalinity (EN ISO 9963, ASTM D1067, EPA 310.1), Ca/Mg (ISO 6059, ASTM D1126, EPA 130.2), and chloride (ISO 9297, ASTM D512, EPA 325.3). Additionally the system transfers the required volume of sample into external titration vessels for the different analyses, reducing manual sample preparation. Furthermore, all sensors can be automatically calibrated and the titer of each titrant can also be determined.
- AN-T-203Acidity in volatile solvents and chemical intermediates
The presence of acidic components in volatile solvents could be a result of contamination, decomposition during storage, distribution or manufacture. An increased acid content in solvents could lead to a variety of problems like shorter storage stability or chemical corrosion. Using the Optrode for indication, the acidity is determined by photometric titration with sodium hydroxide as titrant and phenolphthalein as indicator. If the volatile solvent is water soluble, it is dissolved in deionized water, if not, it is dissolved in carbon-dioxide free ethanol.
- AN-T-178Hydroxyl number in polyethylene glycol
The hydroxyl number is an important sum parameter for quantifying the presence of hydroxyl groups in a chemical substance. As a key quality parameter, it is regularly determined in various polymers like resins, paints, polyesterols, fats and solvents. Unlinke other standards, ASTM E1899 works pyridine-free and without refluxing at elevated temperatures for a longer time. It is performed at room temperature, requires only a small sample size, is applicable to extremely low hydroxyl numbers (<1 mg KOH/g sample) and can be performed fully automatically. This Application Note describes the potentiometric determination of the hydroxyl number in 1-octanol and polyethylene glycol according to ASTM E1899, EN 15168 and DIN 53240-3. Using the OMNIS DIS-Cover technique all sample preparation steps can be fully automated. Moreover, the use of an OMNIS Sample Robot allows parallel analysis of multiple samples. The average time per analysis for one sample is thus reduced from approximately 24 min to 12 min., increasing productivity in the laboratory considerably.
- AN-I-031Dissolved oxygen in acrylic dispersion paint
Acrylic dispersion paints are made of pigment suspended in acrylic polymer emulsions, which also include other organic material such as plasticizers, defoamers, or stabilizers. Acrylic dispersion paints are water-soluble but become resistant to water when dry. Due to the fact that once dry, acrylic dispersion paints can no longer be used, they should be stored air-tight at room temperature. For research purposes, it is of interest to assess the dissolved oxygen (DO) concentration in such samples as it is assumed that the DO amount can be related to the storage life. This Application Note describes a fast and accurate determination of dissolved oxygen by using an optical sensor.
- AN-T-090Determination of zinc sulfate
This Application Note describes the photometric determination of zinc sulfate using the Optrode at a wavelength of 610 nm. Complexometric titration of zinc requires EDTA as titrant and Eriochrome Black T as indicator. The method fully complies with Ph. Eur. and USP.
- AN-T-226Determination of functional groups in graphite and graphene oxide
Boehm titration is a quantitative analysis of functional groups on the surface of carbon materials based on their reactions with basic solutions of NaHCO3 (pKa = 6.4), Na2CO3 (pKa = 10.3), and NaOH (pKa = 15.7). This is a cost-efficient method that gives absolute values with high precision of the accessible, mainly oxygen-containing functional groups on the surface. Originally, Boehm titration was developed for carbon materials like conductive carbon black (CCB), activated carbon, porous carbon, and graphite. Modern carbon-based materials like graphene, graphene oxide (GO), or carbon nanotubes can also be analyzed this way.
- AN-T-215Assay of lithium hydroxide and lithium carbonate
Lithium salts (e.g., lithium carbonate and lithium hydroxide) are used in myriad applications. Lithium hydroxide is used for the production of lithium stearate, an important engine lubricant. In addition, it is utilized as an air purifier due to its ability to bind carbon dioxide. While the majority of lithium carbonate is used for aluminum production, it is also used for the glass and ceramic industry. It lowers the melting point of these materials, lowering the associated electricity costs and making it cheaper to produce them.For all of these applications, it is important to know the quality of the pure lithium salts used in the various production processes. This Application Note presents an easy method for the assay of lithium hydroxide and lithium carbonate on an automated OMNIS system.
- AN-T-218Analysis of Li-ion battery cathode materials made from Co, Ni, and Mn
The lithium-ion battery market is continuously growing due to the tremendous demand for battery powered consumer products. So-called «NCMs», a mixture of nickel, cobalt, and manganese oxides, have been gathering interest as cathode materials, replacing traditional compounds like cobalt oxides.Quality analysis of the post-sintered materials or recycled batteries can be performed by titration, as demonstrated in this Application Note. A fully automated analysis of the corresponding metals can be performed with OMNIS and its pipetting equipment.
- AN-T-220Sodium chloride content in dough and bread
If consumed in excess, sodium may damage the cardiovascular system. It is therefore in the interest of food manufacturers to reduce the salt content and while preserving the flavor of the food.To ensure consistent quality, it is critical to know the exact salt content in the raw materials and the final products. This is only possible by performing precise measurements during the production process.This Application Note explains the determination of sodium chloride in dough and bread quickly according to AOAC 971.27 with the Eco Titrator equipped with an Ag Titrode.
- AN-K-068Water content determination and acid-base titration in parallel
The water content determination by volumetric Karl Fischer titration is one of the most important analyses worldwide. Using an OMNIS system consisting of an OMNIS Titrator and an OMNIS Sample Robot, the fully automatic analysis of water content is possible in various products and matrices. The OMNIS Sample Robot is capable of running several different titrations in parallel. In this Application Note, we present the results of a volumetric Karl Fischer titration run in parallel to an aqueous acid-base titration on the same system. The water content is not influenced by the parallel running aqueous titration, allowing the combination of potentiometric titrations and Karl Fischer titrations on the same automated system.
- AN-RS-053Estimation of amine value in epoxies with Raman spectroscopy
Compared to potentiometric titration, Raman spectroscopy is a rapid, accurate, and reliable secondary method for estimating the amine value (AV) of epoxy hardeners.
- AN-T-223Analysis of electroplating baths
Electroplating processes are used in several different industry sectors to protect the surface quality of various products against corrosion or abrasion and significantly improve their working life. It is essential to check the bath composition on a regular basis to ensure that the process is operating correctly. Typical examples of electroplating baths include alkaline degreasing baths or acidic or alkaline baths containing metals e.g. copper, nickel, or chromium, or components like chloride and cyanide. It is crucial that the chosen analysis technique fulfills high safety standards for these kinds of analyses and produces reliable results. The OMNIS Sample Robot system automatically pipettes and analyzes aggressive electroplating bath samples on different workstations, increasing the safety in the lab. This provides more reliable results in comparison to manual titration and is more time efficient as different parameters can be analyzed in parallel.
- AN-RS-022Trace Detection of Carbendazim on Strawberries
Carbendazim (MBC) is a common fungicide approved for regulated use in agriculture globally, outside of the EU. Most MBC is found on fruits as surface contamination, the result of sprays applied prior to harvest. The US EPA has determined that a concentrations below 80 μg/mL in orange juice are not a health risk, while the EU restricts MBC levels to 10 ng/g (from imported produce) in foods intended for baby food production.This Application Note describes a very simple test for surface MBC and provides library spectra demonstrating the sensitive detection of MBC with Misa (Metrohm Instant SERS Analyzer).
- AN-T-109Iodine value in canola and olive oil
This Application Note presents a modified time-saving method to determine iodine value (IV) in edible oils based on several standards (EN ISO 3961, ASTM D5554, etc.).
- AN-T-224Aluminum content in coagulants and flocculants for wastewater treatment
Coagulation and flocculation are an essential part of treating both drinking water and wastewater. Aluminum salts such as aluminum sulfate and polyaluminum chloride (PAC) are often used for this purpose. For the precise application and exact dosage of the flocculant, it is important to accurately determine its aluminum content. In this Application Note, the aluminum content is accurately and reliably analyzed based on ABNT NBR 11176 using the 859 Titrotherm equipped with a Thermoprobe HF and sodium fluoride as titrant.
- AN-T-216Assay of lithium nitrate
Lithium nitrate is an oxidizing agent used in the manufacture of red-colored fireworks and flares. In addition, the lithium nitrate trihydrate compound absorbs heat well and can be used for thermal energy storage. Since lithium nitrate is a hygroscopic substance, its purity must first be verified before it is used for synthesis or other applications. The purity assay is done by a fully automated precipitation titration between lithium and fluoride in an ethanolic solution. The benefit of titration is that the lithium nitrate does not need to be diluted after dissolving in ethanol as with other techniques such as ICP-MS.
- AN-T-231Determination of caffeine by direct titration
Direct titration is a simple and precise way to accurately measure the caffeine content in different nonaqueous products. The OMNIS Titrator equipped with a dSolvotrode reliably determines caffeine through flexible analyses combined with high-end software.
- AN-T-086Vitamin C in orange juice
Vitamin C, also known as ascorbic acid or L-ascorbic acid, is an essential nutrient involved in the repair of tissues and the enzymatic production of certain neurotransmitters. It is required for the functioning of several enzymes and immune performance, and is also an important antioxidant. This nutrient is found in many foods and is often used as a dietary supplement.This Application Note describes the photometric determination of ascorbic acid according to the standard ISO 6557-2. To increase the objectivity on the determined equivalence point and the reproducibility of the results, an autotitrator equipped with a photometric sensor, the Optrode, is used. The titrant 2,6-Dichlorophenol-indophenol (DCIP or DPIP) simultaneously serves as titrant and indicator.
- AN-T-154Determination of alpha acids in hops according to EBC 7.4
The alpha acid level (AA%) in hops plays a major role in the bitterness they can impart to beer. The AA% can vary between 1% up to 20% in hops. During boiling in the brewing process, alpha acids transform into iso-alpha acids which make the beer bitter. For this reason, it is important for brewers to know the exact AA value of the hops they use. The determination of AA% in hops with conductometric titration according to the EBC method 7.4 is shown in this Application Note.
- AN-T-232Determination of caffeine by iodometric back titration
The iodometric back titration is a precise method used to accurately measure the caffeine content in various aqueous samples. Reliable determinations are made easy using the OMNIS Titrator equipped with a dPt Titrode.
- AN-I-033Determination of ammonia in cacao
This Application Note offers an easy way to determine the ammonia content in cacao nibs by using ion measurement, applying the standard addition technique in a reliable cost- and time-saving manner.
- AN-T-055Determination of Lauryl Sulfate
Due to its price and wide availability, the anionic surfactant sodium lauryl sulfate (SLS; SDS) can be found in many detergents as an emulsifier or as a fat solvent e.g., in cleaning or cosmetic products. To avoid causing severe dry skin and hair, and thus skin irritation, regulations in many countries have restricted the sodium lauryl sulfate concentration in ready-to-use products to a range between 0.05–2.5% SLS. To control the concentration of SLS in different products, a titration is carried out with TEGO® trant A100 and the Optrode. The evaluation is done automatically by means of a software, leading to reliable and reproducible results.
- AN-T-102Standardization of hydrochloric acid with TRIS
Titrants are normally bought ready to use. However, it is necessary to determine the accurate concentration of your titrant solution on a regular basis using a primary standard. To correct the mentioned variation, a so-called «titer factor» is applied. The titer can be easily and quickly assessed by using the Metrohm brand of autotitrators. Predefined calculation formulas implemented in Metrohm titrators or software, respectively, as well as the automatic storage of the titer factor, makes standardization a simple task.
- AN-T-136Epoxide equivalents in epoxy resin
The epoxy content of epoxy resins has a strong influence on the reactivity of the resins as well as on the properties of the coating obtained from the resin curing process. The epoxy content is thus an important quality control parameter for manufacturers as well as consumers. This analysis is based on the reaction of hydrogen bromide with the epoxy groups of the sample. Hydrogen bromide in turn is produced by the reaction of tetraethylammonium bromide (TEABr) with standardized perchloric acid. The standards EN ISO 3001 and ASTM D1652 describe the determination of the epoxy content expressed as epoxy equivalent weight (EEW) by titration. The use of a Titrando and Solvotrode easyClean instead of manual titration greatly increases the reproducibility and repeatability of the determination.
- AN-T-175Nicotine content in tobacco
Nicotine is a nitrogenous alkaloid that is hazardous to health and is characterized by a very high potential for addiction. The nicotine content in tobacco products must be determined and specified precisely. This Application Note exhibits an easy and straightforward method for nicotine determination in tobacco by non-aqueous titration.Results determined by GC and IC are given as a comparison. In comparison to chromatographic methods, titration is an «absolute method», meaning it is not necessary to calibrate the system prior to the analyses.
- AN-T-201pH value of engine coolants or antirust
Corrosion of metallic components is an inherent problem for engines, because metals naturally tend to oxidize in the presence of water and/or acids. Increased acid content is indicated by a low pH value, and could lead to a variety of problems like a shorter storage life (stability) or a reduced buffer capacity of the used engine coolant or antirust.In this Application Note, engine coolants or antirust samples are dissolved in water, and the pH measurement using the Profitrode is carried out according to ASTM D1287.
- AN-T-233Determination of pyrophosphates by titration
Titration is an accurate and precise method that can be used to determine the pyrophosphate content in aqueous products. The OMNIS Titrator equipped with a dUnitrode delivers reliable determinations.
- AN-T-235Determination of pH in carbon black
The pH value in carbon black, an essential additive in modern lithium-ion batteries, is accurately and reliably analyzed in this Application Note by using the 913 pH Meter equipped with a Unitrode easyClean according to ASTM D1512 as well as ISO 787-9 and GB/T 1717-1986.
- AN-T-243Sulfite determination in beet sugar
This study presents the automatic titration of low sulfite levels in beet crystal sugar using an OMNIS Titrator and a Pt Titrode as the potentiometric sensor.
- AN-T-167Isocyanate content of polyurethane raw materials
Polyurethane (PU) is a class of very important polymers due to its flexibility and insulating properties. It is used in various industries such as the automobile industry, in building construction, as well as in the production of synthetic fibers. PU is mostly produced via a chemical reaction between polyisocyanates and polyols.The isocyanate (NCO) content in the raw material is crucial to control its properties. This Application Note shows an easy and straightforward way to determine the NCO content in polyurethane raw materials using a fully automated titration system from Metrohm.
- AN-T-230Quantification of 1,2-diols by iodometric redox titration
Mannitol content determination is an important aspect of quality control in the pharmaceutical and food industries. Selective oxidative cleavage can be used to quantify the amount of 1,2-diol groups in the analyte. Determining the 1,2-diol content by iodometric titration can be fully automated for the most accurate results using an automated titrator and the dPt Titrode from Metrohm.
- AN-T-236Determination of hydrochloric acid with sodium hydroxide
Hydrochloric acid is a strong, inorganic mineral acid with great significance in the chemical industry. The potentiometric titration of hydrochloric acid with sodium hydroxide is one of the most important and also most frequent analyses performed in the laboratory. In this Application Note, an acid-base titration is presented where the concentration of HCl is determined with NaOH using a pH electrode with an integrated Pt1000 temperature senor for the most accurate results
- AN-I-032Dissolved oxygen, conductivity, and pH value in liquid dairy products
In the food industry, it is essential to determine and monitor certain quality parameters to guarantee consistency. This is especially important for liquid dairy products, which are subject to a strict cold chain. Both the dissolved oxygen (DO) and the pH value have proven to be reliable quality criteria. Oxygen shortens the shelf life and influences the product quality (e.g., nutritional value, color, and flavor). The DO content depends on the salinity in the sample, which is automatically calculated and corrected by the 914 pH/DO/Conductometer during the parallel conductivity measurement. Acidity is another important characteristic to measure that can be checked easily using the pH value. With the 914 pH/DO/Conductometer, all important quality criteria can be monitored with one device.
- AN-K-071Water content in flour, dough, and bread
Water content determination by volumetric Karl Fischer titration is one of the most important analyses worldwide, particularly when it comes to food quality. This parameter has a major influence on the growth of microorganisms, and thus indirectly affects the storability of the raw materials and final products. Consistent quality is only possible with precise measurements during the process. This measurement is performed with the Metrohm Eco KF Titrator for flour, dough, and baked goods.
- AN-T-173pHe value of denatured ethanol fuel
The pHe is a measure of acid strength in alcohol fuels and in ethanol. It can be used as predictor of the corrosion potential of an ethanol-based fuel. The determination of the pHe is preferred over the total acidity, because total acidity overestimates the contribution of weak acids (e.g., carbonic acid) and underestimates the contribution of strong acids (e.g., sulfuric acid). Furthermore, the acid strength is an important parameter to determine in order to reduce the risk of failing motors.This Application Note describes the determination of the pHe value using the 913 pH Meter and the EtOH Trode according to ASTM D6423, which covers denatured fuel ethanol and ethanol fuel blends.
- AN-T-202Reserve alkalinity of engine coolants
Corrosion of metallic components is an inherent problem for engines, because metals naturally tend to oxidize in the presence of water and/or low pH value. The reserve alkalinity of engine coolants and antirusts is a measure of the buffering ability to absorb acidity. The reserve alkalinity is frequently used for quality control during production and often listed in the specifications of the coolants. A fast and accurate determination is therefore important.This Application Note describes the straightforward determination of reserve alkalinity according to ASTM D1121. Using a fully automated system allows an accurate and reliable determination due to the reduction of human errors. Furthermore, the operator is free to carry out other tasks increasing the efficiency of the laboratory.
- AN-T-208Nicotine in e-liquids
The vaping and electronic cigarette industries have grown impressively in the past decade. The mixtures used in these products are usually called «e-liquid», «e-fluid», or «e-juice». To ensure the quality of these e-liquids, testing the most important quality parameters, such as nicotine content, is required. Nicotine in tobacco is usually determined by gas chromatography or liquid chromatography. Aqueous acid base titration is a much more affordable alternative for this determination. As e-liquids do not contain other components which might interfere with the titration, the aqueous acid base titration presented in this Application Note can be applied for nicotine determination. This method is an affordable and reliable way to determine the nicotine content in e-liquids and their nicotine starting material, ensuring the quality of these products.
- AN-T-237Determination of phosphoric acid with sodium hydroxide
Phosphoric acid is a triprotic inorganic acid used for many purposes: as a raw material for the production of phosphate fertilizers, detergents, as an electrolyte in phosphoric acid fuel cells, rust removers, and for the passivation of iron and zinc to protect against corrosion. This Application Note presents an acid-base titration where the concentration of phosphoric acid is determined over all three of its dissociable protons by titrating it with sodium hydroxide.
- AN-T-238Determination of the alkalinity (p-value and m-value) in water
Alkalinity defines the acid-binding capacity of natural water. A distinction is made between total alkalinity (m-value) and carbonate alkalinity (p-value). This Application Note presents the determination of pH and alkalinity in water with a titration method conforming to EPA 310.1, Standard Methods 2320 B (Titration Method), ASTM D1067, EN ISO 9963-1, and EN ISO 9963-2.
- AN-T-242Acidity in aviation turbine fuel according to ASTM D3242
This application presents the fully automated determination of acidity in jet fuel as per ASTM D3242 via photometric titration with an automatic titrator and the Optrode.
- AN-T-042Citric and oxalic acid in mixtures
Citric acid and oxalic acid are present in many products, such as foods or chemical solvents (e.g., decontamination solutions). Both acids are reducing agents and citric acid is additionally a powerful antioxidant. Due to their mutual impact (buffer effect), a content calculation is only possible with correction factors for each acid. A fast and accurate determination by potentiometric titration using the dEcotrode plus and sodium hydroxide as titrant can be realized in this Application Note.
- AN-T-239Nonaqueous titration of weak bases with perchloric acid
The amine value is an important parameter and quality indicator to determine in chemical processes and pharmaceuticals. This Application Note presents the nonaqueous perchloric acid titration of triethanolamine.
- AN-RS-008Identification of monomers with Raman spectroscopy
Raman spectroscopy can easily monitor polymerization by tracking monomer consumption and polymer formation, providing a valuable tool for polymer manufacturers.
- AN-T-245Photometric determination of ionic surfactants by two-phase titration
Accurate, reliable determination of ionic surfactants with the Epton two-phase titration method can be achieved using an OMNIS system as shown in this study.
- AN-T-247Photometric titration of acid value in biodiesel according to EN 14104
The acid value of fatty acid methyl esters (FAME) like biodiesel can be determined according to EN 14104 using photometric titration with OMNIS and the Optrode.
- AN-T-084Total, calcium, and magnesium hardness in water samples
ASTM D8192 describes the photometric titration of the total hardness, calcium hardness, and magnesium hardness in water with an optical sensor for objective endpoint indication, increasing precision and reliability. The method is suitable for both colored and colorless samples such as groundwater, surface water, wastewater, and drinking water. Using a fully automated OMNIS system equipped with an Optrode ensures that the sample preparation and analysis are repeatable.
- AN-T-204Permanganate index in water
The permanganate index (PMI) is a sum parameter that indicates the total load of oxidizable organic and inorganic matter in water. The substances concerned are mainly humic materials/acids that are primarily formed when dead organic material present in soil is further broken down and released into water sources. As it is an indicator of the water quality, testing of the PMI for drinking water is obligatory in many countries.For the determination, it is necessary to heat the stabilized water sample to 95 °C and higher for a stipulated time. Afterwards, the amount of permanganate that has remained after the reaction with the sample is determined titrimetrically. This sample preparation step requires considerable manual effort.In this Application Note, a fully automated procedure for the determination of the PMI according to GB/T 11892 is described, including all sample preparation steps. The gains in productivity because of a reduced manual workload are considerable.
- AN-T-219pH value and TTA in flour, dough, and bread
In order to consistently manufacture high quality baked goods, it is critical to measure the pH value and acidity content in the raw materials and during the production steps. These factors have a major influence on the taste and storage lifetime of the final product. Consistent product quality is only possible with precise measurements during the process.This Application Note describes the measurement of pH value and the total titratable acidity in flour, dough, and bread using the Eco Titrator from Metrohm.
- AN-I-034Investigation of nucleation processes with automated titrators
This Application Note covers the formation of calcium carbonate from solution.
- AN-T-246Standardization of cationic surfactants by argentometric titration
The standardization of the cationic surfactant TEGOtrant is performed using potentiometric titration as well as near-infrared spectroscopy (NIRS) in this application.
- AN-T-249Analysis of rare earth metals based on ISO 23597
Purity of rare earth elements (REEs) can be determined by absolute complexometric titration with xylenol orange (ISO 23597). This approach achieves around 100% recovery, eliminates the need for calibration, and offers higher accuracy and reproducibility than techniques such as AAS (atomic absorption spectroscopy). Photometric titration with the Optrode M2 offers adjustable wavelength detection, providing a fast, precise, and cost-effective alternative to other conventional methods.
- AN-T-250Potentiometric analysis of rare earth elements (REEs)
Rare earth elements (REEs) are critical materials whose deposit viability and processing streams require accurate mass-fraction determination during ore dissolution and purification. This Application Note describes a rapid potentiometric back-titration using a copper ion-selective electrode (Cu-ISE) that enables selective quantification and partial separation of REEs in complex matrices with near-quantitative recovery. As an absolute, flexible, and cost-effective method with ICP-compatible sample preparation, back-titration is well suited both as a reference technique and for rapid on-site analysis.
- AN-RS-054Monitoring phosphate reactions in real time with Raman spectroscopy
Raman spectroscopy is a fast alternative method to detect phosphate and sulfate species in solution for optimized phosphorus fertilizer production and improved product quality.
- AN-EC-042Studying zinc coatings with EQCM-D and EIS
Zinc coatings are widely applied for medical devices and to protect steel against corrosion. Electrodeposition, modulated by electrochemical parameters and tailored additives such as polyethylene glycol (PEG), enables control over coating morphology, with PEG shown to delay deposition and promote smoother surfaces. This Application Note demonstrates that EQCM-D, integrated with electrochemical methods, provides detailed insight into Zn deposition and additive effects, supporting process optimization for coating performance.
- 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.
- Apr 1, 2024Lab of the future: Automated robotic analysis of petroleum products
Completely automated analysis of the total acid number and total base number in petrochemical products is possible using a robotic titration system using OMNIS software.
- Jun 2, 2020Save money by using automated titration systems
Learn how you can save money by using automated titration systems.
- Jul 15, 2024How to avoid titration errors in your lab
This blog post explores common random and systematic errors in titration, offering guidance to identify and minimize these issues and enhance experimental accuracy.
- Jun 17, 2024How to calibrate a pH meter
Learn how to calibrate a pH meter and get answers to other frequent questions about pH calibrations.
- Jun 15, 2020Comprehensive water analysis: combining titration, IC, and direct measurement in one setup
Drinking water analysis using direct measurement, ion chromatography, titration, and voltammetry.
- May 11, 2026How to transfer manual titration to autotitration
There are many considerations when transferring from manual titration to autotitration. This blog article discusses how to choose a titrator and sensor, the titration setup, and even method optimization.
- Apr 16, 2020What to consider when standardizing titrant
Blog about why titrant standardization is important and how to determine the titer.
- May 2, 2022Ion-selective electrodes: Standard addition and direct measurement – Part 2
How to do standard addition and direct measurements with ion-selective electrodes.
- Apr 27, 2020Why consider automation – even for simple titrations
Blog about the advantages of automated titrations.
- Mar 30, 2020Tips and Tricks for IC Columns
Blog post on proper ion chromatography separation columns maintenance.
- Jul 12, 2021Nonaqueous acid-base titrations – Common mistakes and how to avoid them
Basics and tips and tricks for nonaqueous acid-base titrations.
- Mar 21, 2022Best practice for separation columns in ion chromatography (IC) – Part 3
Assessment of ion chromatography column performance and troubleshooting tips to fix issues with IC columns.
6.01412.000
Sample beakers, plastic, 5 piecesSample beakers, plastic (polypropylene, PP), 5 – 30 mL, graduated, suitable for 946 Portable VA Analyzer, 5 pieces
6.01404.020
Beaker adapter for 200 mL sample beakerBeaker adapter for centering the 200 mL sample beaker in the slide of the Pick&Place modules.
6.01404.050
Beaker adapter for 150 mL sample beakerBeaker adapter for centering the 150 mL sample beaker in the slide of the Pick&Place modules.
6.01400.000
Sample beakers, clear glass, 250 mL, 10 piecesSample beakers, clear glass, 250 mL, suitable for 602041010 OMNIS sample rack, 10 pieces.
6.01400.003
Sample beakers, amber glass, 250 mL, 10 piecesSample beakers, amber glass, 250 mL, suitable for 602041010 OMNIS sample rack, 10 pieces.
6.01400.300
Sample beakers, clear glass, 120 mL, 20 piecesSample beakers, clear glass, 120 mL, suitable for 602041030 OMNIS sample rack, 20 pieces.
6.01400.303
Sample beakers, amber glass, 120 mL, 20 piecesSample beakers, amber glass, 120 mL, suitable for 602041030 OMNIS sample rack, 20 pieces
6.01402.000
Sample beakers, clear glass, 75 mL, 30 piecesSample beakers, clear glass, 75 mL, suitable for 602041040 OMNIS sample rack, 30 pieces
6.01402.003
Sample beakers, amber glass, 75 mL, 30 piecesSample beakers, amber glass, 75 mL, suitable for 602041040 OMNIS sample rack, 30 pieces
6.01400.100
Sample beakers, plastic (PP), 250 mL, 10 piecesSample beakers, plastic (polypropylene, PP), 250 mL, suitable for 602041010 OMNIS sample rack, 10 pieces.
- 8.814.50018.814.5001Brochure: 814 USB Sample Processor
Precise and reproducible results; Simple automation for medium numbers of samples; Measuring and titration directly in the sample beaker; Reliable, robust and safe; Grows along with your requirements;
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- 8.0010.50278.0010.5027Installation instructions TitrIC flex I
The TitrIC flex I system is used for the fully automatic analysis of water samples using direct measurement, titration, and ion chromatography (IC). The following parameters are determined within a very short time: temperature, conductivity, pH, alkalinity, water hardness, and in parallel, the concentrations of individual anions. Additional Metrohm instruments can be incorporated in the existing system at any time and used to measure other parameters.Analytical sequenceThe sample is transferred from the first Pick&Place Module to the 930 Compact IC Flex for the anion analysis. At the same time, the conductivity is measured. Following this measurement, the exact sample volume is transferred into the sample beaker of the second Pick&Place. Afterwards the temperature, pH, acid capacity (p and m value), and the hardness of the sample are determined.The entire procedure is controlled by the MagIC Net software. The user only enters the sample position and sample identification into MagIC Net. All liquid handling steps as well as the titration part are done by OMNIS. MagIC Net triggers the individual sequences in OMNIS and receives the titration results via RS-232.All data is summarized in a joint database containing all results by MagIC Net as well as the numerical values from OMNIS.
English
- 8.0010.50288.0010.5028Installation instructions TitrIC flex II
The TitrIC flex II system is used for the fully automatic analysis of water samples using direct measurement, titration, and ion chromatography (IC). The following parameters are determined within a very short time: temperature, conductivity, pH, acid capacity, and in parallel, the concentrations of individual anions and cations with the resulting water hardness and ion balance. Other Metrohm instruments can be incorporated in the existing system at any time and used to measure additional parameters.Analytical sequenceThe sample is transferred from the first Pick&Place Module to two 930 Compact IC Flex instruments for the anion and cation analysis. The conductivity is measured at the same time. Following this measurement, the exact sample volume is transferred into the sample beaker of the second Pick&Place. Afterwards the temperature, pH, and acid capacity (p and m values) of the sample are determined.The entire procedure is controlled by the MagIC Net software. The user enters the sample position and sample identification only into MagIC Net. All liquid handling steps as well as the titration part are done by OMNIS. MagIC Net triggers the individual sequences in OMNIS and receives the titration results via RS-232.All data is summarized in a joint database containing all results by MagIC Net as well as the numerical values from OMNIS.
English