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The robust and reliable modular analyzer platform for ultimate flexibility in customized process monitoring.
2060 Raman Analyzer
Unleashing analytical precision for comprehensive process monitoring
PTRam Analyzer
Inline self-calibrating process development Raman.
2060 RISE
An inline Raman spectroscopy sensor to elevate your process analysis
Explosion-proof Process Analyzers
State-of-the-art protection for online process analysis.
A472060100C
PTRam Process AnalyzerThe PTRam Process 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 Process Analyzer is 19” rack-mountable. The PTRam Process Analyzer operates with Vision software and it can be connected with a 2060 Human Interface.
2.929.0010
DS2500 Liquid AnalyzerRobust near-infrared spectroscopy for quality control, not only in laboratories but also in production environments.The DS2500 Liquid Analyzer is the tried and tested, flexible solution for routine analysis of liquids along the entire production chain. Its robust design makes the DS2500 Liquid Analyzer resistant to dust, moisture and vibrations, which means that it is eminently suited for use in harsh production environments.The DS2500 Liquid Analyzer covers the full spectral range from 400 to 2500 nm, heats samples up to 80°C and is compatible with various disposable vials and quartz cuvettes. The DS2500 Liquid Analyzer is thus adaptable to your individual sample requirements and helps you obtain accurate and reproducible results in less than one minute. The integrated sample holder detection and the self-explanatory Vision Air Software also ensure simple and safe operation by the user.In the case of larger-sized sample quantities, productivity can be considerably increased by using a flow-through cell in combination with a Metrohm sample robot.
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
A472060110C
PTRam Extended Range Process AnalyzerThe PTRam Extended Range Process 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 Process Analyzer 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 Process Analyzer is 19” rack-mountable and operates with Vision software, with the option to connect to a 2060 Human Interface for streamlined operation.The PTRam Process Analyzer 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.
2.838.0310
838 Advanced VA Sample ProcessorTogether with the 797 VA Computrace, the 838 Advanced VA Sample Processor is a sample changer for the completely automatic determination of organic additives in electroplating baths using "Cyclic Voltammetric Stripping" (CVS). Series of brighteners or of suppressors can be analyzed one after the other without supervision. The sample rack supplied holds a maximum of 56 samples of a maximum of 11 mL or a maximum of 50 mL. The 838 Advanced VA Sample Processor is equipped with a flexible method editor for the purpose of adjusting the analysis sequence to the needs of the user. The separate keyboard enables access to the method editor and all other instrument settings. The 838 Advanced VA Sample Processor is remote-controlled by the 797 VA Computrace during the determination of a sample series.The instrument is supplied together with accessories, sample rack, keyboard and accessories for setting up a complete workplace, although it does not come with rinsing equipment.
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.
- WP-037WP-037Simplifying quality control using Near-Infrared Spectroscopy
Quality control is impacted by multiple challenges, which can have an influence on the functioning of the QC lab. The present White Paper provides approaches, how to simplify the daily quality control using near-infrared spectroscopy combined with a dedicated smart software like Vision Air.
- WP-018WP-018FDA 21 CFR Part 11 Requirements for NIR Spectroscopy
This Metrohm White Paper shows the requirements demanded of the pharmaceutical industry by the FDA with respect to software products. Implementation examples of the regulations formulated by the FDA in 21 CFR Part 11 are presented using Vision Air Pharma Software.Key words: electronic signatures, audit trails, user management, documentation
- WP-040WP-040Benefits of Client-Server Systems for Quality Control with Vis-NIR Spectroscopy
Analyzer systems monitoring product quality can offer substantial advantages when organized in a client-server network compared to the more traditional local installation. This white paper presents different client-server setups and their benefits. Security aspects that need to be considered are discussed based on the example of the client-server Vis-NIR (visible near-infrared) spectroscopy software Vision Air, widely used for quality control in the chemical, polymer, pharmaceutical, and petrochemical industry.
- AN-NIR-083Quality Control of HDPE, LDPE, and PP
Identification of individual polymers with FT-IR spectroscopy can be a challenge due to sample inhomogeneity especially when larger sample sizes need to be analyzed. This application note demonstrates that the DS2500 Solid Analyzer operating in the visible and near infrared spectral region (Vis-NIR) provides a reliable and fast solution for the identification of high-density polyethylene (HDPE), low-density polyethylene (LDPE), and polypropylene (PP). With no sample preparation or chemicals needed, Vis-NIR spectroscopy allows the identification of larger inhomogeneous sample amounts in less than a minute.
- AN-NIR-081Quality Control of Polyethylene
Determination of the density of polyethylene (PE) (ASTM D792) is normally a challenging procedure due to reproducibility difficulties. Measurement via FT-IR can be problematic when larger sample sizes must be analyzed due to sample inhomogeneity. This application note demonstrates that the DS2500 Solid Analyzer operating in the visible and near-infrared spectral region (Vis-NIR) provides a reliable and fast solution for determination of the density of PE. With no sample preparation or chemicals needed, Vis-NIR spectroscopy allows the analysis of larger, inhomogeneous sample sizes of PE in less than a minute.
- AN-NIR-089Quality Control of Laminates
In the semiconductor industry, thermoset resins combined with fabric or paper are used as an intermediate layer between substrates of printed circuit boards (PCB). These polymer-based sheets (laminates) are chosen depending on thickness and their thermomechanical and electrical characteristics. Near infrared spectroscopy (NIRS) is a fast, non-destructive and easy-to-use analytical method which allows the measurement of multiple key quality parameters in less than a minute. The following Application Note describes the determination of the transition time of PCB laminates by NIRS, a parameter correlating with the thickness, glass transition temperature, and tensile strength of the material.
- AN-NIR-092Quality Control of PVC foils
PVC (polyvinyl chloride) foils with a PVDC (polyvinylidene chloride) coating are often used for high performance packaging films like pharmaceutical blister packs or in food packaging. In multi-layer blister films, the PVC serves as the thermoformable backbone structure, whereas the PVDC coating acts as a barrier against moisture and oxygen. The Water Vapor Transmission Rate (WVTR) and Oxygen Transmission Rate (OTR) are influenced by the composition and the thickness of the coating. A fast way to monitor PVDC coating thickness is with near-infrared spectroscopy. Results are provided in a few seconds, indicating when adjustments in the polymer production process are necessary.
- AN-NIR-098Quality Control of PVC granulate
To monitor the quality of PVC (polyvinyl chloride), it is important to measure the molecular weight during the production process, as this parameter has a significant influence on chemical and mechanical stability as well as fire retardant properties. The standard method to determine PVC molecular weight, defined here as the average weight of the molecules that make up the polymer, is by size exclusion chromatography (SEC). This analytical method is time-intensive and requires trained personnel to perform. Determining the molecular weight of PVC is easier with near-infrared spectroscopy (NIRS). NIRS provides results in just a few seconds and can quickly indicate when adjustments to the production process are necessary.are necessary.
- AN-NIR-024Quality control of pyrolysis gasoline
Pyrolysis gasoline (Pygas) is a by-product of ethylene production, which contains unwanted conjugated diolefins making it unsuitable as a motor fuel. To overcome this limitation, the olefin content needs to be reduced below 2 mg/g pygas in a selective hydrogenation unit (SHU). The diene value, or maleic anhydride value (MAV), is usually determined by the lengthy Diels-Alder wet chemical method (UOP326-17), requiring highly trained analysts. In contrast to the primary method, near-infrared spectroscopy (NIRS) is a cost-efficient and fast analytic solution for the determination of diene value in pyrolysis gasoline.
- AN-NIR-064Quality control of ammonium nitrate
Specialty chemicals have to fulfill multiple quality requirements. One of these quality parameters, which can be found in almost all certificates of analysis and specifications, is the moisture content. The standard method for the determination of moisture content is Karl Fischer titration.This method requires reproducible sample preparation, chemicals, and waste disposal. Alternatively, near-infrared spectroscopy (NIR) can be used for the determination of moisture content. With this technique, samples can be analyzed without any preparation and without using any chemicals.
- AN-NIR-086Quality Control of Diesel Exhaust Fluid
The quality control of diesel exhaust fluids (DEF) is key to ensure the optimal catalytic performance and prevent damage to the exhaust system in diesel vehicles. The standard method to determine urea content is measuring the refractive index (ISO 22241-2:2019). The issue is that although this method is fast, it is not as accurate as other methods (e.g., HPLC). This application note demonstrates that the DS2500 Liquid Analyzer provides a fast solution with high accuracy for the determination of urea in DEF. With no sample preparation or chemicals needed, visible near infrared (Vis-NIR) spectroscopy allows for the analysis of diesel exhaust fluids in less than a minute.
- AN-NIR-088Quality Control of CBD oils
Cannabidiol (CBD) is a popular natural remedy from the cannabis plant used in many pharmaceutical, food, and cosmetic products. Unlike tetrahydrocannabinol (THC), CBD is not psychoactive, making it an appealing option for those who are looking for relief from pain and other symptoms without mind-altering effects. CBD oil is made by extracting the cannabinoid from the plant, then diluting it with a carrier oil (e.g., coconut or hemp seed oil). The standard HPLC method requires 45 minutes to perform by highly trained analysts. In contrast to the primary method, Vis-NIR spectroscopy is a cost-efficient and fast analytical solution for the determination of cannabinoid content in edible oils.
- AN-NIR-097Total base number in lubricants with near-infrared spectroscopy
Alkaline additives in engine lubricants are used to prevent the build-up of acids and as a result, they inhibit corrosion. The total base number (TBN) indicates the amount of basic additives present in samples and thus can be used as a measure for the degradation of the lubricant. The standard test method for TBN in lubricants is potentiometric titration according to ASTM D2896. This method requires the use of toxic reagents involves a labor-intensive cleaning procedure. In contrast to the primary method, near-infrared spectroscopy (NIRS) is a fast analytical technique which does not produce any chemical waste and completes the TBN analysis in less than one minute.
- AN-NIR-100Ash determination in polyethylene
The standard test method for ash content analysis is thermogravimetric analysis (TGA). Although TGA is easy to perform, it is time-intensive and requires the use of nitrogen gas. In contrast to the primary method, near-infrared spectroscopy (NIRS) is a fast analytical technique which can measure multiple parameters including ash content in polymers within one minute.
- AN-NIR-082Quality Control of Polypropylene
Polypropylene (PP) is a general purpose resin widely used in industries such as electronic manufacturing and construction, as well as in packaging materials. PP resins must be melted first in order to be formed into the intended shape, and therefore flow properties are important characteristics which affect the production process. The standard procedure to analyze melt flow rate (MFR) requires a significant amount of work with packing the sample, preheating, and cleaning. With no sample preparation or chemicals needed, Vis-NIR spectroscopy allows the analysis of MFR in less than a minute.
- AN-NIR-084Quality Control of Silicone rubber
Determination of the vinyl content of silicone rubber is a lengthy and challenging process. First, the vinyl groups must be converted to ethylene by reacting with an acid, followed by the determination of the produced ethylene with gas chromatography (GC).This application note demonstrates that Vis-NIR (visible near-infrared) spectroscopy provides a cost-efficient and fast solution for the determination of vinyl content in silicone rubbers. With the DS2500 Solid Analyzer it is possible to obtain results in less than a minute without sample preparation or any chemical reagents.
- AN-NIR-087Ethanol content in hand sanitizers
Safe and fast ethanol determination in hand sanitizers is possible with reagent-free near-infrared spectroscopy (NIRS). NIRS provides reliable results in a few seconds, quickly indicating when adjustments in formulation are necessary.
- AN-NIR-094Bromine number in pyrolysis gasoline
This application note presents near-infrared spectroscopy (NIRS) as an alternative for bromine number determination in pyrolysis gasoline.
- AN-NIR-112Intrinsic viscosity (IV) determination of recycled PET by NIR spectroscopy
Near-infrared (NIR) spectroscopy is able to determine the intrinsic viscosity of rPET in less than one minute without any sample preparation. This Application Note demonstrates that the Metrohm DS2500 Solid Analyzer operating in the visible and near-infrared spectral region (Vis-NIR) offers users an easier way to perform this analysis without the use of toxic chemicals.
- AN-NIR-113Research octane number (RON) determination in isomerate
The standard method to determine RON in isomerate is with expensive and maintenance-intensive engines. In contrast to this, the research octane number can also be analyzed by near-infrared spectroscopy (NIRS). NIRS provides accurate results within one minute without the need for any sample preparation or chemicals.
- AN-NIR-071Automated acid number determination in lubricants with near-infrared spectroscopy
Acid Number (AN) analysis of lubricants (ASTM D664) can be a lengthy and costly process due to usage of large amounts of chemicals and required cleaning steps of the analytical equipment between each measurement. This application note demonstrates that the XDS RapidLiquid Analyzer operating in the visible and near-infrared spectral region (Vis-NIR) provides a cost-efficient, fast alternative for the determination of the acid number of lubricants. With no sample preparation or chemicals needed, Vis-NIR spectroscopy allows for the analysis of AN in less than a minute.
- AN-NIR-103Quality control of chocolate bars by near-infrared spectroscopy
Near-infrared spectroscopy (NIRS) is a fast, chemical-free analysis method for various quality parameters of chocolate bars without sample preparation. The NIRS solution is easy to use and can be used atline or in a quality control lab.
- AN-NIR-106Quality control of non-nutritive sweeteners with NIR spectroscopy
Near-infrared spectroscopy (NIRS) allows the simultaneous determination of sweeteners such as Stevia and sucralose in blends in less than one minute without any chemicals or sample preparation.
- AN-NIR-091Quality Control of Mixed Acetic, Hydrofluoric, and Nitric Acids
This application note discusses an alternative near-infrared (NIR) spectroscopy method that can reliably determine all parameters within a minute, even in complex acid mixtures.
- AN-NIR-102Density of polyolefins measured by near-infrared spectroscopy
This Application Note shows the feasibility of NIR spectroscopy for the analysis of density in polyethylene granulates. Compared to the standard method, NIRS analysis shows a lower prediction error when air bubbles are present in PE pellets.
- AN-NIR-104Analysis of green coffee beans by near-infrared spectroscopy
Near-infrared spectroscopy (NIRS) is a fast, chemical-free analytical method for the simultaneous analysis of density, water activity, and moisture of green coffee beans.
- AN-NIR-116Determination of iodine value in frying oils with NIR spectroscopy
Monitoring the iodine value in edible oil blends is crucial to produce vegetable oils with the desired properties. This Application Note displays the benefit of using the Metrohm NIRS DS2500 Liquid Analyzer for quality control in food laboratories.
- AN-NIR-090Quality Control of Mixed Phosphoric, Sulfuric, Nitric, and Hydrofluoric Acids
Fast and reliable detection of phosphoric, sulfuric, nitric, and hydrofluoric acids with near-infrared spectroscopy in under one minute.
- AN-NIR-101Quality control of dried cannabis
Typically, cannabis potency testing is performed by HPLC, but the drawback is that it requires chemicals and it is time-consuming. Near-infrared spectroscopy (NIRS) is a preferred method for quantification of THC, CBD and CBG in dried cannabis because it provides results in less than a minute and does not require any chemicals.
- AN-NIR-109Determination of Brix, fructose, glucose, and sucrose with NIRS
Key quality parameters in the food industry include sucrose, glucose, and fructose, and Brix (dissolved sugar content). Near-infrared spectroscopy (NIRS) allows fast simultaneous determination of multiple sugars without chemicals or any sample preparation.
- 410000019-BQuantification of methanol in contaminated spirits with Raman
Methanol, often present in spirits prepared with industrial solvents like wood alcohol, can lead to blindness and even death when ingested. After an incident involving methanol-laced alcohol in the Czech Republic, they adopted Raman spectroscopy as the preferred method for identifying and quantifying methanol in contaminated spirits, following an exhaustive study using various screening tools. This Application Note discusses the reasons why Raman spectroscopy is the ideal choice for this application and shows a real-world example of Raman analysis of methanol-laced rum.
- AN-NIR-023Quality Control of PET
Determination of the diethylene glycol content, isophthalic acid content, intrinsic viscosity (ASTM D4603), and the acid number (AN) of polyethylene terephthalate (PET) is a lengthy and challenging process due to the sample’s limited solubility and the need to use different analytical methods. This application note demonstrates that the DS2500 Solid Analyzer operating in the visible and near-infrared spectral region (Vis-NIR) provides a cost-efficient and fast solution for a simultaneous determination of these parameters in PET. Vis-NIR spectroscopy allows for the analysis of PET in less than one minute without sample preparation or using any chemical reagents.
- AN-NIR-041Multiparameter Quality Control of Lubricants with NIRS
For lubricant analysis, determination of the Acid Number (ASTM D664), viscosity (ASTM D445), moisture content (ASTM D6304), and color number (ASTM D1500) require the use of multiple analytical technologies and, in part, large volumes of chemicals. This application note demonstrates that the XDS RapidLiquid Analyzer operating in the visible and near-infrared spectral region (Vis-NIR) provides a fast and cost-efficient alternative for the determination of the AN, viscosity, moisture content, and color number of lubricants. With no sample preparation or chemicals needed, Vis-NIR spectroscopy allows for multi parameter analysis of lubricants in less than one minute.
- AN-NIR-060Quality Control of Polyamides
Functional group and viscosity analysis (ASTM D789) of polyamides can be a lengthy and challenging process due to the sample’s limited solubility. This application note demonstrates that the DS2500 Solid Analyzer operating in the visible and near-infrared spectral region (Vis-NIR) provides a cost-efficient and fast solution for a simultaneous determination of the intrinsic viscosity as well as the amine, carboxylic, and moisture content in polyamides. With no sample preparation or chemicals needed, Vis-NIR spectroscopy allows for the analysis of polyamides in less than a minute.
- AN-NIR-080Quality Control of Diesel
The cetane index (ASTM D613), flash point (ASTM D56), cold filter plug point (CFPP) (ASTM D6371), D95 (ISO 3405), and viscosity at 40°C (ISO 3104) are key parameters to determine for diesel quality. The primary test methods are labor intensive and challenging due to the need to use different analytical methods. This application note demonstrates that the NIRS XDS RapidLiquid Analyzer provides a cost-efficient and fast solution (under 1 minute) for the simultaneous determination of these key parameters in diesel.
- AN-NIR-114Determination of RON, aromatics, benzene, olefins, and density in reformate by NIRS
The determination of key quality parameters of reformate—namely research octane number (RON, ASTM D2699-19), aromatic content (ASTM D5769-15), benzene content, olefin content, and density—requires time-consuming and laborious conventional methods. In contrast, the Metrohm DS2500 Liquid Analyzer can measure all of these parameters, providing results within one minute without any sample preparation.
- AN-NIR-117Analysis of moisture, ash, carbon, and volatile content in coal by NIRS
Conventional methods used to analyze moisture, ash, fixed carbon, and volatile content in coal samples, are time consuming and costly. Near-infrared (NIR) spectroscopy is excellently suited to determine all parameters simultaneously in less than one minute without any sample preparation.
- AN-NIR-022Quality Control of Gasoline
In recent years, there has been a significant push to reduce the environmental impacts of fuels through improvements to fuel quality. The determination of key quality parameters of gasoline, namely research octane number (RON, ASTM D2699-19), motor octane number (MON, ASTM D2700-19), anti knock index (AKI), aromatic content (ASTM D5769-15), and density, conventionally requires several different analytical methods, which are laborious and need trained personnel. This application note demonstrates that the XDS RapidLiquid Analyzer, operating in the visible and near-infrared spectral region (Vis-NIR), provides a cost-efficient and fast solution for the multiparameter analysis of gasoline.
- AN-NIR-044Multiparameter Quality Control of Palm Oil with NIR Spectroscopy
Determination of key quality parameters of palm oil, namely free fatty acids (FFA), iodine value (IV), moisture content, deterioration of bleachability index (DOBI), and carotene require the use of several different analytical methods, which are laborious and can lack in accuracy. This application note demonstrates that the XDS RapidLiquid Analyzer operating in the visible and near infrared spectral region (Vis-NIR) provides a cost-efficient and fast solution for the determination of these quality control parameters in palm oil. With no sample preparation or chemicals needed, Vis-NIR spectroscopy allows for the analysis of palm oil in less than a minute and can be used by anyone.
- AN-NIR-054Quality Control of Shampoo
Determination of sodium laureth sulfate (SLES), cocamidopropyl betaine (CABP), cocamidopropylamine oxide (CAW), cocamide diethanolamine (DEA), and carbopol in shampoo is a cost- and time-intensive process due to the use of large volumes of chemicals per analysis. This application note demonstrates that the DS2500 Solid Analyzer operating in the visible and near-infrared spectral region (Vis-NIR) provides a cost-efficient and fast solution for a simultaneous determination these parameters in shampoo. With no sample preparation or chemicals needed, Vis-NIR spectroscopy allows for the complete analysis in less than a minute.
- AN-NIR-107Quality control of Bromobutyl rubber
The synthetic rubber known as Bromobutyl (BIIR) has many of the attributes of butyl rubber, but has better adhesion to other rubbers and metals, resulting in substantially faster cure rates. The simultaneous quantification of the bromine content, Mooney viscosity, volatile content, calcium stearate content, and functional bromide in BIIR can be easily performed with near-infrared spectroscopy (NIRS) without the use of chemicals.
- AN-NIR-099Quality Control of fermentation broths
Cell fermentation processes are a reliable production method for small molecules and protein-based active pharmaceutical ingredients (APIs). The fermentation process requires monitoring of many different parameters to ensure optimal production. These quality parameters include pH, bacterial content, potency, glucose, and concentration of reducing sugars. Traditional laboratory analysis takes a significant amount of time and requires different analytical techniques to monitor these different quality parameters. Near-infrared spectroscopy (NIRS) offers a faster and more cost-efficient alternative to traditional methods for the determination of critical parameters in fermentation broths at any stage of the fermentation process.
- AN-NIR-110Quality control of sugarcane juice
Brix, Pol, juice purity, reducing sugars, and total recoverable sugars are some of the many quality control (QC) parameters that must be analyzed in sugarcane juice. An alternative to other analytical methods is near-infrared spectroscopy (NIRS). NIRS allows the fast, simultaneous determination of several QC constituents without chemicals or sample preparation.
- AN-PAN-1065Inline monitoring of cell cultures with Raman spectroscopy
This Process Application Note presents a method to accurately monitor lactic acid and glucose inside a bioreactor in «real-time» with the 2060 Raman Analyzer from Metrohm Process Analytics.
- AN-RS-050Trace detection of mercaptans in fuel
Mercaptans in fuels are corrosive and regulated at trace levels. SERS enhances Raman signals to enable their accurate detection and quantification below standard LODs.
- AN-NIR-093Quality Control of fermentation processes
The production of biofuels from renewable feedstock has grown immensely in the past several years. Bioethanol is one of the most interesting alternatives for fossil fuels, since it can be produced from raw materials rich in sugars and starch. Ethanol fermentation is one of the oldest and most important fermentation processes used in the biotechnology industry. Although the process is well-known, there is a great potential for its improvement and a proportional reduction in production costs. Due to the seasonal variation of feedstock quality, ethanol producers to need to monitor the fermentation process to ensure the same quality product is achieved. Near-infrared spectroscopy (NIRS) offers rapid and reliable prediction of ethanol content, sugars, Brix, lactic acid, pH, and total solids at any stage of the fermentation process.
- AN-NIR-095Quality Control of Hand Sanitizers
This application note presents near-infrared spectroscopy (NIRS) for the rapid and reliable simultaneous quantification of ethanol, glycerol, hydrogen peroxide, and water content in hand sanitizer formulations.
- AN-NIR-019Human stool analysis by near-infrared spectroscopy
This Application describes the determination of moisture, nitrogen, and fat in stool samples using near-infrared spectroscopy. These parameters are of great importance in medical diagnostics.
- AN-NIR-079Moisture analysis in fertilizer products
Moisture content is one of the most commonly measured properties of fertilizers. Globally, regulations for different fertilizers vary, but local legal limits ensure that the maximum amount of water must not be exceeded. Next to gravimetric methods, Karl Fischer titration is often used for accurate moisture determination.Compared to these methods, near-infrared spectroscopy (NIRS) offers unique advantages: it generates reliable results within seconds, and at the same time does not create chemical waste. This Application Note explains how NIRS can offer fast, reagent-free analysis of moisture content in various fertilizer products.
- AN-NIR-076Quality control of polyvinyl alcohol
Polyvinyl alcohol (PVA) is a linear polymer, used in a variety of medical products (e.g. eye drops). Here, the degree of alcoholysis is an important index for the water solubility, viscosity, and adhesion of the product. The degree of alcoholysis is defined as the percentage of hydroxyl functional groups compared to the total functional groups accessible in the molecule. Conventional alcoholysis determination can take up to six hours per sample. Compared to the primary method, analysis with near-infrared spectroscopy (NIRS) only takes one minute. The following application note describes the determination of the degree of alcoholysis by NIRS.
- AN-NIR-077Moisture analysis in caprolactam
Caprolactam is an important polymer used for the production of Nylon 6, which is the base material for industrial fibers. Due to its commercial significance, many different synthesis methods have been developed over the years. Caprolactam is hygroscopic and water soluble, therefore it is important to have a reliable analysis technique for water determination. Analyzing the water content by conventional methods requires each sample to be weighed, dissolved, heated, and titrated. Compared to the primary method, near-infrared spectroscopy (NIRS) offers unique advantages: it generates reliable results within seconds, but it does not need any sample preparation nor does it create chemical waste.
- AN-SPEC-1052Quantifying sulfuric and phosphoric acids for fertilizer production by Raman spectroscopy
- AN-RS-049Determining phosphate concentration with Raman spectroscopy
Raman spectroscopy with PLS modeling enables rapid, accurate, nondestructive quantification of the total phosphate content in solution with minimal sample preparation.
- AN-T-193AN-T-193Determination of iodometric assay according to USP<425>
Penicillin and its related antibiotics are used to prevent and treat a number of bacterial infections, such as respiratory tract infections, urinary tract infections, meningitis, etc. It may also be used to prevent group B streptococcal infection in newborns. The β-lactam ring of penicillin binds to the enzyme DD- transpeptidase, which prevents the formation of cross links during cell wall formation of new bacterial cell, i.e., the division of bacterial cells. USP<425> describes a back-titration method to determine the assay of pharmacopeial penicillin antibiotic drugs and their dosage forms by iodometric titration. The method is illustrated by determining the aminopenicillin content in an ampicillin capsule.
- AN-V-214Lead in drinking water
Lead is known to be highly toxic to humans as it interferes with enzyme reactions. Chronic lead poisoning can be caused by lead leaching into drinking water from piping systems. The current provisional guideline value in the World Health Organization’s «Guidelines for Drinking-water Quality» sets a maximum concentration of 10 μg/L. With a limit of detection (LOD) of 0.2 μg/L, anodic stripping voltammetry is a viable, less sophisticated alternative to atomic absorption spectroscopy (AAS) to determine lead in drinking water. While AAS (and competing methods) can only be performed in a laboratory, anodic stripping voltammetry can be used conventionally in the laboratory or alternatively in the field with the 946 Portable VA Analyzer. The determination is carried out on a silver film applied to the scTRACE Gold electrode.
- AN-V-221Cadmium and lead in drinking water with a Bi drop electrode
To reduce the toxic effects of cadmium on the human body, as well as to limit the neurotoxic effects of lead, the provisional guideline values in the World Health Organization’s «Guidelines for Drinking-water Quality» are set to a maximum concentration of 3 µg/L for cadmium and 10 µg/L for lead. The completely mercury-free Bi drop electrode takes the next step towards converting voltammetric analysis into a non-toxic approach for heavy metal detection. Using this environmentally friendly sensor for anodic stripping voltammetry (ASV) allows the simultaneous determination of Cd and Pb in drinking water. The outstanding sensitivity is more than sufficient to monitor the provisional WHO guideline values.
- AN-V-224Nickel and cobalt in drinking water with a glassy carbon electrode
Due to the toxicity and the detrimental effects of nickel and cobalt on human health, their concentrations in drinking water must be controlled. Therefore, EU the legislation specifies 20 µg/L as the limit value for nickel in drinking water. The current provisional guideline value for Ni in the World Health Organization’s «Guidelines for Drinking-water Quality» is set to a maximum concentration of 70 µg/L. To monitor the concentrations of Ni and Co with the 884 Professional VA, a method for simultaneous determination on the glassy carbon electrode (GC-RDE) modified with a Bi film is used.
- AN-V-225Cadmium and lead in drinking water with a glassy carbon electrode
To reduce the toxic effects of cadmium on the kidneys, skeleton, and the respiratory system, as well as the neurotoxic effects of lead, the provisional guideline values in the World Health Organization’s (WHO) «Guidelines for Drinking-water Quality» are set to a maximum concentration of 3 µg/L for cadmium and 10 µg/L for lead.The powerful anodic stripping voltammetry (ASV) technique on the ex-situ mercury film modified glassy carbon electrode is more than sufficient to monitor the proposed WHO guidelines for Cd and Pb in drinking water.
- AN-V-231Cadmium and lead in drinking water with screen-printed carbon electrodes
The provisional guideline values in the World Health Organization’s (WHO) «Guidelines for Drinking-water Quality» are set to 3 µg/L for cadmium and 10 µg/L for lead. The anodic stripping voltammetry (ASV) technique performed on the ex-situ mercury film modified Metrohm DropSens screen-printed electrode (SPE) can be used to simultaneously detect concentrations as low as 0.3 µg/L for both elements. This is suitable to monitor the WHO guideline values. The main advantage of this method lies in the innovative and cost-effective screen-printed electrode.
- AN-V-232Nickel and cobalt in drinking water with screen-printed carbon electrodes
EU legislation specifies 20 µg/L as the limit value for nickel in drinking water. The current provisional guideline value for Ni in the World Health Organization’s «Guidelines for Drinking-water Quality» is set to a maximum concentration of 70 µg/L. The adsorptive stripping voltammetry (AdSV) technique performed on the ex-situ bismuth film modified Metrohm DropSens 11L screen-printed electrode (SPE) can be used to simultaneously detect concentrations as low as 0.4 µg/L for nickel and 0.2 µg/L for cobalt with a 30 s deposition time.The disposable, maintenance-free sensor can be used conventionally in the laboratory with the 884 Professional VA, or alternatively in the field with the 946 Portable VA Analyzer. This method is best suited for manual systems.
- AN-V-233Selenium(IV) in drinking water
The difference between the toxic and essential levels of selenium to human health are very slight. Therefore, the current provisional guideline value for selenium(IV) in the World Health Organization’s «Guidelines for Drinking-water Quality» and in the European Drinking Water Directive is set to a maximum concentration of 10 µg/L.The anodic stripping voltammetric (ASV) technique performed on the unmodified scTRACE Gold can be used to determine concentrations as low as 0.5 µg/L selenium with a 30 s deposition time. These limits can be lowered even further by increasing the deposition time. The linear range at 30 s deposition time ends at approximately 100 μg/L. The scTRACE Gold electrode does not need extensive maintenance such as mechanical polishing. Measurements can be performed in the laboratory with the 884 Professional VA or alternatively in the field with the 946 Portable VA Analyzer. This method is suited for manual or automated systems.
- AN-PAN-1048Inline moisture analysis in a pilot scale granulation process by NIRS
This Process Application Note provides a detailed account of the inline assessment of moisture during a pilot scale granulation process using a 2060 The NIR Analyzer.
- AN-PAN-1064Monitoring complexing agents in galvanic baths inline with Raman spectroscopy
Accurate analysis of complexing agents in galvanic baths is possible with inline Raman spectroscopy. This Application Note shows an example using a 2060 Raman Analyzer.
- 410000051-BIdentification of microplastics with Raman microscopy
Research laboratories must expand their capabilities to routinely analyze candidate microplastics from environmental samples to determine their origin and help predict biological impacts. Spectroscopic techniques are well suited to polymer identification. Laboratory Raman spectroscopy is an alternative to confocal Raman microscopes and Fourier transform infrared (FTIR) microscopes for quick identification of polymer materials. Raman microscopy was used to identify very small microplastic particles in this Application Note.
- 410000056-A410000056-ACounterfeit Adderall Pills Identification with TacticID Mobile
In this case study, a suspected counterfeit Adderall pill was measured directly with a TacticID Mobile using a point-and-shoot adapter. The spectra of the suspected couterfeit pill was found to contain cellulose and caffeine, but not the active ingredient. The TacticiD Mobile with 1064-nm laser excitation provides fluorescence suppression, giving those on the front lines a tool in the fight against dangerous counterfeit drugs.
- AN-M-017IC-MS/MS analysis of trifluoroacetic acid according to DIN 38407-53
The new DIN draft standard 38407-53 outlines TFA analysis in water using direct injection LC-MS/MS, enabling quantification from 0.1–3.0 μg/L as shown in this Application Note.
- AN-S-236Drinking water quality by EPA 300.1
Fast and reliable analysis of drinking water by combining EPA method 300.1 Parts A and B in a single IC run.
- AN-S-404Water quality testing with EPA 300.1
The Metrosep A Supp 21 column and 948 Continuous IC Module, CEP enable efficient, automated single-run analysis of major anions and disinfection byproducts in water.
- AN-SPEC-US-1019Analysis of Highly Fluorescent Chemical Materials
Discover how Metrohm’s MIRA XTR with eXTRaction technology overcomes fluorescence interference in Raman spectroscopy. This application note compares traditional 785 nm and 1064 nm Raman systems with XTR processing, highlighting improvements in SNR, safer low‑power operation, and accurate identification of highly fluorescent chemicals—even through containers and at standoff distances.
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OMNIS lets you combine all your analyses on a universal platform with just one software to control everything. Titration, near-infrared spectroscopy, and automation on a single platform.
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Fully customized laboratory robotics solutions for complex projects involving high sample throughput, numerous sample preparation tasks, and more.
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Based in Switzerland, Metrohm provides titration, ion chromatography, Raman and NIR spectroscopy, electrochemistry, and process analysis solutions to customers worldwide.
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6.6072.208
Vision Air 2.0 CompleteVision Air - Universal spectroscopy software. Vision Air Complete is a modern and simple-to-operate software solution for use in a regulated environment.Overview of the advantages of Vision Air: Individual software applications with adapted user interfaces ensure intuitive and simple operation; Simple creation and maintenance of operating procedures; SQL database for secure and simple data management; The Vision Air Complete version (66072208) includes all applications for quality assurance using Vis-NIR spectroscopy: Application for instrument and data management; Application for method development; Application for routine analysis; Additional Vision Air Complete solutions: 66072207 (Vision Air Network Complete); 66072209 (Vision Air Pharma Complete); 66072210 (Vision Air Pharma Network Complete);
6.6069.012
Vision Upgrade to Vision PharmaThe upgrade from Vision to Vision Pharma enables the use of Vision in regulated environments.Vision Pharma fulfils the requirements of the FDA and other supervisory agencies.
6.6069.013
Vision Upgrade to Vision MultiUpgrading from Vision to Vision Multi enables you to profit from the advantages of a client/server installation. This version enables the editing of the data from different spectrometers from a central server computer.Vision Multi contains 5 multi-user licenses.
6.6069.412
Vision 4.1Vision is the Metrohm software solution for method development and for controlling Metrohm XDS process instruments and B&W Tek instruments The user-friendly graphics analysis interface makes it easy to apply chemometric algorithms for creating identification, qualification, and quantification methods.
6.6072.207
Vision Air 2.0 Network CompleteVision Air - Universal spectroscopy software. Vision Air Network is a modern and simple-to-operate software solution. The network version enables the structuring of a global server-client network with a central database.Overview of the advantages of Vision Air: Individual software applications with adapted user interfaces ensure intuitive and simple operation; Centralized data and instrument management; Simple configuration and updating of several devices in just a few steps ; The Vision Air Network Complete version (66072207) contains all applications for quality assurance using Vis-NIR spectroscopy: Application for a global instrument and data management; Application for method development; Application for routine analysis;
6.6072.209
Vision Air 2.0 Pharma CompleteVision Air - Universal spectroscopy software. Vision Air Pharma Complete is a modern and simple-to-operate software solution for use in regulated environments.Overview of the advantages of Vision Air: Individual software applications with adapted user interfaces ensure intuitive and simple operation; Simple creation and maintenance of operating procedures; SQL database for safe and simple data management; In compliance with all requirements pursuant to Title 21 CFR Part 11; The Vision Air Pharma Complete version (66072209) contains all applications for quality assurance using Vis-NIR spectroscopy: Application for instrument and data management; Application for method development; Application for routine analysis;
6.6072.210
Vision Air 2.0 Pharma Network CompleteVision Air - Universal spectroscopy software. Vision Air Pharma Network Complete is a modern and simple-to-operate software solution. The network version enables the setup of a global server-client network with a central database.Overview of the advantages of Vision Air: Individual software applications with adapted user interfaces ensure intuitive and simple operation; Centralized data and instrument management; Simple configuration and updating of several instruments in just a few steps; In compliance with all requirements pursuant to Title 21 CFR Part 11; The Vision Air Pharma Network Complete version (66072210) contains all applications for quality assurance using Vis-NIR spectroscopy: Application for a global instrument and data management; Application for method development; Application for routine analysis ;
6.6069.414
Vision Multi 4.1Vision is the Metrohm software solution for method development and for controlling Metrohm XDS process instruments and B&W Tek instruments.The user-friendly graphics analysis interface makes it easy to apply chemometric algorithms for creating identification, qualification, and quantification methods.Vision Multi contains 5 multi-user licenses and is the ideal solution for setting up a server-client network.
6.6069.413
Vision Pharma 4.1Vision is the Metrohm software solution for method development and for controlling Metrohm XDS process instruments and B&W Tek instruments in a regulated environment. The user-friendly graphics analysis interface makes it easy to apply chemometric algorithms for creating identification, qualification, and quantification methods.
6.6072.201
Vision Air 2.0Vision Air - Universal spectroscopy softwareVision Air is a modern and simple-to-operate software solution.Overview of the advantages of Vision Air: Individual software applications with adapted user interfaces ensure intuitive and simple operation; Simple creation and maintenance of operating procedures; SQL database for safe and simple data management; The Vision Air version (66072201) contains the following applications: Application for instrument and data management; Application for routine analysis; Select this version when you already have a software for method development (Vision, PLS_Toolbox or Unscrambler®).
6.6069.014
Vision Multi Upgrade to Multi PharmaThe upgrade from Vision Multi to Vision Multi Pharma enables the use of the client/server version of Vision in regulated environments.Vision Multi Pharma fulfils the requirements of the FDA and other supervisory agencies.
6.6072.202
Vision Air 2.0 PharmaVision Air - Universal spectroscopy softwareVision Air Pharma is a modern and simple-to-operate software solution for use in regulated environments.Overview of the advantages of Vision Air Pharma: Individual software applications with adapted user interfaces ensure intuitive and simple operation; Simple creation and maintenance of operating procedures; SQL database for safe and simple data management; In compliance with all requirements pursuant to Title 21 CFR Part 11; The Vision Air Pharma version (66072202) contains the following applications: Application for instrument and data management; Application for routine analysis; Select this version when you already have a software for method development (Vision, PLS_Toolbox or Unscrambler®) and work in regulated environments.
6.6072.206
Vision Air 2.0 NetworkVision Air - Universal spectroscopy softwareVision Air Network is a modern and simple-to-operate software solution. The network version enables the structuring of a global server-client network with a central database.Overview of the advantages of Vision Air: Individual software applications with adapted user interfaces ensure intuitive and simple operation; Centralized data and instrument management; Simple configuration and updating of several devices in just a few steps; The Vision Air Network version (66072206) contains the following applications: Application for instrument and data management; Application for routine analysis; Select this version when you already have a software for method development (Vision, PLS_Toolbox or Unscrambler®).
6.6072.204
Vision Air 2.0 ServerThe Vision Air Server version is required for one-time use for structuring a server-client network with Vision Air Network (order number: 6.6072.206).
6.6072.205
Vision Air 2.0 Server PharmaThe Vision Air Server version software is required for one-time use for structuring a server-client network with Vision Air Network (order number: 6.6072.203). Select this version for use in regulated environments.
6.6072.203
Vision Air 2.0 Network PharmaVision Air - Universal spectroscopy softwareVision Air Pharma Network Complete is a modern and simple-to-operate software solution for use in regulated environments. The network version enables the structuring of a global server-client network with a central database.Overview of the advantages of Vision Air: Individual software applications with adapted user interfaces ensure intuitive and simple operation; Centralized data and instrument management; Simple configuration and updating of several devices in just a few steps; In compliance with all requirements pursuant to Title 21 CFR Part 11; The Vision Air Network Pharma version (66072203) contains the following applications: Application for instrument and data management; Application for routine analysis; Select this version when you already have a software for method development (Vision, PLS_Toolbox or Unscrambler®) and work in regulated environments.
6.6069.016
Vision Pharma Upgrade to Multi PharmaUpgrading from Vision Pharma to Vision Multi Pharma enables you to profit from the advantages of a client/server installation.This version enables the editing of the data from different spectrometers from a central server computer.Vision Multi Pharma fulfils the requirements of the FDA and other supervisory agencies.Vision Multi contains 5 multi-user licenses.
6.6069.415
Vision Multi Pharma 4.1Vision Multi Pharma is the Metrohm software solution for method development and for controlling Metrohm XDS process instruments in regulated environments.The user-friendly graphic analysis interface enables simple application of chemometric algorithms for creating identification, qualification and quantification methods.Vision Multi contains 5 multi-user licenses and is the ideal solution for structuring a server-client network.
BWT-840001136
Vision Pharma 4.1Vision Pharma is data acquisition and method development software solution for spectroscopic analysis and control of B&W Tek portable Raman instruments, Metrohm XDS laboratory and process NIRS instruments. A user-friendly graphical analysis interface enables a simple application of chemometric algorithms for creating identification, qualification, and quantification methods and running them in real-time. With Vision you can store, manage, reprocess and exchange data. Vision Pharma is complies with the US FDA's 21 CFR Pt 11 regulations for electronic signatures and records.
BWT-840001137
Vision 4.1Vision is data acquisition and method development software solution for spectroscopic analysis and control of B&W Tek portable Raman instruments, Metrohm XDS laboratory and process NIRS instruments. A user-friendly graphical analysis interface enables a simple application of chemometric algorithms for creating identification, qualification, and quantification methods and running them in real-time. With Vision you can store, manage, reprocess and exchange data.
6.6072.151
Voucher for petroleum pre-calibrationVoucher for one pre-calibration. Entitles you to order pre-calibration of one fuel (diesel, gasoline, kerosine)
6.6072.308
Pre-calibration for polyethylene (PE)Pre-calibration for determination of intrinsic viscosity and density in polyethylene using NIR spectroscopy.
6.6072.309
Pre-calibration for polypropylene (PP)Pre-calibration for determination of the melt flow index in polypropylene using NIR spectroscopy.
6.6072.310
Pre-calibration for PETPre-calibration for determination of intrinsic viscosity, acid number, diethylene glycol content, and isophthalic acid content in poly(ethylene terephthalate) (PET) using NIR spectroscopy.
6.6072.311
Pre-calibration for polyamide (PA 6)Pre-calibration for determination of relative viscosity, carboxyl end-group content, and amine end-group content in polyamides (PA 6) using NIR spectroscopy.
- Jan 8, 2024How to implement NIR spectroscopy in your laboratory workflow
The steps needed to implement near-infrared spectroscopy in your laboratory: creating a calibration set, creating and validating prediction models, and routine analysis.
- Jan 24, 2022NIR spectroscopy in the petrochemical and refinery industry: The ASTM compliant tool for QC and product screening – Part 5
Near-infrared spectroscopy and ASTM. Learn more about method development, method validation, and results validation.
- Mar 23, 2020Benefits of NIR spectroscopy: Part 3
Blog on how to implement NIR spectroscopy in your laboratory workflow.
- Jan 8, 2024NIR spectroscopy pre-calibrations: Immediate results
Pre-calibrations are prediction models that can be used immediately for NIR analysis and provide satisfying results right from the beginning. Simply press one button and start the measurement.
- Aug 8, 2022Near-infrared spectroscopy (NIRS): The perfect solution to monitor purity of recovered solvents
Monitoring solvent purity can be done quick and safely without any sample preparation using near-infrared spectroscopy (NIRS). Within one minute NIRS can determine the quality of recovered solvents.
- Nov 29, 2021Ph. Eur. 2.2.48 Raman Spectroscopy: How Raman instruments from Metrohm comply with the 2022 update
Compliance of handheld and portable Raman spectrometers with Ph. Eur. 2.2.48 for pharmaceutical quality control.
- Mar 7, 2022NIR spectroscopy: a 21 CFR Part 11 compliant tool for QC and product screening
Learn more about near-infrared spectroscopy as a 21 CFR Part 11 compliant tool to assess the quality of pharmaceuticals.
- Feb 10, 2020The man behind Metrohm: Bertold Suhner
- Jan 20, 2020Benefits of NIR spectroscopy: Part 1
- Jun 27, 2022NIR spectroscopy in the personal care and cosmetics industry: The ideal tool for QC and product screening – Part 1
Near-infrared spectroscopy in the personal care and cosmetic industry: basics, benefits, and applications.
- May 13, 2020A History of Chemistry – Part 3
- Nov 15, 2021NIR spectroscopy in the petrochemical and refinery industry: The ASTM compliant tool for QC and product screening – Part 3
- Jun 12, 2023The future of ammonia production is electrochemistry
Ammonia is the most common and widely used nitrogen-based fertilizer. It is also viable as a safer hydrogen carrier in large quantities. Traditional ammonia manufacturing uses fossil fuel as a hydrogen source needed for the reaction. Commonly termed «green ammonia», electrochemically synthesized ammonia with the use of electricity from renewable sources is an interesting zero-carbon emission alternative.
- Sep 5, 2022QC and product screening of medicinal cannabis with NIR spectroscopy
Near-infrared spectroscopy (NIRS) is a fast analytical technique with low running costs used to perform quality control (QC) and product screening on various cannabis products, including hemp. NIRS can determine the cannabinoid profile or even the potency of dried cannabis flowers, as well as for cannabis oils, waxes, tinctures, and other formulations.
- Jul 13, 2026Process analytical technology for biopharmaceuticals
In biopharmaceutical production, Process Analytical Technology (PAT) enhances process understanding by enabling continuous monitoring of critical parameters, thereby improving product quality, regulatory compliance, and operational efficiency.
- Aug 26, 2024Raman spectroscopy: The easy way to analyze polymers
This article describes how versatile Raman spectroscopy can be for the identification, classification, and quality control of various plastics and polymers.
- Apr 8, 2024Improved detection of fentanyl using Raman spectroelectrochemistry
Rapid, reliable drug screening methods are crucial for forensic science investigations. This article explores fentanyl detection using Raman spectroelectrochemistry.
- Mar 25, 2024Point-of-Care with Raman: Detection of cancer, infection, and more
Raman spectroscopy expands into new medical frontiers: detecting cancer, biomarkers, and pathogens. This blog covers exciting research involving Point-of-Care applications.
- Oct 19, 2020Trace metal analysis with solid-state electrodes – Part 4
Screen-printed electrodes for heavy metal analysis.
- Jun 22, 2020Trace metal analysis with solid-state electrodes – Part 1
- Mar 9, 2020How Mira Became Mobile
- Feb 14, 2025New Regional Support Center for West, Central, and East Africa
Metrohm Central Africa Ltd. provides application, technical, and service support for customers in West, Central, and East Africa.
- Aug 6, 2024Updated m-oem website emphasizes Metrohm components and capabilities
m-oem, the OEM division of Metrohm, has completed a significant upgrade to their website. Composed of B&W Tek, DropSens, Innovative Photonic Solutions (IPS) and Metroglas, m-oem offers the components found in Metrohm’s world-class analytical instruments to customers for integration and customization projects.
- Mar 18, 2024Launch of 2060 Raman Analyzer
Metrohm Process Analytics launches an online Raman analyzer for process monitoring and optimization.
- Jan 15, 2024Introducing the SAVANNAH Raman Module
SAVANNAH is a fully integrated Raman module consisting of a laser source and detection system. This cutting-edge technology empowers our customers to incorporate Raman as an analytical tool in a variety of applications across various industries.
- Jun 15, 2023Metrohm Spectro included in National Science Foundation Regional Innovation Engines Development Award
Metrohm Spectro is proud to announce it is one of eleven companies and twelve universities receiving a regional Innovation Engines Development Award from National Science Foundation (NSF) as a part of its involvement with the Advancing Photonics Technologies (APT) collaboration of NJ, PA, NY and DE
- Mar 5, 2020QC in soap manufacturing – total fatty matter, iodine value, and more by Vis-NIR Spectroscopy
Metrohm is pleased to present a time- and cost-saving solution for the simultaneous determination of total fatty matter, iodine value as well as C8-C14 content in soap noodles. A set of 46 soap noodle samples was tested providing good results for standard error and accuracy.
- Aug 3, 2020Launch of NIRS DS2500 Polyol Analyzer
Near-infrared spectrometer for fast, simple, and robust routine analysis of polyols.
- 8.000.52268.000.5226Flyer: Vision Air Software
This flyer presents the advantages of the "Vision Air" Vis-NIR spectroscopy software.
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- 8.000.53228.000.5322Flyer: Metrohm Vision, Mission & Values
This flyer contains information about Metrohm's Vision, Mission and Values.
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- 8.000.52248.000.5224Brochure: Vision Air – Universal Vis-NIR spectroscopy software
This brochure gives you an insight into Metrohm's "Vision Air" Vis-NIR spectroscopy software. Vision Air is a modern, intuitive and simple to operate software solution for practically universal application in quality assurance.
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- 8.000.52668.000.5266Flyer: Peace of mind with Vision Air – Compliance with the Data Integrity Guidelines made easy
The requirements for data integrity are that the data has to be complete, consistent, and accurate throughout its entire lifecycle providing full transparency and traceability of changes. Industry guidelines used by the FDA, WHO, PIC/S and GAMP are described within the acronyms ALCOA and ALCOA+. Vision Air gives you complete peace of mind as it ensures all data has the following qualities as stipulated by ALCOA and ALCOA+. More information about this topic can be found in this flyer.
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- 8.105.30058.105.3005FDA Certificate Vision for Vision 4.1
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- 8.105.80448.105.8044Release Notes – Vision 4.1
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- 8.105.80048.105.8004FDA Certificate Vision
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- 8.105.80468.105.8046Installation of Vision 4.1
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- 8.0105.80108.0105.8010Release Notes Vision 4.1.1.63
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- 8.0105.80158.0105.8015Release Notes Vision 4.1.1.70
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- 8.0105.80278.0105.8027Release Notes Vision 4.1.1.108
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- 8.0105.80308.0105.8030Release Notes Vision 4.1.1.130
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- 8.0105.80338.0105.8033Release Notes Vision 4.1.1.156
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- 8.0105.80368.0105.8036Release Notes Vision 4.1.1.191
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- 8.0105.80398.0105.8039Release Notes Vision 4.1.1.238
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- 8.0105.80438.0105.8043Release Notes Vision 4.1.1.329
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- 8.0105.80458.0105.8045Release Notes Vision 4.1.1.362
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- 8.0105.80468.0105.8046Release Notes Vision 4.1.1.394
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- 8.105.80488.105.8048Release Notes Vision 4.1.1.54
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- 8.105.80508.105.8050Manual for Vision 4.1 – Reference
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- 8.105.80518.105.8051Manual for Vision 4.1 – Theory
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- 8.105.80538.105.8053Manual for Vision 4.1 – Diagnostics
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- 8.105.80548.105.8054Tutorial Vision 4.1 – Instrument Calibration
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- 8.0105.80118.0105.8011Release Notes Vision Air 2.0.2.25
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- 8.0105.80178.0105.8017Release Notes Vision Air 2.0.3.16
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- 8.0105.80298.0105.8029Release Notes Vision Air 2.0.4
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- 8.0105.80318.0105.8031Release Notes Vision Air 2.0.5
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- 8.105.80038.105.8003Declaration of Conformity for Vision
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- 8.105.80328.105.8032Tutorial for Vision Air 2.0 Local
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- 8.0105.80408.0105.8040Release Notes Vision Air 2.0.7 (english)
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- 8.105.30048.105.3004FDA Certificate for Vision Air 2.0
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- 8.105.80528.105.8052Tutorial for Vision 4.1 – Instrument Operation
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- 8.105.80658.105.8065Release Notes for Vision Air 2.0
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- 8.105.80678.105.8067Release Notes for Vision Air 2.0.1
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- 8.105.80688.105.8068Declaration of conformity for Vision 4.1
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- 8.105.80348.105.8034Tutorial for Vision Air 2.0 Local Pharma
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- 8.0105.80418.0105.8041Compatibility of Vision with Windows OS versions
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- 8.105.80668.105.8066Declaration of Conformity for Vision Air 2.0
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- 8.105.80368.105.8036Tutorial for Vision Air 2.0 Network and Server
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- 8.0105.80428.0105.8042Compatibility of Vision Air with Windows OS versions
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- 8.105.80388.105.8038Tutorial for Vision Air 2.0 Network and Server Pharma
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- 8.026.60038.026.6003Brochure: Vesuv 3.0
GLP and other guidelines oblige users to fully document their analysis data and results. However, the resulting volume of data very quickly shows the limitations of paper, the traditional filing medium. Electronic data processing is the only viable alternative. A software programme is required that collects and archives all measured values and results obtained in the laboratory. The program must run without supervision in the background while the user continues to work on the instrument itself and enters the respective parameters there. Our new Metrodata software "VESUV 3.0 for Windows" meets all these requirements in an ideal manner.
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