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Webinars (72)2035 Process Analyzers
Process analyzers available in potentiometric, photometric, and thermometric versions with optional additional pH and conductivity measurement.
Hyphenated spectroelectrochemistry
EC-Raman and EC-UV/VIS spectroelectrochemistry using stand-alone Autolab PGSTATs and spectrometers
202X series
Single-method process analyzers for chemical, water, and wastewater monitoring with titration, pH, ISE, or photometry methods.
ProTrode pH sensors
Enhance your process insights with inline pH measurements
Electrochemiluminescence
The ultimate electrochemiluminescence instruments with improved simplicity, versatility, and sensitivity.
PTRam Analyzer
Inline self-calibrating process development Raman.
OMNIS Software
Modern laboratory data management software for the regulated and non-regulated environment. Increase the efficiency and productivity of your lab with the OMNIS Software.
Automation for KF Ti-Touch
Save time and space: automated thermal sample preparation for water content analysis
Sample preparation for KF Ti-Touch
Reliable solutions when the water content of samples cannot be titrated directly.
Extension Modules
Complex applications with the most flexible IC – Upgrade your 940 Professional IC Vario with Extension Modules and additional detectors.
2.1001.0110
OMNIS Basic Titrator without stirrerInnovative, modular potentiometric OMNIS Titrator for endpoint titration. Thanks to 3S Liquid Adapter technology, handling chemicals is safer than ever before. The titrator can be freely configured with measuring modules and cylinder units and can have a stirrer added as needed. If required, the range of functions of the OMNIS Basic Titrator can be extended with a corresponding software function license. Control via PC or local network; Can be supplemented with magnetic stirrer and/or rod stirrer; Various cylinder sizes available: 5, 10, 20 or 50 mL; Connection option for up to four additional titration or dosing modules for additional applications or auxiliary solutions; Liquid Adapter with 3S technology: Safe handling of chemicals, automatic transfer of the original reagent data from the manufacturerMeasuring modes and software options:; Endpoint titration: "Basic" function license; Endpoint and equivalence point titration (monotonic/dynamic): "Advanced" function license; Endpoint and equivalence point titration (monotonic/dynamic) with parallel titration: "Professional" function license;
2.1008.2010
Eco Titrator SaltThe compact Eco Titrator with integrated magnetic stirrer and touch-sensitive User Interface is ideal for routine analysis. It provides GLP-compliant results with minimum space requirements at all times (approx. DIN A4).The Eco Titrator Salt plus offers you the complete package for the analysis of chloride in a wide variety of samples. The package contains a titrator, a 10 mL cylinder unit and an Ag Titrode, a maintenance-free electrode for precipitation titration with silver nitrate.
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.
2.858.0020
858 Professional Sample Processor – PumpThe 858 Professional Sample Processor – Pump processes samples from 500 µL to 500 mL. The sample transfer takes place either with the installed bidirectional two-channel peristaltic pump or with an 800 Dosino.
2.921.1310
NIRS XDS MasterLab AnalyzerRapid, nondestructive analyses of tablets, capsules and other solid-state dosage forms.The NIRS XDS MasterLab Analyzer enables the rapid, nondestructive analyses of solid-state dosage forms such as tablets, capsules, film-coated tablets, gel tablets and gel capsules for manufacturers in the pharmaceuticals industry. Solids in vials can also be analyzed with the NIRS XDS MasterLab Analyzer. The analysis takes place in reflection or transmission mode. The sample input proceeds via a sample slide that can be moved in x and y direction and that is designed for trays with several tablets and/or vials. Analyses of individual samples are optimized with an iris. An optionally available coarse granular sample cell for coarse granular substances extends analysis to include practically all solid forms ranging from fine powders to coarse granular materials, e.g., pellets and flakes.
2.922.1000
NIRS DS2500 Polymer AnalyzerRobust near-infrared spectroscopy for quality control of polymers, not only in laboratories, but also in production environments.The NIRS DS2500 Polymer Analyzer is the tried and tested, flexible solution for quality control and routine analysis of PE, PP, PET, polyamide, and other polymers in solid form along the entire production chain. Resistant to dust, moisture, vibrations, and temperature fluctuations, the NIRS DS2500 Polymer Analyzer is not only suitable for laboratory use, but also use in harsh production environments.The NIRS DS2500 Polymer Analyzer covers the full spectral range from 400 to 2,500 nm and delivers accurate results in less than one minute. The NIRS DS2500 Polymer Analyzer is ready for immediate use through pre-calibrations for PE, PP, PET, and polyamide (PA 6) and, thanks to its simple operation, supports users in their day-to-day routine tasks.
2.945.0010
945 Professional Detector Vario – ConductivityIntelligent stand-alone detector equipped with a high-performance IC Conductivity Detector. For use with intelligent IC instruments or as independent conductivity detector.
A062029010C
2029 Process PhotometerThe 2029 Process Photometer performs sensitive photometric absorption measurements in the visible light range. Detection limits in the low ppb range make this an attractive instrument for a variety of applications.At the heart of the analyzer is a high performance compact photometer module ready for 24/7 online measurement. It comprises a thermostated cuvette with 3 cm light path and LED technology, ensuring stable, accurate measurements no matter the environment. The color development stabilization is automatically detected by making use of differential absorbance measurements. Photometric laboratory methods can be easily transferred to the 2029 Process Photometer, eliminating any bias in results for improved process validation.Several markets are a perfect fit for the 2029 Process Photometer such as chemical, environmental, semiconductor, petrochemical, food and beverage, potable water, and energy/power.Selected applications include:Phosphate; Silica; Chlorine; Nickel; Zinc; Copper; Chromium; Ammonia; Nitrate; Nitrite; Hardness; and more;
BWT-840000341
NanoRam Handheld Raman SpectrometerThe NanoRam is a state-of-the-art, handheld Raman instrument for nondestructive identification and verification of incoming raw materials such as APIs, excipients, and intermediates. Compact and flexible, the NanoRam can be used by non-technical users to rapidly identify samples in the warehouse, on the loading dock, or in the lab, minimizing quarantine areas and expediting materials through the manufacturing lifecycle. Utilizing Raman technology, nondestructive analysis can be performed through transparent containers, maintaining the volume and integrity of the sample.The NanoRam meets the general requirements of Raman spectroscopy methods, including all the requirements of the US Pharmacopeia General Chapter <858>, European Pharmacopeia 2.2.48, Japanese Pharmacopeia 2.26, as well as the People’s Republic of China Pharmacopeia Guidelines on Raman Spectroscopy. Handheld Raman spectrometers support companies in compliance with the PIC/S & GMP guidelines regarding 100% identity assurance for starting materials. The NanoRam is fully compliant with the US FDA 21 CFR Part 11 and Part 1040.10, and can play an integral role in cGMP-compliant facilities. Full training and support services are available, including IQ/OQ/PQ/DQ implementation services as well as method and/or new library development support.
BWT-840000880
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 TE deep 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. The i-Raman EX comes equipped with a fiber probe and an XYZ-positioning-stage with probe holder. It can be used with a range of sampling accessories to facilitate measurements on a wide range of different samples. For expanded analysis capabilities, it can be used with our proprietary BWIQ® multivariate analysis software or BWID® identification software. With the i-Raman EX, you always have a high precision Raman solution for qualitative and quantitative analysis without fluorescence.
- 8.000.60098.000.6009Determination of lanthanides by ion chromatography using non-suppressed conductivity and UV/VIS detection
The simultaneous ion chromatographic determination of trace-levels of lanthanides (or lanthanoides) was achieved by using either direct non-suppressed conductivity detection or UV/VIS detection after post-column reaction (PCR) with arsenazo III at 655 nm. Conductivity detection under isocratic conditions resulted in an overall analysis time of approx. 70 minutes. In contrast, the determination of the lanthanides via gradient elution and subsequent spectrophotometric detection of the arsenazo III-lanthanide(III) complexes was performed within 22 minutes. Besides the outstanding analysis time, UV/VIS detection excelled by its enhanced selectivity and sensitivity and did not suffer from interferences by ubiquitous non-lanthanide impurities such as iron(III) or other transition metals. For both conductivity and spectrophotometric detection, the inclusion of sample preconcentration steps lowered the limit of detection (LOD) to the sub-ppb range.
- 8.000.60108.000.6010Inline sample preparation – An effective tool for ion analysis in pharmaceutical products
By means of azide analysis in Irbesartan a simple, fast, precise and accurate ion chromatographic method for the determination of traces of inorganic contaminants in pharmaceuticals is described. Traces of toxic azides in pharmaceutical products can accurately be determined in the sub-ppb range after Metrohm Inline Matrix Elimination using isocratic ion chromatography (IC) with suppressed conductivity detection. While the azide anions are retained on the preconcentration column, the interfering pharmaceutical matrix is washed away by a transfer solution, ideally consisting of 70% methanol and 30% ultrapure water. The analytical setup provides a well-resolved azide peak and thus alleviates the common drawback of excipient interferences, especially from the nitrate anion. Calibration with azide standards is linear over the range of 5…80 ppb, providing a coefficient of determination of 0.9995. The limit of detection (LOD) and the limit of quantification (LOQ) of azide in Irbesartan are 5 and 30 µg/L respectively; the relative standard deviations (RSD) for the peak area, peak height and retention time being smaller than 3.9%. Robustness testing involved variation of column oven temperature and composition of the transfer solution and, in terms of peak area, provided RSDs smaller than 2.8% and 3.1% respectively.
- 8.000.60118.000.6011Ion chromatographic determination of anions, cations and organic acids in biofuels
Quality and process control of biofuels require straightforward, fast and accurate analysis methods. Ion chromatography (IC) is at the leading edge of this effort. Traces of anions in a gasoline/ethanol blend can accurately be determined in the sub-ppb range after Metrohm Inline Matrix Elimination using anion chromatography with conductivity detection after sequential suppression. While the analyte anions are retained on the preconcentration column, the interfering organic gasoline/bioethanol matrix is washed away.Detrimental alkali metals and water-extractable alkaline earth metals in biodiesel are determined in the sub-ppm range using cation chromatography with direct conductivity detection applying automated extraction with nitric acid and subsequent Metrohm Inline Dialysis. Unlike high-molecular substances, ions in the high-ionic strength matrix diffuse through a membrane into the low-ionic water acceptor solution. In biogas reactor samples, low-molecular-weight organic acids stem from the biodegradation of organic matter. Their profile allows important conclusions concerning conversion in the anaerobic digestion reaction. Volatile fatty acids and lactate can be accurately determined by using ion-exclusion chromatography with suppressed conductivity detection after inline dialysis or filtration.
- 8.000.60128.000.6012Automated logical dilution for ion chromatographic determinations
The combination of 850 Professional IC, 858 Professional Sample Processor, Dosino and MagIC NetTM software offers a variety of sophisticated ion chromatographic sample preparation techniques. One of these is the automated inline dilution of samples.After the first sample injection, MagIC NetTM verifies if the area of the sample peak lies within the calibration range. If the measured peak area is outside these limits, the software calculates the appropriate dilution factor, dilutes and automatically re-injects the sample. For all investigated ions (Li+, Na+, K+, Ca2+, Mg2+, F-, Cl- , NO2-, Br-, NO3-, SO42- ), automated logical dilution yielded coefficients of determination (R2) better than 0.9999. Direct-injection recoveries for cations and anions were within 98.6…99.5% and 93.4…100.4% respectively. In contrast, after logical dilution, recoveries for cations and anions were within 100.1…102.9% and 98.2…102.6% respectively. The relative standard deviations for all determinations involving diluted sample solutions were smaller than 0.91%.
- 8.000.60138.000.6013Analysis of produced water contaminants by ion chromatography
The analytical challenge treated by the present work consists in detecting sub-ppm quantities of bromide, sulfate, aliphatic monocarboxylic acids and several alkaline earth metals in the presence of very high concentrations of sodium and chloride. Bromide, sulfate, acetate and butyrate can be reliably determined by suppressed conductivity detection. Due to matrix effects, propionate can only be detected qualitatively. This drawback can be overcome by coupling the ion chromatograph (IC) to a mass spectrometric (MS) detector. This results in reduced matrix interferences and significantly enhanced sensitivities. The cations magnesium, barium and strontium are determined by non-suppressed conductivity detection.
- 8.000.60148.000.6014Determination of anions and cations in aerosols by ion chromatography
The study of adverse effects of air pollution requires semi-continuous, rapid and accurate measurements of inorganic species in aerosols and their gas phase components in ambient air. The most promising instruments, often referred to as steam collecting devices, are the Particle-Into-Liquid-Sampler (PILS) coupled to wet-chemical analyzers such as a cation and/or anion chromatograph (IC) and the Monitoring instrument for AeRosols and GAses (MARGA) with two integrated ICs. Both instruments comprise gas denuders, a condensation particle growth sampler as well as pump and control devices. While PILS uses two consecutive fixed denuders and a downstream growth chamber, the MARGA system is composed of a Wet Rotating Denuder (WRD) and a Steam-Jet Aerosol Collector (SJAC). Although the aerosol samplers of PILS and MARGA use different assemblies, both apply the technique of growing aerosol particles into droplets in a supersaturated water vapor environment. Previously mixed with carrier water, the collected droplets are continuously fed into sample loops or preconcentration columns for on-line IC analysis. While PILS has been designed to sample aerosols only, MARGA additionally determines water-soluble gases. Compared to the classical denuders, which remove gases from the air sample upstream of the growth chamber, MARGA collects the gaseous species in a WRD for on-line analysis. In contrast to the gases, aerosols have low diffusion speeds and thus neither dissolve in the PILS denuders nor in the WRD. Proper selection of the ion chromatographic conditions of PILS-IC allows a precise determination, within 4 to 5 minutes, of seven major inorganic species (Na+, K+, Ca2+, Mg2+, Cl-, NO3- and SO4 2-) in fine aerosol particles. With longer analysis times (10-15 minutes) even airborne low-molecular-weight organic acids, such as acetate, formate and oxalate can be analyzed. MARGA additionally facilitates the simultaneous determination of HCl, HNO3, HNO2, SO2 and NH3.PILS and MARGA provide semi-continuous, long-term stand-alone measurements (1 week) and can measure particulate pollutants in the ng/m3 range.
- 8.000.60158.000.6015Effect of eluent composition and column temperature on IC column retention times
This work was carried out with a Metrosep C 2 - 150 separation column, the following eluent parameters being investigated: nitric, tartaric, citric and oxalic acid concentration and concentration of the complexing anion of dipicolinic acid (DPA). The aim was to determine the effect of these parameters plus that of the column temperature on the retention times of alkali metals, alkaline earth metals, ammonium and amines using ion exchange chromatography with non-suppressed conductivity detection. Due to similar affinities for the ion exchange column, transition metals are difficult to separate with the classical nitric, tartaric, citric and oxalic acid eluents. Partial complexation with the dipicolinate ligand significantly shortens the retention times and improves the separation efficiency. However, too strong complexation results in a rapid passage through the column and thus in a complete loss of separation. Apart from a change in the elution order of magnesium and calcium at high DPA concentrations, other non-amine cations are only slightly affected by the eluent composition. Irrespective of the tartaric acid and nitric acid concentration in the eluent, an increase in column temperature shortens the retention times and slightly improves the peak symmetries of organic amine cations, particularly in the case of the trimethylamine cation. In contrast, an increase in column temperature in the presence of DPA concentrations exceeding 0.02 mmol/L increases the retention time of the transition metals. Depending on the separation problem, variation of the pH value, the use of a complexing agent and/or an increase in column temperature are powerful tools for broadening the scope of cation chromatography.
- 8.000.60168.000.6016Advantages of multidimensional ion chromatography for trace analysis
The analytical challenge treated in the present work consists in detecting trace concentrations (ppb) of bromide in the presence of a strong chloride matrix. This problem was overcome by separating the bromide ions from the main fraction of the early eluting chloride matrix (several g/L) by applying two sequential chromatographic separations on the same column. After the first separation, the main fraction of the interfering chloride matrix is flushed to waste, while the later eluting anions are diverted to an anion-retaining preconcentration column. After elution in counter flow, the bromide ions are efficiently separated from the marginal chloride residues. The four-point calibration curves for bromide and sulfate are linear in the range of 10…100 µg/L and 200…800 µg/L and yield correlation coefficients of 0.99988 and 0.99953 respectively. For the method shown here, a second injection valve and a preconcentration column are the only additional devices needed to master this demanding separation problem.
- 8.000.60178.000.6017Determination of sulfide in mining leachates
Metal precipitation and cyanide recovery in the SART process (sulfidization, acidification, recycling, thickening) depend to a great extent on the sulfide concentration. Among the flow injection analysis methods coupled to wet-chemical analyzers, the combination of a gas diffusion cell with an ion chromatograph (IC) plus subsequent direct spectrophotometric detection has proven to be one of the most convenient methods of sulfide analysis.This paper deals with the determination of sulfide anions via the coupling of a gas diffusion cell to an IC with subsequent spectrophotometric detection.
- 8.000.60208.000.6020Titrimetric analyses of biofuels
Several testing methods such as the determination of the acid and the iodine numbers in biodiesel as well as the quantification of sulfate and chloride in bioethanol are described.
IMPACT software
The IMPACT software has been specifically designed for 24/7 inline, online, and atline analysis of multiple parameters across the plant, from quality control to manufacturing.
2060 Human Interface
Robust industrial process controller for reliable automated 24/7 control of your processes.
Process analysis
Advanced process analyzers for industrial inline, online, and atline analysis: petrochemical, energy, semiconductor, metal, paper, mining, and (waste)water applications.
White paper: Faster quality control at lower operating costs with near-infrared spectroscopy
Quality control and quality assurance procedures with near-infrared spectrometers can be faster and more cost-efficient.
White paper: Quality control of polyols and isocyanates in a fast and cost-efficient way
Solution for quality assurance of polyols and isocyanates using Near-Infrared Spectroscopy (NIRS).
White paper: Quality control of polymers in a fast and cost-efficient way
Solutions for quality assurance in polymer and plastics production using Near-Infrared Spectroscopy (NIRS).
White paper: Quality control of petroleum products in a fast and cost-efficient way
Quality assurance and control of gasoline, kerosene, and diesel using Near-Infrared Spectroscopy (NIRS).
Pre-calibrations for NIR spectroscopy
NIR spectroscopy pre-calibrations for OMNIS NIR Analyzer and DS2500 Analyzer tailored for different industries: polymer and plastics, palm oil, diesel, gasoline, and more.
2060 MARGA
Fully autonomous sampling and measurement system for control of ambient air quality (monitoring of aerosol and gases).
Metrohm Process Analyzers
Metrohm Process Analytics has a long expertise in providing solutions for process analysis, process control, and process monitoring for any requirements and in all industries.
6.06002.114
OMNIS Client/Server: 25 instrument licenses25 instrument licenses for operating 25 additional OMNIS instruments in the OMNIS Client/Server system.The following instruments are supported:OMNIS instruments; Metrohm USB devices; RS-232 instruments (e.g., balance);
6.06003.010
OMNIS Stand-Alone licenseEnables stand-alone operation of the OMNIS software on a Windows™ computer.Features:The license already includes one OMNIS instrument license.; Must be activated via the Metrohm licensing portal.; Not transferable to another computer.;
6.06003.012
OMNIS stand-alone license with 2 instrument licensesEnables stand-alone operation of the OMNIS Software on a Windows™ computer.Features:The license already includes two OMNIS instrument licenses.; Must be activated via the Metrohm licensing portal.; Not transferable to another computer.;
6.06003.110
OMNIS Client/Server license with 1 instrument licenseEnables client/server operation of the OMNIS software.Features:The software license already contains one instrument license.; Permits operation of up to 500 OMNIS Clients on one OMNIS Server.; Must be activated via the Metrohm licensing portal.; Not transferable to another computer.;
6.06004.010
Software License Compliance/Regulation Stand-AloneSoftware license for the use of the compliance functions in connection with a Software Stand-Alone License.
6.06004.011
Software License Compliance/Regulation Client/ServerSoftware license for the use of the compliance functionalities in connection with an OMNIS Client/Server Software License. The compliance functionalities are available to all OMNIS Clients.
6.06004.020
Software license 3rd Party Data Integration Stand-AloneThe software license enables data exchange between the OMNIS Software and third party software (e.g., LIMS).This software license requires a valid software license for OMNIS Stand-Alone.
6.06004.120
Software license 3rd Party Data Integration Client/ServerThe software license enables data exchange between the OMNIS Software and third party software (e.g., LIMS).This software license requires a valid software license for OMNIS Client/Server. This functionality is available to all OMNIS Clients.
6.06006.000
Function license Upgrade Basic-AdvancedFunction license for the upgrade of one OMNIS Titrator: Basic to Advanced.
6.06006.010
Function license Upgrade Basic-ProfessionalFunction license for the upgrade of one OMNIS Titrator: Basic to Professional.
96X110GNP
96X Gold Nanoparticles modified Screen-Printed Carbon Electrode96X Gold Nanoparticles modified Screen-Printed Carbon Electrode. Formed by 96 three-electrode electrochemical cells. Gold plated contact paths are printed in the backside of the plate
96X110GNP-STR
96X Streptavidin modified Gold Nanostructured modified Screen-Printed Carbon Electrode96X Streptavidin modified Gold Nanostructured modified Screen-Printed Carbon Electrode. Formed by 96 three-electrode electrochemical cells. Gold plated contact paths are printed in the backside of the plate. The Streptavidin modification provides a stable high affinity surface for a large amount of biotinylated molecules.
96X110STR
96X Streptavidin modified Screen-Printed Carbon Electrode96X Streptavidin modified Screen-Printed Carbon Electrode. Formed by 96 three-electrode electrochemical cells. Gold plated contact paths are printed in the backside of the plate. Streptavidin provides a stable high affinity surface for a large amount of biotinylated molecules
96X110SWCNT
96X Single-Walled Carbon Nanotubes modified Screen-Printed Carbon Electrode96X Single-Walled Carbon Nanotubes modified Screen-Printed Carbon Electrode. Formed by 96 three-electrode electrochemical cells. Gold plated contact paths are printed in the backside of the plate
96X110XTR
96X Extravidin modified Screen-Printed Carbon Electrode96X Extravidin modified Screen-Printed Carbon Electrode. Formed by 96 three-electrode electrochemical cells. Gold plated contact paths are printed in the backside of the plate
96X220
96X Screen-Printed Gold Electrode96X Screen-Printed Gold Electrode. Formed by 96 three-electrode electrochemical cells. Gold plated contact paths are printed in the backside of the plate
96X550
96X Screen-Printed Platinum Electrode96X Screen-Printed Platinum Electrode. Formed by 96 three-electrode electrochemical cells. Gold plated contact paths are printed in the backside of the plate
X1110
Dual Screen-Printed Carbon ElectrodeDual Screen-Printed Carbon Electrode (1 Aux.: C; 1 Ref.:Ag). Aimed at detecting two signals simultaneously, allowing (differential) measurement of up to two analytes in the solution.
X1110AGNP
Silver Nanoparticles modified Dual Screen-Printed Carbon ElectrodeSilver Nanoparticles modified Dual Screen-Printed Carbon Electrode
X1110BI
Bismuth Oxide modified Dual Screen-Printed Carbon ElectrodeBismuth Oxide modified Dual Screen-Printed Carbon Electrode. Ideal for the environmental friendly determination of heavy metals at ppb levels.
- 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.
- Aug 22, 2022Electrochemistry in laminar and turbulent flow conditions using rotating electrodes
Electrochemical studies requiring hydrodynamic conditions can be performed with rotating working electrodes to create forced convection in the measurement cell. Both laminar flow and turbulent flow conditions are able to be created in laboratory settings in order for researchers to perform different studies.
- Oct 17, 2022Analyzing halogenated organic compounds with CIC according to DIN 38409-59
This blog article explains how per- and polyfluorinated alkyl substances (PFASs) and other halogenated organic compounds have been used over the past several decades, their effects on our health and the environment, and how to monitor and analyze these substances with combustion ion chromatography (CIC) according to the new DIN 38409-59 standard.
- Oct 31, 2022Raman spectroelectrochemistry from India to Spain: History and applications
One of the most interesting spectroelectrochemical techniques combines the fields of electrochemistry and Raman spectroscopy. Raman spectroelectrochemistry provides users with two different signals from the same experiment, acting as a powerful tool to collect even more knowledge about the analyzed system. Raman spectroelectrochemistry experiments are easily performed using SPELEC RAMAN, the only instrument on the market dedicated to performing such experiments.
- May 27, 2020Measuring herbicides in drinking water
How to measure glyphosate in drinking water using ion chromatography.
- Aug 24, 2020History of Metrohm IC – Part 2
Metrohm IC: Metrohm Suppressor Module, modular IC systems, amperometric detection, UV/VIS detection.
- Jan 15, 2024Pulp and paper QC and product screening with NIR spectroscopy
Paper products are primarily made from treated wood fibers processed through pulp and paper mills. This involves significant chemical use and energy consumption. Ensuring quality control throughout the production chain, from timber to the final paper product, is crucial. This blog article shows how near-infrared spectroscopy (NIRS) effectively monitors multiple key quality control parameters simultaneously during pulp and paper manufacturing.
- Feb 12, 2024Conductometric titration works where other methods struggle
Conductometric titration is based on the change of conductivity while adding a titrant. Principles, advantages, and examples of conductivity titration are discussed here.
- Mar 11, 2024High-frequency EIS: a powerful tool for the future of mobility
Electrochemical characterization of solid-state batteries can be difficult. Using electrochemical impedance spectroscopy (EIS) at high frequencies helps capture rapid processes.
- 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.
6.1005.030
Hamilton PRP-X300 - 250/4.0The Hamilton-PRP-X300 ion exclusion column is a cation exchanger column with low capacity. The combination of a polystyrene-divinylbenzene copolymer with sulfonic acid groups as ion exchanger is ideal for the solution of simple separation problems. This column features the possibility of determining the salts of organic acids, in particular the very sensitive determination of formate.
6.1050.450
Metrosep C 4 - 50/4.0The Metrosep C 4 - 50/4.0 is the shortest separation column in the Metrosep C 4 product range. With a capacity of 5 µmol (K+), it is particularly suitable for very rapid separations. The low capacity makes it possible to quickly analyze the earth alkaline metals with their delayed elution. Thanks to the short retention times, applications that, in terms of analysis duration, were previously possible only with an FIA system (Flow Injection Analysis system) can now be transferred over to ion chromatography.
6.1050.410
Metrosep C 4 - 100/4.0The 100 mm version of the Metrosep C 4 column is intended for rapid determinations of standard cations. Very short retention times are achieved; however the elution times of sodium and ammonium still differ by 25 s. When a special eluent is used, the six cations lithium, ammonium, sodium, calcium, magnesium and potassium can be determined in less than 5 minutes with the Metrosep C 4 - 100/4.0.
6.1050.420
Metrosep C 4 - 150/4.0The Metrosep C 4 - 150/4.0 is the universal standard column in cation analysis for accomplishing high separating efficiency in a short time. The Metrosep C 4 - 150/4.0 is the ideal separation column for the analysis of alkaline and earth alkaline metals in aqueous media.
6.1050.430
Metrosep C 4 - 250/4.0The Metrosep C 4 - 250/4.0 is the cation column with the greatest capacity in the C 4 series. It is predestined for applications which require the highest separating efficiency. Samples with extreme differences in concentrations can be analyzed reliably with this column. The performance capability of the column is demonstrated, for example, when analyzing feed water for which the requirement is the perfect quantification of 7 µg/L sodium in addition to 7 mg/L monoethanolamine (MEA). With the C 4 - 250/4.0, not only amines and transition metals, but also alkaline and alkaline earth metals can be determined in a single run.
6.1050.210
Metrosep C 4 - 100/2.0The short version of the Metrosep C 4 "Microbore" cation separation column with a 2 mm inner diameter is intended for rapid determinations of the standard cations. Very short retention times are achieved; however the elution times of sodium and ammonium still differ by 25 s. When a special eluent is used, the six cations lithium, ammonium, sodium, calcium, magnesium and potassium can be determined in less than 5 minutes with the Metrosep C 4 - 100/2.0. With its low eluent flow, this column is particularly suitable for IC-MS coupling.
6.1050.220
Metrosep C 4 - 150/2.0The Metrosep C 4 - 150/2.0 "Microbore" cation separation column is the universal standard column in cation analysis of "Microbore" separating columns. High separating efficiency in a short time. The Metrosep C 4 - 150/2.0 is the ideal separation column for the analysis of alkaline and earth alkaline metals in aqueous media. With its low eluent flow, this column is particularly suitable for IC-MS coupling.
6.1050.230
Metrosep C 4 - 250/2.0The Metrosep C 4 - 250/2.0 "Microbore" cation separation column is the cation column with the greatest capacity in the C 4 series with a 2 mm inner diameter. It is predestined for applications which require high separating efficiency. Samples with extreme differences in concentrations can be analyzed reliably with this column. The performance capability of the column is demonstrated, for example, when analyzing sodium traces in addition to monoethanolamine (MEA). With the C 4 - 250/2.0, not only amines and transition metals but also alkaline and alkaline earth metals can be determined in a single run. With its low eluent flow, this column is particularly suitable for IC-MS coupling.
6.1051.410
Metrosep C 6 - 100/4.0The 100 mm version of the Metrosep C 6 column is designed to determine standard cations, e.g. in drinking water. Excellent separation of sodium and ammonium is still achieved, despite the very short retention times. The higher capacity of the C 6 material permits larger sample volumes.
6.1051.420
Metrosep C 6 - 150/4.0The high-capacity C 6 material makes the Metrosep C 6 - 150/4.0 separation column the optimum solution for separating standard cations with high differences in concentration in conjunction with reasonable retention times. Drinking water with low ammonium contents can be determined with this column.
FLWCL8X1C
Flow Cell for 8X format Screen-Printed Electrodes 1 ChannelMethacrylate thin-layer Flow-Cell for performing simultaneus measuements in FIA. Suitable to be used with 8X format Screen-Printed Electrodes. Closing system with screws. Fittings included.
CFLWCL-CONIC
Cell for Screen-Printed Electrodes - Conical WellMethacrylate conic cell suitable to be used with standard format Screen-Printed Electrodes with the electrochemical cell in the middle of the strip. Closing system with powerful magnets.
DSC-P
Connector for plastic substrate Screen-Printed ElectrodesConnector suitable to connect DropSens plastic substrate SPEs to any kind of potentiostat. Recommended when working by placing a drop over the electrode
PDNP-COL
Colloidal Palladium Nanoparticles SolutionPalladium Nanoparticles are produced through colloidal synthesis methods, reducing a metal salt precursor in a solution and with the present of a stabilizer agent. Colloidal nanospheres Nanoparticles can be later purified and concentrated removing any stabilizing agent - Available in 25 mL.
CFLWCL-CONIC-TEF
Cell in Teflon for Screen-Printed Electrodes - Conical WellTeflon conic cell suitable to be used with standard format Screen-Printed Electrodes with the electrochemical cell in the middle of the strip. Closing system with powerful magnets.
CONNECT4W
Connector for 4W format Screen-Printed ElectrodesSuitable to connect 4W format Screen-Printed Electrodes to any kind of potentiostat
PDNP-PUR
Purified Palladium Nanoparticles SolutionPalladium Nanoparticles are produced through colloidal synthesis methods, reducing a metal salt precursor in a solution and with the present of a stabilizer agent. Colloidal nanospheres Nanoparticles can be later purified and concentrated removing any stabilizing agent - Available in 1.0 mL.
CONNECT8W
Connector for 8W format Screen-Printed ElectrodeSuitable to connect 8W format Screen-Printed Electrodes to any kind of potentiostat
HPLCELL
HPLC Cell for Screen-Printed ElectrodesCell in PEEK designed for working in High-Performance Liquid Chromatography systems. Suitable to be used with standard format Screen-Printed Electrodes with the electrochemical cell in the middle of the strip.
PTNP-COL
Colloidal Platinum Nanoparticles SolutionPlatinum Nanoparticles are produced through colloidal synthesis methods, reducing a metal salt precursor in a solution and with the present of a stabilizer agent. Colloidal nanospheres Nanoparticles can be later purified and concentrated removing any stabilizing agent - Available in 25 mL.
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Find information on compatibility and download the MagIC Net ion chromatography software as well as language packs.
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The Metrohm IC Driver 2.2 for Empower 3 enables the integration of Metrohm IC instruments in the software Empower 3 from Waters. Learn about the compatibility with Windows OS and find more information in applications notes.
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- 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.
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Metrohm is pleased to welcome two new members to the Metrohm family: Metrohm Korea and Metrohm Portugal. These new subsidiaries allow us to strengthen our presence in these two markets and provide the best possible service and support to our customers.
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- 8.000.52208.000.5220Brochure: Biogas production – reliable online, inline, and atline analyzers for waste recycling
Constant monitoring in biogas production is indispensable for reducing waste while at the same time increasing profits. Metrohm Process Analytics provides you with a variety of analyzers and methods for that purpose.
English
- 8.000.52228.000.5222Brochure: Online measuring instruments for power plant analysis – Monitoring and protection against corrosion
In power plants, corrosion is the primary factor leading to costly and critical outages. The water steam cycles in fossil and nuclear power plants are inherently prone to corrosion, as metal components are constantly in contact with water. Measures to monitor or prevent corrosion are crucial in this context. Metrohm offers a range of instruments and methods for measuring parameters related to corrosion.
English
- 8.000.52238.000.5223Brochure: Electrocatalysis – Complete solutions for electrocatalysis and forced convection measurements.
The present brochure presents products which are used either with electrocatalysis or for forced convection measurements.
English
Other languages
- 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.
English
Other languages
- 8.000.52258.000.5225Brochure: The kappa number, the density and the strength parameter in wood pulps – Rapid and simple determination with near-infrared spectroscopy
Paper quality is largely dependent on the physical and chemical properties of the wood pulp. The kappa number, the density and other parameters were often determined in the past using time-intensive analyses. The solution described here offers you a number of advantages over the conventional method. The present brochure describes the application possibilities of NIR instruments in the paper and wood pulp industry.
English
- 8.000.52278.000.5227Brochure: Semiconductor industry – Reliable online, inline and atline solutions for your process requirements.
Integrated connections are an essential part of modern electronic devices. The present brochure describes the application possibilities and advantages of Metrohm process analysis instruments in the semiconductor industry.
English
- 8.000.52288.000.5228Datasheet: Mira M-3 portable Raman spectrometer
The Mira M-3 Raman spectrometer is a robust and reliable, portable spectrometer for material identification and verification. The present datasheet shows the different specifications of the Mira M-3 Raman spectrometer.
English
- 8.000.52298.000.5229Brochure: Textile industry – Reliable online, inline, and atline solutions for your process analytics requirements.
An enormous array of clothing and other articles made of textiles are available on the market, manufactured from either natural or synthetic fibers. These fibers are later dyed and, depending on the material, specific dyeing techniques are used. Continuous quality tests and analyses are required for optimum performance of these techniques. This brochure provides you with insights into the different analyses.
English
- 8.000.52318.000.5231Brochure: One-stop-shop for spectroelectrochemistry
This brochure provides further information about the Autolab Spectrophotometer. Autolab supplies the complete spectroscopy setup as well as the electrochemical instruments with total flexibility in choice of potentiostat, all controlled from the NOVA software package.
English
- 8.000.52328.000.5232Brochure: Total solutions for electrocatalysis research
This brochure provides further information about solutions for electrocatalysis research. Two options, ECAT-Compact and ECAT-Complete, are now available.
English