Environmental Analysis

The Essentials of Air Sampling from Strategy to Solutions

If you're looking for a course that will guide you, the user, from the strategy decision to the sample media selection process using a workflow approach for air monitoring methods, this on-demand webinar will meet your needs. For further details and...

Ion chromatography - straightforward cation analysis at trace levels

Trace analysis of cations, amines, and transition metals by ion chromatography can be carried out with or without ion suppression. However, some applications require particularly a highly sensitive analysis. Read this article from Issue 9 of the ...

Coulometric Titration— Faster and More Efficient

This article from Issue 10 of the Analytix Reporter, produced by Merck, introduces a new Aquastar® coulometric reagent for water determination by Karl Fischer titration. The new coulometric Anolyte for cells without a diaphragm makes the titration...

Addressing the analytical challenges of persistent and mobile organic chemicals in the aquatic environment

Would you like to learn more about the analytical challenges related to the analysis of very polar and persistent mobile compounds in drinking water? If so, register for this upcoming webinar, which is the fourth episode of the #WatersForWater Blue...

Low-cost determination of anions in municipal drinking water

This application brief outlines how the integrated Thermo Scientific Dionex Easion IC system coupled with the Dionex AS-DV autosampler provides a simple and low-cost instrument setup for routine determination of inorganic anions in drinking water.

Low-cost determination of cations and ammonium in environmental waters

This application brief outlines the determination of cations and ammonium in environmental waters using a Thermo Scientific Dionex IonPac CS16 column on a Dionex Easion IC system in DCR mode.

Case study: How one city improved its testing and supply of drinking water

Read how the City of Atlanta Department of Watershed Management found automated methods using a Thermo Scientific Gallery Plus discrete analyzer to reliably test and supply safe drinking water. 

Achieve automated nutrient analysis and water quality monitoring

For laboratories that perform routine process water, drinking water and wastewater analysis, Thermo Scientific™ Gallery™ discrete analyzer systems provide increased throughput while lowering the cost per sample for environmental analysis. This...

Fast, direct analysis of disinfection byproducts

Read how the Erie County Public Health Laboratory addressed the challenges associated with quantitation of target disinfection by-products DBPs in drinking water per U.S. EPA Method 557 by adopting IC-MS/MS.

Analysis of PFAS in drinking water

Do you need some help with PFAS testing? If so, this on-demand webinar provides solutions in line with the updated method, EPA 533 and explains what measures can be taken to mitigate external contamination sources.

IC method for trace borate determination in high-purity waters

This study demonstrated the determination of trace borate in high-purity waters using ion-exclusion chromatography and suppressed conductivity detection. This method offers an integrated solution of trace level boron as borate.

Sample Clean-up for Persistent Organic Pollutants

Looking to improve your sample clean-up of for the analysis of persistent organic pollutants (POPs) such as pesticides, PCBs and PAHs by GC? If so, view this on-demand webinar to find out more...

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Improve Energy Laboratory Productivity through Pre-configured Software Solutions

This on-demand webinar describes how optimizing downstream processes, with SampleManager LIMS software Refinery Solution, can increase refinery laboratory productivity.

Determination of PFAS in aqueous samples by combustion IC

This application note demonstrates an automated method to determine a range of perfluorinated alkyl substances (PFAS) by combustion IC within environmentally relevant matrices and compare results with existing highly specific methods based on...

Extraction and analysis of poly- and perfluoroalkyl substances (PFAS) from soil

This application note demonstrates how accelerated solvent extraction can extract a variety of PFAS from soil including acids, sulfonates, fluorotelomer sulfonates, and sulfonamide compounds.

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