Thermo Fisher Scientific has developed efficient high-performance liquid chromatography (HPLC) methods combined with ultraviolet detection to determine carbonyl compounds found in vehicle passenger cabin air samples.
Thermo Fisher Scientific has developed an accurate and reproducible method that uses an innovative ion chromatography system for the determination of methylamine (or monomethylamine, MMA) in drug products.
Thermo Fisher Scientific has developed an ion chromatography(IC)-based method for the accurate determination of ammonia in tobacco smoke. Ammonia is on the U.S. Food and Drug Administration’s (FDA) list of toxic compounds in tobacco smoke.
Thermo Fisher Scientific has developed a simple and accurate method to quantify four key antibiotics in dried distillers grains with solubles (DDGS) using high-performance liquid chromatography with charged aerosol detection.
A set of application notes from Malvern Instruments demonstrates the sample integrity, flexibility and lack of cross contamination during automated, rapid screening of protein samples using the Zetasizer Auto Plate Sampler (APS) dynamic light scattering (DLS) system.
Thermo Fisher Scientific has developed an accurate and reproducible ion chromatography (IC) method that uses suppressed conductivity detection to determine manganese in the simulated electrolyte of a lithium/lithium manganese oxide battery.
Thermo Fisher Scientific has developed an efficient high-performance liquid chromatography (HPLC) method using ultraviolet detection for the simultaneous determination in drinking water of all 19 phthalate compounds listed in key environmental regulatory documents.
Thermo Fisher Scientific has developed an ion chromatography method for nuclear power plants (NPPs) that determines trace concentrations (less than 1 µg/L) of fluoride, chloride, and sulfate in simulated secondary feed water that contains ethanolamine, hydrazine, and polyacrylic acid in just 20 minutes.
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