Advances in Gas Chromatography for Challenging Separation in Environmental and Food Industry 

Date: 18. November 2020 | Time: 14:30 GMT | 15:30 CET
Modern regulations emphasize analytical methods capable of separating critical analyte pairs, for identification as well as quantitation. In order to meet separation goals and to exceed regulatory requirements, new and unique gas chromatography (GC) column selectivities are now essential. In this presentation, we will explore advances in GC column selectivity and method development tips that help provide solutions to challenging chromatographic problems. A variety of important and popular analytical methods across environmental and food testing will be explored, such as:

Environmental Applications:
  • A fast, single column separation of Dioxins and substituted furans on specially designed Dioxin Phase
  • Fast analysis of PAH and PCBS using unique GC column selectivity
  • Overcoming challenges in semivolatile organic compounds Analysis
  • Purgeable Organic Compound analysis on a MS certified 624 Phase
Food Testing Applications:
  • Fast fatty acid methyl esters (FAMEs) analysis 
  • Column Selectivity for Multiclass pesticide analysis
  • Fast PAH and PCB separation in food
Key Learning Objectives
  • Learn about new GC solutions for Environmental and Food Testing
  • Learn how to utilize novel GC column selectivities during method development
  • Learn how optimize GC method for cannabis Terpenes and residual solvents on a single column
  • Evaluate new GC column selectivites to test for Dioxins, PAHs, Pesticides, semivolatiles and volatiles by GC 
Who Should Attend
  • GC, GC-MS Method Development Scientists that are interested in optimizing POPs  (Persistent Organic Pollutant) method
  • Scientists in Environmental, and Food labs that are looking to increase the performance and productivity of their GC analytical methods
  • Chromatographers who are looking to improve their current residual solvent and organic volatile GC method with an alternative column or technique for faster and better separation
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