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Separation Science
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Separation Science je přední online zdroj metod, aplikací, řešení problémů a školení v chromatografii a hmotnostní spektrometrii.
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GC–MS Sampling Strategies for VOCs in Air

St, 29.4.2026 11:00 CEST
Odborníci z Markes prozkoumají osvědčené strategie, jak zajistit spolehlivé odběry vzorků těkavých organických látek pomocí kanystrů, sorpčních trubiček a metod online monitorování.
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Markes International: GC–MS Sampling Strategies for VOCs in Air
Markes International: GC–MS Sampling Strategies for VOCs in Air

Air quality monitoring presents several challenges, from capturing highly volatile compounds without loss, to ensuring representative sampling across complex ambient, indoor, industrial, and emissions environments. Variability in concentration levels, humidity effects and matrix interferences all place pressure on laboratories to choose the right sampling technique to secure accurate, trace‑level data.

In this webinar, Markes experts will address these challenges, exploring proven strategies to tackle complexity and achieve reliable VOC sampling using canister, sorbent tube, and online monitoring approaches. The speakers will demonstrate how the right sampling strategy is essential to high quality results for GC and GC–MS workflows, highlighting the importance of selecting appropriate sorbents, flow conditions, and sampling durations to ensure trace-level sensitivity, method robustness and data integrity.

You will learn how to achieve confident VOC detection, regulatory compliance, and a more detailed understanding of air sampling environments and considerations across various applications.

By attending this webinar, you will:

  • Learn how thermal desorption works to enhance trace sensitivity and enables robust, high-performance analysis for VOCs in air.
  • See how to comply with standard methodology such as US EPA TO-15, TO-17, and PAMS, in addition to new methods for emerging contaminants.
  • Understand the considerations for the sampling environment, the differences between sample collection techniques, and how to choose the right approach for each application. 
  • Gain practical guidance for selecting sorbents and fine-tuning parameters such as flows and sampling durations, to ensure method reliability. 
  • Discover how Markes’ technologies support regulatory requirements and maximize data quality across ambient, indoor, industrial, and emissions monitoring.

Who should attend?

  • Scientists, GC-MS analysts in air monitoring labs
  • Laboratory managers 
  • Environmental consultants
  • Air quality professionals
  • In-vehicle air quality specialists

Presenter: Caroline Widdowson (Director of Scientific Affairs, Markes) 

Dr Caroline Widdowson is a specialist in the sampling and analysis of trace-level volatile and semi-volatile organic compounds in solids, liquids and gases. She holds a PhD in Organic Chemistry and an MBA. She is currently Director of Scientific Affairs at Markes, an advanced analytical instrument manufacturer.

Caroline works closely with international standards organizations, regulators, and scientific groups, supporting countries in the development of practical and reliable sampling and analytical methods. She is Chair of the UK national standards committee (BSI) for Indoor Air Quality and Convenor of ISO committee working groups that develop international standards for the measurement of VOCs in ambient, indoor, and in-vehicle air.

Presenter: Rachael Szafnauer (Product Marketing Manager, Markes)

Rachael Szafnauer received an M.Sci in forensic science from the University of South Wales, UK, where her final-year project focused on fingerprinting emerging psychoactive substances using advanced techniques such as GCxGC–TOF MS, in collaboration with Markes. She later took up the role of thermal desorption product specialist at Markes, providing technical and application support to the commercial team, before taking on her current role as Product Marketing Manager for the Centri product line and specializing in the development of applications using extraction and enrichment techniques for GC–MS.

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