High-Throughput Volatile Compound Analysis for the Testing Laboratory Using Direct MS

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Presenters
MarkPerkins_Work.pngMark Perkins (Anatune, UK)


VaughanLangford_Hub.pngVaughan Langford
(Syft Technologies, New Zealand)

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Conventional laboratory analysis of volatile compounds typically utilizes chromatography-based techniques, which are slow and frequently require extensive sample preparation. By utilizing soft chemical ionization, SIFT-MS provides direct, rapid sample analysis with no or minimal sample prep required. When coupled with autosampler technology, SIFT-MS yields very high sample throughputs (in excess of 100 samples per hour), including for challenging compounds like ammonia, formaldehyde, and hydrogen sulfide.

Very high-throughput headspace and gas analysis provides new opportunities for both contract and R&D laboratories serving a range of industries, from environmental monitoring to food testing to pharma. It can also speed up method development for traditional techniques.

Watch this on-demand presentation to learn more about how SIFT-MS works and how its automation speeds routine analyses by up to 25-fold. Applications include:

  • Aldehyde analysis in air and headspace
  • Residual solvent analysis in packaging and pharmaceuticals
  • Residual monomer analysis in polymers.

By viewing this on-demand event you will learn...

  • The fundamentals of the selected ion flow tube mass spectrometry (SIFT-MS) technique, including its ability to selectively and comprehensively analyse samples in one simple procedure.
  • How automating SIFT-MS analysis can revolutionize analysis of organic and inorganic volatiles, delivering competitive advantage through time and cost savings.
  • How automated SIFT-MS turns headspace techniques that are cumbersome with chromatography (e.g., multiple headspace extraction) into practical, economical methodologies.
SIFT-MS revolutionizes gas and headspace analysis. This webinar will show how its application can deliver competitive advantage in your laboratory because of high sample throughput and its ability to analyse chromatographically challenging species.

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