Quantitative Odour Monitoring: Source to Fenceline Analysis
Using Direct MS

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This webinar is now available in on-demand format - to register complete the form right.

Duration: Approximately 60 minutes

Presenters:
VaughanLangford_Hub.pngVaughan Langford (Director of Applications and Marketing, Syft Technologies)

JamesOlerenshaw.pngJames Olerenshaw
(Applications Scientist, Syft Technologies)

Register for this on-demand learning event...

Instrumental odour analysis is challenging due to the chemical diversity of many important odorants (and their short lifetime in sampling media), the high sensitivity required, and the dynamic nature of the odour itself (due, for example, to changing wind conditions or human activity). Conventional sensor-based and chromatographic technologies are poorly suited to the task.

Selected ion flow tube mass spectrometry (SIFT-MS) is a revolutionary direct mass spectrometric technology that provides comprehensive real-time odour analysis through detection and quantitation of all odorants (e.g., aldehydes, amines, organosulfur compounds, and volatile fatty acids).

Please register for this presentation, which will provide a variety of SIFT-MS-based odour monitoring applications, including:

  • Odour source characterisation
  • Continuous odour monitoring
  • Evaluation of odour mitigation technologies.

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

  • The fundamentals of the selected ion flow tube mass spectrometry (SIFT-MS) analytical technique, including its ability to sensitively detect diverse odorants.
  • How SIFT-MS compares with traditional odour measurement techniques – both instrument and human.
  • How SIFT-MS can provide enhanced odour analysis, from profiling odour sources to fenceline monitoring.

Why should you view this presentation?

By applying direct, ultra-soft chemical ionisation, the SIFT-MS technique quantifies all relevant odour-nuisance compounds in a single, rapid analysis. This presentation will demonstrate how application of SIFT-MS:

  1. Easily fingerprints odour sources, facilitating easier identification when incidents occur.
  2. Enables real-time monitoring of odour hotspots, facilitating rapid response to incidents and providing objective responses to complaints.
  3. Removes human subjectivity through comprehensive, quantitative and reproducible odorant analysis.

Who should view this presentation?

  • Odour specialists
  • Sensory scientists
  • Environmental engineers and scientists
  • Process engineers
  • Analytical chemists
  • Laboratory Managers / Directors / Supervisors
  • Researchers / R&D Managers

To register for this on-demand webinar please complete the form opposite.

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