研讨会

Live Webinar: Evolved Gas Analysis with TGA

Hyphenate Thermogravimetric Analysis to Characterize Volatiles and Decomposition Products

活动概述

  • Why use evolved gas analysis (EGA)?
  • Principles of TGA-EGA
  • MS, FTIR, GC/MS, and Micro-GC/MS techniques
  • Practical application examples and result evaluation
  • Live Q&A with our experts

Understanding the gases released from a sample during heating can provide valuable insights into material composition and behavior. This webinar introduces the principles and benefits of evolved gas analysis and demonstrates how it can support the investigation of volatile compounds and decomposition products.

Register today to explore TGA-EGA techniques, discover practical applications, and ask our experts your questions during the live Q&A.

What Is a Hyphenated TGA-EGA System?

Thermogravimetric analysis (TGA) measures changes in the mass of a sample as a function of temperature or time. TGA alone, however, cannot identify the gaseous products evolved during a measurement.

Evolved gas analysis is performed by coupling a TGA instrument with a gas analysis system, creating a combined TGA-EGA system. This allows evolved gases to be analyzed online and correlated with thermal events such as evaporation, desorption, decomposition, and other chemical reactions.

The main techniques used for TGA-EGA include:

  • MS (mass spectrometry)
  • FTIR (Fourier-transform infrared spectroscopy)
  • GC/MS (gas chromatography–mass spectrometry)
  • Micro-GC/MS

The additional information provided by TGA-EGA supports a better understanding of material composition and behavior, helping inform decisions in laboratory and production environments.

Industries and Applications

EGA is used across many industries where understanding evolved gases can be critical, including automotive, chemicals, plastics, and pharmaceuticals. Applications are diverse, such as detecting residual solvents in pharmaceutical ingredients, studying the pyrolysis of PVC, and determining the composition of unknown rubbers.

Join the webinar to deepen your understanding of TGA-EGA and gain practical insights from our experts.

Expert

Image of Angela Hammer

Angela Hammer

Dr. sc. nat. ETH

Dr. Angela Hammer received a Ph.D. in Analytical Chemistry (development of immobilized components for the use in ion-selective electrodes based on polyurethane membranes) from the Institute of Organic Chemistry at the Swiss Federal Institute of Technology in Zürich, Switzerland. She then joined Sika Technology AG in Zurich, Switzerland, as an analytical chemist. In 2007, she joined METTLER TOLEDO and has worked there since as an application specialist for Thermal Analysis. In her present position, she uses, teaches, and supports DSC, TGA, TMA, and DMA instruments for the METTLER TOLEDO’s Materials Characterization Group located at the head office in Switzerland.

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