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7650HS-CTS Large Volume Static Headspace System - Agilent Technologies

Brochures and specifications | 2019 | ENTECHInstrumentation
GC/MSD, HeadSpace
Industries
Manufacturer
Agilent Technologies, ENTECH

Summary

Importance of the Topic


The analysis of volatile and semi-volatile compounds in complex matrices such as food, fragrance, environmental samples and forensic evidence is critical for quality control, regulatory compliance and product development. Large volume static headspace sampling offers a quantitative “snapshot” of the vapor phase composition as experienced by a consumer or investigator. By recovering both the lightest and the heaviest analytes with minimal reactivity or carryover, this approach provides a complete chemical profile for improved decision making.

Goals and Overview of the Study


This document introduces the 7650HS-CTS large volume static headspace system featuring Multi-Capillary Column Trapping technology. The objectives are to describe system design, sampling methodology and performance characteristics and to illustrate applications in flavor and fragrance chemistry, product testing and forensic accelerant detection.

Methodology and Instrumentation


The 7650HS-CTS operates by incubating samples in sealed vials under controlled temperature and optional agitation until headspace equilibrium is achieved. Headspace volumes from 1 to 1000 cc are withdrawn and directed through successive capillary column traps that concentrate analytes boiling from minus fifty degrees up to over four hundred degrees Celsius. Water vapor and carrier gas pass through unretained. Trapped compounds are backflushed directly onto a GCMS analytical column in splitless mode. A septumless Micro-QT valve provides a vacuum-tight interface for repeated sampling without coring or septum degradation. A mixing oven supports rapid equilibration from ambient to one hundred degrees Celsius. The system is compatible with one and two dimensional GCMS instruments and accommodates vial sizes from twenty milliliters to one liter.

Main Results and Discussion


Performance evaluations demonstrate quantitative recovery of analytes across the full volatility range with detection limits in the parts per trillion to parts per billion range and extremely low carryover. Representative analyses include headspace profiling of white rose petals, pomegranate juice, honey and rum. In each case a small headspace volume is used to screen aroma significant compounds by GC-olfactometry followed by larger volume quantitation of targeted compounds by GCMS. The capillary trapping approach avoids the long equilibration times and bias toward heavier compounds associated with passive fiber extraction. High ethanol matrices are managed by forward flushing or solvent delays in the mass spectrometer.

Benefits and Practical Use of the Method

  • Quantitative headspace analysis reflecting the consumer sensory experience
  • Uniform recovery of light and heavy volatiles with minimal reactive losses
  • High throughput sampling from 1 to 1000 cc headspace volumes
  • Compatibility with a wide range of sample matrices including high ethanol content
  • Improved detection limits for trace analytes in forensic and environmental applications
  • Reduced water interference and low carryover for reliable quantitative data

Future Trends and Possibilities of Use


The integration of large volume static headspace with two dimensional chromatography and high resolution mass spectrometry is expected to further enhance compound separation and identification in complex matrices. Advances in automated sample handling, real-time data processing and miniaturized headspace modules may enable in-field screening for environmental monitoring or on-line process control. Emerging applications include clinical breath analysis, indoor air quality assessment and rapid screening of flavor and fragrance raw materials.

Conclusion


The 7650HS-CTS static headspace system with Multi-Capillary Column Trapping offers a robust, quantitative and sensitive solution for comprehensive headspace analysis. By delivering complete recovery of volatiles and semi-volatiles across a wide boiling point range, the system empowers researchers and analysts with accurate chemical profiles for product development, quality assurance and forensic investigations.

References


No specific literature references were cited in the original document.

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