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PEGASUS HT-C and PEGASUS 4D-C

Brochures and specifications | 2016 | LECOInstrumentation
GCxGC, GC/MSD, GC/TOF
Industries
Manufacturer
LECO

Summary

Importance of Comprehensive GCxGC-TOFMS Analysis


Complex environmental, petrochemical and biological samples contain hundreds to thousands of components that coelute in one-dimensional gas chromatography. Comprehensive two-dimensional GC (GCxGC) coupled with time-of-flight mass spectrometry (TOFMS) addresses these challenges by providing superior separation, peak capacity and detection sensitivity. This capability underpins modern analytical tasks in petrochemical characterization, food safety, environmental monitoring and quality control.

Objectives and Study Overview


The whitepaper introduces two advanced instruments, the Pegasus HT-C and Pegasus 4D-C GCxGC-TOFMS systems, designed to deliver high resolution, speed and robustness. It aims to demonstrate how updated electronics, thermal modulators and optimized software control enable unmatched throughput and data quality in challenging sample analyses.

Methodology and Instrumentation


Instrument operation is fully integrated through a single software platform. Key methodological elements include:
  • Orthogonal GCxGC separation using a primary column and a secondary column inside a dual-stage thermal modulator.
  • Cryo-focusing in the thermal modulator to sharpen analyte bands before the second dimension.
  • Continuous full-range mass spectral acquisition up to 500 spectra per second.
  • Automated data acquisition and processing via ChromaTOF software, including true signal deconvolution.

Key Results and Discussion


  • The Pegasus 4D-C system increased detected analytes in a complex petroleum sample from 678 (1D GC-MS) to over 1,200 in GCxGC-TOFMS.
  • Variable modulation capability adapts modulation periods in real time to maximize separation efficiency for late-eluting compounds.
  • Trimethylbenzene peaks of 150 ms width were clearly defined at acquisition rates above 200 Hz, highlighting TOFMS data density.
  • Structured contour plots revealed distinct chemical class groupings in diesel fuel, simplifying qualitative characterization.

Practical Benefits and Applications


  • Enhanced trace-level quantitation in complex matrices, demonstrated by 4,4′-DDE pesticide calibration from 0.2 pg to 1,000 pg on column.
  • Matrix separation in cucumber extract enabled reliable detection of target analytes that were otherwise obscured in 1D GC-MS.
  • Automated peak finding, deconvolution and quantitative reporting reduce manual data processing time and improve laboratory productivity.

Future Trends and Potential Uses


  • Continued integration of machine learning algorithms within data processing to enhance peak annotation and reduce false positives.
  • Expansion of GCxGC-TOFMS in metabolomics, natural product research and forensic analysis, exploiting high peak capacity and dynamic range.
  • Development of consumable-free modulators and maintenance-free sources to lower operating costs and downtime.
  • Enhanced compliance features to support regulated environments under 21 CFR Part 11.

Conclusion


The Pegasus HT-C and 4D-C systems represent a major advancement for comprehensive GCxGC-TOFMS analysis, delivering exceptional resolution, speed and automation. Their combined hardware and software innovations address the demands of complex sample characterization across diverse scientific and industrial fields.

Použitá instrumentace


  • Pegasus HT-C GC-TOFMS
  • Pegasus 4D-C GCxGC-TOFMS with dual-stage thermal modulator
  • ChromaTOF data acquisition and processing software
  • GC autosampler and primary and secondary GC ovens
  • Turbomolecular pumps and maintenance-free ion source

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