Plasmion SICRIT® GC/SPME Module

Brochures and specifications | 2020 | PlasmionInstrumentation
SPME
Industries
Manufacturer
Plasmion

Summary

Significance of the Topic


The integration of advanced ionization techniques with versatile sample introduction methods addresses critical needs in trace-level analysis. By combining solid phase microextraction (SPME), headspace and liquid injection with a soft ionization source, analytical workflows achieve higher sensitivity, quantitative accuracy and reduced analysis times. This capability is essential for routine screening of environmental contaminants, forensic explosives detection and pharmaceutical residue analysis.

Objectives and Overview of the Product Note


This product note introduces the SICRIT® GC/SPME Module, designed to extend the functionality of a SICRIT® Ion Source. Major aims are to:
  • Enable direct injection of headspace and liquid samples for fast mass spectrometric screening without chromatography.
  • Combine SPME enrichment with SICRIT® ionization for automated, quantitative analyses of complex matrices.
  • Facilitate seamless coupling of gas chromatography (GC) systems to existing liquid chromatography-mass spectrometry (LC-MS) platforms.

Methodology and Instrumentation


The GC/SPME Module features a custom vaporizer unit that thermally desorbs analytes into a controlled carrier gas stream, ensuring lossless transfer into the SICRIT® Ion Source. Key methodological aspects include:
  • Defined atmosphere via make-up gas supply (air, N₂, CO₂, He) maintaining analyte integrity.
  • Thermal desorption up to 320 °C with adjustable temperature control.
  • Compatibility with manual or automated sample introduction using a CTC PAL autosampler.

Applied Instrumentation


The system comprises:
  • SICRIT® GC/SPME Module (110×50×50 mm, 0.5 kg)
  • SICRIT® Control Unit SC-30 for power, temperature and carrier gas regulation
  • CTC PAL autosampler for automated SPME and liquid/headspace injections
  • Interface hardware for GC coupling and heated transfer lines

Key Results and Discussion


Performance highlights:
  • Direct injection of headspace or liquid samples yields fully quantitative results within minutes, ideal for high-throughput explosive screening.
  • SPME-SICRIT®-MS achieves limits of detection in the low parts-per-trillion (ppt) to parts-per-quadrillion (ppq) range with linear dynamic ranges exceeding three orders of magnitude.
  • Seamless GC-MS coupling on LC-MS instruments preserves existing software workflows and allows direct transfer of multiple reaction monitoring (MRM) methods from LC to GC analyses.
  • Soft ionization supports non-targeted screening of alkanes, PCBs, PAHs, phthalates, FAMEs and PFOAs with high resolution MS, facilitating automated identification against LC-MS libraries.

Benefits and Practical Applications


The GC/SPME Module offers:
  • Reduced sample preparation and analysis time through direct and automated sampling.
  • Lower operational costs by eliminating extensive chromatography for routine screening.
  • Quantitative trace analysis across environmental, forensic and pharmaceutical sectors.
  • Compatibility with existing LC-MS assets for expanded GC applications without software changes.

Future Trends and Possibilities


Emerging developments may include:
  • Integration of AI-driven method optimization for automated parameter tuning.
  • Miniaturized and portable setups for on-site environmental monitoring and security screening.
  • Expanded SPME fiber chemistries targeting novel analyte classes in complex matrices.
  • Enhanced high-throughput workflows via multiplexed autosampler configurations.

Conclusion


The SICRIT® GC/SPME Module represents a versatile, high-performance interface that streamlines mass spectrometric analysis of volatile and semi-volatile compounds. Its ability to deliver rapid, fully quantitative results with minimal chromatography makes it a valuable tool for modern laboratories focused on trace analysis and non-target screening.

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