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A novel high resolution accurate mass Orbitrap-based GC-MS platform for routine analysis of Short Chained Chlorinated Paraffins

Applications | 2017 | Thermo Fisher ScientificInstrumentation
GC/MSD, GC/MS/MS, GC/HRMS, GC/Orbitrap
Industries
Environmental
Manufacturer
Thermo Fisher Scientific

Summary

Significance of the Topic


Short chained chlorinated paraffins (SCCPs) are persistent organic pollutants used in industry as lubricants, coolants, flame retardants and plasticizers. Their environmental persistence and bioaccumulation pose health risks, leading to regulatory restrictions under the Stockholm Convention. Reliable monitoring of SCCPs at trace levels is therefore critical for environmental protection and compliance.

Objectives and Study Overview


This study evaluates a novel bench-top Orbitrap-based GC-MS platform for routine SCCP analysis. Key goals included assessing sensitivity, dynamic range, selectivity and precision for two technical SCCP mixtures (63% and 55.5% chlorine) using full-scan acquisitions in both electron ionization (EI) and negative chemical ionization (NCI) modes.

Methodology and Instrumentation


The analytical setup comprised a Thermo Scientific Exactive GC Orbitrap mass spectrometer coupled to a TRACE 1310 gas chromatograph equipped with a TraceGOLD TG5-SilMS column (15 m × 0.25 mm × 0.25 µm) and TriPlus RSH autosampler. The MS was calibrated with PFTBA for sub-ppm mass accuracy and operated at 60 000 FWHM (m/z 200) in full-scan (50–650 Da for EI; 200–550 Da for NCI). Lockmass correction and data processing were performed in TraceFinder software.

Main Results and Discussion


  • Sensitivity: EI detection limits of ~10 pg/µL total SCCP and NCI limits as low as 3 pg/µL for individual homologues.
  • Linearity: Excellent linearity (R2 > 0.99) over 1–10 000 pg/µL for both modes; individual congeners in NCI yield R2 > 0.999.
  • Selectivity: High resolving power (>30 000) and sub-ppm mass accuracy are essential to resolve SCCP ions from background and co-eluting interferences such as PCBs, enabling narrow extraction windows and accurate quantification.
  • Mass Accuracy: Maintained <1 ppm across low and high concentrations, preventing false identifications and ensuring reliable quantitation.

Benefits and Practical Applications


  • Routine environmental monitoring of SCCPs at trace levels with high confidence.
  • Capability to differentiate homologues and isomers in complex mixtures without elaborate sample preparation.
  • Wide dynamic range supports diverse concentration levels encountered in environmental samples.

Future Trends and Potential Uses


  • Expansion to other persistent organic pollutants and emerging contaminants using high-resolution GC-MS workflows.
  • Integration with isotope dilution techniques for absolute quantification.
  • Automation and miniaturization of sample preparation to improve laboratory throughput.
  • Development of standardized methods for regulatory monitoring based on high-resolution accurate mass data.

Conclusion


The Orbitrap-based Exactive GC platform delivers exceptional sensitivity, selectivity and mass accuracy for SCCP analysis. Its robust performance in both EI and NCI modes, combined with simple instrumental setup, makes it a valuable tool for routine environmental monitoring and regulatory compliance.

References


  1. Geng N, Zhang H, Zhang B, Wu P, Wang F, Yu Z, Chen J. Effects of short-chain chlorinated paraffins exposure on the viability and metabolism of human hepatoma HepG2 cells. Environ Sci Technol. 2015;49(5):3076–3083. doi:10.1021/es505802x.
  2. European Commission. Commission Regulation (EU) No 519/2012. Off. J. Eur. Union L159:1–4, 2012.

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