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The Benefit of Field-Portable GC/MS for the Rapid Characterization of a Suite of Organochlorine Pesticides in Black Tea Samples

Applications | 2017 | PerkinElmerInstrumentation
GC/MSD, SPME, GC/IT
Industries
Food & Agriculture
Manufacturer
PerkinElmer

Summary

Importance of the Topic


Rapid on-site detection of hazardous organic compounds is critical for environmental monitoring, food safety, and public health. Conventional laboratory-based gas chromatography–mass spectrometry (GC/MS) methods offer high sensitivity and specificity but require complex infrastructure. Field-portable GC/MS systems bridge this gap by delivering near–laboratory-grade analytical performance in remote or resource-limited settings.

Objectives and Study Overview


This technical note evaluates a novel field-portable GC/MS platform (Torion T-9) coupled with rapid sampling modules to characterize a suite of seven organochlorine pesticides in black tea samples. The primary goals were to demonstrate:

  • Analysis times under ten minutes per sample.
  • Separation and identification of high-boiling‐point organochlorine compounds.
  • Ease of use with minimal sample preparation in the field.

Methodology and Instrumentation


Tea Extraction and Spiking:
Twenty grams of dry black tea were steeped in 500 mL hot water for four days at 22 °C. Aliquots (15 mL) of the extract were spiked at three concentration levels (samples A, B, C) with seven target pesticides (benfluralin, lindane, heptachlor, chlorthal dimethyl, heptachlor epoxide, endrin, methoxychlor) covering boiling points from 275 °C to 425 °C.

Sample Preparation:
Solid-phase microextraction (SPME) fibers conditioned at 220 °C for 60 min were immersed in the tea extract at 22 °C for 10 min with magnetic stirring at 300 rpm. Fibers were rinsed in deionized water, thermally desorbed in the GC inlet (270 °C), and conditioned between runs.

Chromatographic and MS Conditions:
The Torion T-9 employs a low-thermal-mass capillary column with direct-contact heating for rapid temperature ramps (2 °C/s) from 50 °C to 300 °C. A toroidal ion trap mass analyzer (45–500 amu, 10–15 scans/s) operated at 190 °C provides high ion counts and low noise. Analysis time per run was under ten minutes.

Instrumentation Used


  • Torion T-9 Portable GC/MS (toroidal ion trap, 190 °C, 45–500 amu).
  • Low-thermal-mass MXT®-5 column (5 m × 0.1 mm × 0.4 µm, diphenyl dimethyl polysiloxane).
  • SPS-3 Sample Preparation Module (SPME and heated headspace).

Main Results and Discussion


All seven organochlorine pesticides in sample B were baseline-separated and identified by their characteristic mass spectra. The system delivered resolution below 0.5 m/z at 300 amu and consistent retention times across replicates. Total ion chromatograms confirmed rapid elution and minimal coelution, even for high-boiling analytes.

Benefits and Practical Applications


The portable GC/MS platform enables:

  • Rapid qualitative and quantitative screening of organochlorine residues in food matrices.
  • Deployment by non-specialist operators with limited training.
  • On-site decision-making for environmental compliance and food safety.

Future Trends and Opportunities


Ongoing advancements may include integration of automated sample-prep units, expanded compound libraries for real-time identification, and coupling with wireless data transmission. Further miniaturization and AI-driven spectral deconvolution promise to broaden field-based applications across forensic, industrial, and environmental domains.

Conclusion


This study demonstrates that the Torion T-9 field-portable GC/MS, combined with rapid SPME sampling, achieves laboratory-grade performance in under ten minutes. It offers a powerful tool for immediate, on-site analysis of organochlorine pesticides, facilitating fast, reliable results in remote or challenging locations.

References


  1. Contreras JA, et al. Hand-Portable Gas Chromatograph-Toroidal Ion Trap Mass Spectrometer for Detection of Hazardous Compounds. J Am Soc Mass Spectrom. 2008;19(10):1425–1434.
  2. Truong TV, et al. Trace Analysis in the Field Using Gas Chromatography-Mass Spectrometry. Scientia Chromatographica. 2014;6(1):13–26.
  3. PerkinElmer Inc. Torion T-9 Portable GC/MS Product Note. 2017.
  4. PerkinElmer Inc. SPS-3 Sample Preparation Module for Torion T-9. 2017.
  5. United States Environmental Protection Agency. Test Method 8081B: Analysis of Organochlorine Pesticide Compounds by GC Capillary Column Technology. Revision 2; 2007.

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