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Organochlorine Pesticide

Applications |  | GL SciencesInstrumentation
GC/MSD, GC columns, Consumables
Industries
Manufacturer
GL Sciences

Summary

Significance of the Topic


Organochlorine pesticides remain of high concern due to their persistence, bioaccumulation and toxicity. Reliable, sensitive and inert gas chromatography–mass spectrometry (GC–MS) methods are essential for accurate quantification in environmental, food and regulatory laboratories.

Study Objectives and Overview


The main goal of this application note is to demonstrate the performance of the InertSearch GC system coupled with the InertCap 5MS/NP capillary column for the analysis of a thirteen-component organochlorine pesticide mixture by GC–MS.

Methodology and Instrumentation


  • Instrument: GL Sciences InertSearch gas chromatograph with mass spectrometric detection.
  • Column: InertCap 5MS/NP, 30 m × 0.25 mm I.D., film thickness 0.25 µm.
  • Carrier gas: Helium at 35 cm/sec linear velocity.
  • Injection: Split mode (1 :30), inlet temperature 250 °C, sample volume 1 µL of a 100 µg/mL standard in iso-octane.
  • Oven program: 60 °C initial with 1 min hold; ramp 10 °C/min to 280 °C; final hold 7 min.
  • MS conditions: Electron impact ionization, scan range 45–500 m/z, interface temperature 280 °C.

Main Results and Discussion


The chromatogram achieved baseline separation of 13 organochlorine compounds, including α-HCH, β-HCH, γ-HCH, heptachlor, aldrin, dieldrin, p,p'-DDE, o,p'-DDD, endrin, p,p'-DDD, o,p'-DDT and p,p'-DDT. Peak shapes were sharp and symmetric, indicating minimal active sites in the inert column and system path. Sensitivity and reproducibility were excellent, with no evidence of analyte degradation or carry-over.

Practical Benefits


The demonstrated method provides:
  • Robust quantitation of trace organochlorine residues.
  • Reduced peak tailing and adsorption losses due to inert surfaces.
  • High throughput with a total run time under 30 minutes.
  • Compatibility with regulatory limits and quality control requirements.

Future Trends and Potential Applications


Advances in stationary phase chemistry and inertness will further improve trace analysis of persistent organic pollutants. Coupling such columns with high-resolution MS or comprehensive two-dimensional GC may enhance selectivity. Miniaturized GC-MS instruments will enable field deployable monitoring of organochlorine pesticides.

Conclusion


The InertSearch GC system with InertCap 5MS/NP column delivers reliable, sensitive and inert performance for the analysis of organochlorine pesticides. It offers a practical solution for environmental laboratories and regulatory agencies requiring robust pesticide residue data.

Reference


GL Sciences Inc. Application Note GA129-0644: Organochlorine Pesticide Analysis by InertSearch GC/MS.

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