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Scan/MRM Analysis of Residual Pesticides in Foods Using GC-MS/MS (3)

Applications | 2013 | ShimadzuInstrumentation
GC/MSD, GC/MS/MS, GC/QQQ
Industries
Food & Agriculture
Manufacturer
Shimadzu

Summary

Importance of the Topic


An efficient and reliable evaluation of pesticide residues in food matrices is essential for ensuring consumer safety and compliance with regulatory limits. Triple quadrupole GC-MS/MS with simultaneous scan and MRM acquisition offers comprehensive detection of both targeted and untargeted compounds in a single run.

Objectives and Study Overview


The primary goal of this study was to assess the performance of the Shimadzu GCMS-TQ8030 system in scan/MRM mode for multiresidue analysis of pesticides in paprika samples. Targeted pesticides were quantified using MRM data, while untargeted compounds were screened and semi-quantified through scan data processed in the Compound Composer Database Software Ver.2.

Methodology and Instrumentation


The following protocol was applied:
  • Sample Preparation: Paprika extracts prepared by the QuEChERS method spiked at 0.01 mg/L.
  • Instrumentation: GCMS-TQ8030 with Rxi-5Sil MS capillary column (30 m × 0.25 mm, 0.25 μm film).
  • GC Conditions: Injection temperature 250 °C, splitless mode, oven program from 40 °C (2 min) to 310 °C at 8 °C/min.
  • MS Conditions: Interface 300 °C, ion source 200 °C, acquisition in scan (m/z 50–500) and MRM modes with event times of 0.1 s for scan and 0.3 s for MRM.

Main Results and Discussion


Targeted quantification achieved strict linear calibration for compounds such as procymidone across 0.001–0.1 mg/L, with clear MRM chromatograms and reliable limits of quantitation at 0.01 mg/L. Simultaneously acquired scan spectra allowed confirmation of target analytes. Untargeted screening identified additional residues, for example quinoxyfen, by matching retention time and spectral patterns from the database and providing semi-quantitative estimates without external standards.

Benefits and Practical Applications


The combined scan/MRM approach streamlines analysis by:
  • Enabling simultaneous targeted quantification and broad-spectrum screening.
  • Reducing sample throughput time and resource consumption.
  • Minimizing the dependency on large sets of analytical standards for unidentified residues.

Future Trends and Potential Applications


Advancements may include:
  • Expansion of spectral libraries to cover emerging pesticide classes.
  • Improved software algorithms for deconvolution and automated identification.
  • Integration with high-resolution mass spectrometry for enhanced confidence in unknown screening.

Conclusion


The scan/MRM strategy on the GCMS-TQ8030 provides a robust platform for high-throughput, comprehensive pesticide residue analysis in food matrices, combining accurate quantification of target analytes with effective screening of untargeted compounds.

Reference


  1. EURL-FV Multiresidue Method using QuEChERS followed by GC-QqQ/MS/MS and LC-QqQ/MS/MS for Fruits and Vegetables (European Reference Laboratory, 2010-M1)

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