4.6 Article

Fast, low-pressure gas chromatography triple quadrupole tandem mass spectrometry for analysis of 150 pesticide residues in fruits and vegetables

Journal

JOURNAL OF CHROMATOGRAPHY A
Volume 1218, Issue 39, Pages 7039-7050

Publisher

ELSEVIER
DOI: 10.1016/j.chroma.2011.07.094

Keywords

QuEChERS; Sample throughput; Pesticide analysis; Vacuum-outlet gas chromatography; Triple quadrupole mass spectrometry

Funding

  1. U.S.-Israel Binational Agricultural Research and Development Fund [US-4273-09]
  2. Thailand Research Fund (TRF)
  3. Royal Golden Jubilee Ph.D. Program [PHD0036/2550]
  4. Chulalongkorn University

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We developed and evaluated a new method of low-pressure gas chromatography-tandem mass spectrometry (LP-GC/MS-MS) using a triple quadrupole instrument for fast analysis of 150 relevant pesticides in four representative fruits and vegetables. This LP-GC (vacuum outlet) approach entails coupling a 10 m, 0.53 mm id., 1 mu m film analytical column between the MS transfer line and a 3m, 0.15 mm id. capillary at the inlet. The MS creates a vacuum in the 10 m analytical column, which reduces the viscosity of the He carrier gas and thereby shifts the optimal flow rate to greater velocity. By taking advantage of the H-2-like properties of He under vacuum, the short analytical column, a rapid oven temperature ramp rate, and the high selectivity and sensitivity of MS/MS, 150 pesticides were separated in <6.5 min. The 2.5 ms dwell time and 1 ms interscan delay of the MS/MS instrument were critical for achieving >8 data points across the 2-3 s wide peaks. To keep dwell and cycle times constant across all peaks, each segment consisted of 30 analytes (60 transitions). For assessment, we injected extracts of spiked broccoli, cantaloupe, lemon, and sweet potato from the updated QuEChERS sample preparation method. Average recoveries (n = 72) were 70-120% for 144 of the pesticides, and reproducibilities were <20% RSD for all but 4 analytes. Also, detection limits were <5 ng/g for all but a few pesticides, depending on the matrix. In addition to high quality performance, the method gave excellent reliability and high sample throughput, including easy peak integration to obtain rapid results. Published by Elsevier B.V.

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