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基质兼容涂层的直接浸吸式 SPME 用于痕量水平的豆浆中农药分析。

Direct-immersion SPME in soy milk for pesticide analysis at trace levels by means of a matrix-compatible coating.

机构信息

Department of Chemistry, University of Waterloo, Waterloo, Ontario, Canada; Department of Chemistry and Biochemistry, The University of Toledo, Toledo, 43606, OH, USA.

Department of Chemistry, University of Waterloo, Waterloo, Ontario, Canada.

出版信息

Talanta. 2020 May 1;211:120746. doi: 10.1016/j.talanta.2020.120746. Epub 2020 Jan 15.

Abstract

This study demonstrates a newly developed PDMS/DVB/PDMS fiber's suitability for the determination of pesticides in soy milk via direct-immersion solid-phase microextraction (SPME) combined with gas chromatography-mass spectrometry, eliminating the need for extensive sample pre-treatment procedures. Fouling accumulation on the coating surface was further minimized by implementing rapid and effective pre- and post-desorption cleaning steps. Under optimum conditions, the fiber was used to perform over 120 extractions while maintaining RSD values of less than 24.5% for 10 extracted pesticides. By comparison, the RSD values ranged from 8.4% to 42.8% over 80 extractions using a commercial PDMS/DVB fiber. The optimized conditions were used to fully validate a quantitative method for the targeted analytes by matrix-matched calibration and isotopically labeled internal standard correction. Significantly, the proposed method was able to achieve limits of quantitation (1-2.5 μg/kg) for the targeted analytes that were below the Maximum Residue Levels mandated for soy-based products. Accuracy, intra- and inter-day repeatability were also satisfactory. The proposed PDMS/DVB/PDMS fiber dramatically improved repeatability and suitability for direct-immersion SPME in soy milk, and represents a good alternative to other extraction methods for high-throughput quantitative analysis of pesticide residues in soy-based products.

摘要

本研究展示了一种新开发的 PDMS/DVB/PDMS 纤维,通过直接浸入固相微萃取(SPME)结合气相色谱-质谱法,可用于测定豆浆中的农药,无需进行广泛的样品预处理。通过实施快速有效的预解吸和后解吸清洗步骤,进一步减少了涂层表面的污垢积累。在最佳条件下,该纤维可进行超过 120 次萃取,而对于 10 种萃取的农药,其 RSD 值小于 24.5%。相比之下,使用商业 PDMS/DVB 纤维进行 80 多次萃取时,RSD 值范围为 8.4%至 42.8%。通过基质匹配校准和同位素标记内标校正,对优化后的条件进行了全面验证,建立了针对目标分析物的定量方法。值得注意的是,该方法能够达到针对目标分析物的定量限(1-2.5μg/kg),低于规定的豆制品中农药最大残留限量。该方法的准确性、日内和日间重复性也令人满意。与其他提取方法相比,PDMS/DVB/PDMS 纤维显著提高了直接浸入 SPME 在豆浆中的重复性和适用性,是用于基于大豆的产品中农药残留高通量定量分析的良好替代方法。

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