使用 EDTA 进行超声辅助 QuEChERS 萃取,测定土壤中痕量水平的当前使用的农药。

Florent Lafay, Gaëlle Daniele, Maëva Fieu, Céline Pelosi, Clémentine Fritsch, Emmanuelle Vulliet
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引用次数: 0

摘要

由于土壤中农药的痕量存在及其生物利用率会对土壤生态系统、动物和人类健康产生不利影响,因此监测土壤中的农药至关重要。在这项研究中,我们开发了一种利用液相色谱-串联质谱定量土壤中痕量多类农药的分析方法。通过这种方法,我们选择了 31 种农药,包括 12 种除草剂、9 种杀虫剂和 10 种杀菌剂。首先评估了两种萃取技术,即加压液体萃取和 QuEChERS 程序。最终选择并优化了最新的一种,其萃取回收率可达 55% 至 118%。螯合剂乙二胺四乙酸(EDTA)能优先与土壤中的阳离子结合,从而使某些农药复杂化,其作用得到了强调。该方法与液相色谱-串联质谱联用,灵敏度非常高,定量限(LOQ)在 0.01-5.5 纳克/克之间。在两个数量级(LOQ-100 [计算公式:见正文] LOQ)范围内观察到了良好的线性关系(R2 > 0.992),所有化合物的准确度(80-120%)都很高,但两种拟除虫菊酯类化合物溴氰菊酯和氟氯氰菊酯(准确度介于 50%和 175%之间)以及环己二酮环氧地胺(准确度介于 50%和 175%之间)除外。
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Ultrasound-assisted QuEChERS-based extraction using EDTA for determination of currently-used pesticides at trace levels in soil.

It is essential to monitor pesticides in soils as their presence at trace levels and their bioavailability can induce adverse effects on soil's ecosystems, animals, and human health. In this study, we developed an analytical method for the quantification of traces of multi-class pesticides in soil using liquid chromatography-tandem mass spectrometry. In this way, 31 pesticides were selected, including 12 herbicides, 9 insecticides, and 10 fungicides. Two extraction techniques were first evaluated, namely, the pressurized liquid extraction and the QuEChERS procedure. The latest one was finally selected and optimized, allowing extraction recoveries of 55 to 118%. The role of the chelating agent EDTA, which binds preferentially to soil cations that complex some pesticides, was highlighted. Coupled with liquid chromatography-tandem mass spectrometry, the procedure displayed very high sensitivity, with limits of quantification (LOQ) in the range 0.01-5.5 ng/g. A good linearity (R2 > 0.992) was observed over two orders of magnitude (LOQ-100 [Formula: see text] LOQ) with good accuracy (80-120%) for all compounds except the two pyrethroids lambda-cyhalothrin and tau-fluvalinate (accuracy comprised between 50 and 175%) and the cyclohexanedione cycloxydim (accuracy < 35%). Good repeatability and reproducibility were also achieved. The method was finally successfully applied to 12 soil samples collected from 3 land-use types. Among the 31-targeted pesticides, 24 were detected at least once, with concentration levels varying from LOQ to 722 ng/g. Many values were below 0.5 ng/g, indicating that the developed method could provide new knowledge on the extremely low residual contents of some pesticides.

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