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开发一种用于大体积水样中农业农药的固相萃取方法。

Development of a solid phase extraction method for agricultural pesticides in large-volume water samples.

机构信息

U.S. Environmental Protection Agency, Office of Research and Development, National Exposure Research Laboratory, Environmental Chemistry Branch, Las Vegas, NV 89193-3478, USA.

出版信息

Talanta. 2010 Jun 15;81(4-5):1380-6. doi: 10.1016/j.talanta.2010.02.038. Epub 2010 Feb 18.

Abstract

An analytical method using solid phase extraction (SPE) and analysis by gas chromatography/mass spectrometry (GC-MS) was developed to determine trace levels of a variety of 41 agricultural pesticides and selected transformation products in high-elevation surface waters. Large-volume water sampling (up to 100L) was employed because it was anticipated that pesticide contamination, if present, would be at very low levels. The target compounds comprise pesticides (and selected oxygen transformation products) known to have been extensively used in agriculture in the San Joaquin Valley, CA, USA. Solid phase extraction using the polymeric resin Abselut Nexus was optimized to extract the pesticide analytes from water samples. A single determinative method using GC-MS with electron ionization was used for all the analytes. Recoveries from 100L of reagent water at 100pg/L and 1ng/L concentrations were generally greater than 75%, although dimethoate, disulfoton, and phorate were not recovered. Analysis of the extracts without cleanup yielded detection limits for the remaining 38 analytes between 0.1 and 30ng/L. A silica cleanup with separate analysis of 3 eluant fractions improved detection limits for 37 of the compounds to between 6 and 600pg/L in high-elevation surface waters.

摘要

开发了一种使用固相萃取(SPE)和气相色谱/质谱(GC-MS)分析的方法,用于测定高海拔地表水中多种 41 种农业农药和选定转化产物的痕量水平。采用大容量水采样(高达 100L),因为预计如果存在农药污染,其浓度将非常低。目标化合物包括在美国加利福尼亚州圣华金谷广泛用于农业的农药(和选定的氧转化产物)。使用聚合物树脂 Abselut Nexus 优化固相萃取,从水样中提取农药分析物。使用电子电离的单一定量方法对所有分析物进行分析。在 100pg/L 和 1ng/L 浓度下,从 100L 试剂水中的回收率通常大于 75%,尽管二甲氧基、二硫磷和磷酰胺未被回收。未经净化分析提取物,其余 38 种分析物的检测限在 0.1 至 30ng/L 之间。用硅胶净化,分别分析 3 个洗脱液馏分,可将 37 种化合物在高海拔地表水中的检测限提高到 6 至 600pg/L 之间。

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