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激光二极管热解吸/常压化学电离-串联质谱法高通量痕量分析水中的爆炸物。

High-throughput trace analysis of explosives in water by laser diode thermal desorption/atmospheric pressure chemical ionization-tandem mass spectrometry.

机构信息

Department of Chemistry, Université de Montréal, Montréal, QC, Canada.

出版信息

Anal Chem. 2012 Jul 3;84(13):5731-6. doi: 10.1021/ac300918f. Epub 2012 Jun 12.

Abstract

Harmful explosives can accumulate in natural waters in the long term during their testing, usage, storage, and dumping and can pose a health risk to humans and the environment. For the first time, attachment of small anions to neutral molecules in laser diode thermal desorption/atmospheric pressure chemical ionization was systematically investigated for the direct determination of trace nitroaromatics, nitrate esters, and nitramine explosives in water. Using ammonium chloride as an additive improved the instrument response for all the explosives tested and promoted the formation of several characteristic adduct ions. The method performs well achieving good linearity over at least 2 orders of magnitude, with coefficients of determination greater than 0.995. The resulting limits of detection are in the range of 0.009-0.092 μg/L. River water samples were successfully analyzed by the proposed method with accuracy in the range of 96-98% and a response time of 15 s, without any further pretreatment or chromatographic separation.

摘要

有害爆炸物在测试、使用、储存和倾倒过程中会在自然水中长期积累,并对人类和环境构成健康风险。本文首次系统研究了激光二极管热解吸/常压化学电离中带负电荷的小分子与中性分子的附着,用于直接测定水中痕量硝基芳烃、硝酸酯和硝胺炸药。使用氯化铵作为添加剂提高了所有测试炸药的仪器响应,并促进了几个特征加合物离子的形成。该方法性能良好,至少在 2 个数量级范围内具有良好的线性,决定系数大于 0.995。得到的检出限范围为 0.009-0.092μg/L。采用该方法对河水样品进行了成功分析,准确度在 96-98%范围内,响应时间为 15s,无需进一步预处理或色谱分离。

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