首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >Improving Quantification of tabun, sarin, soman, cyclosarin, and sulfur mustard by focusing agents: A field portable gas chromatography-mass spectrometry study
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Improving Quantification of tabun, sarin, soman, cyclosarin, and sulfur mustard by focusing agents: A field portable gas chromatography-mass spectrometry study

机译:通过聚焦试剂改善禁忌,萨林,索姆,索曼,环己烷和硫磺芥末的定量:现场便携式气相色谱 - 质谱研究

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摘要

Commercial gas chromatograph-mass spectrometers, one of which being Inficon's HAPSITE (R) ER, have demonstrated chemical detection and identification of nerve agents (G-series) and blistering agents (mustard gas) in the field; however most analyses relies on self-contained or external calibration that inherently drifts over time. We describe an analytical approach that uses target-based thermal desorption standards, called focusing agents, to accurately calculate concentrations of chemical warfare agents that are analyzed by gas chromatograph-mass spectrometry. Here, we provide relative response factors of focusing agents (2-chloroethyl ethyl sulfide, diisopropyl fluorophosphate, diethyl methylphosphonate, diethyl malonate, methyl salicylate, and dichlorvos) that are used to quantify concentrations of tabun, sarin, soman, cyclosarin and sulfur mustard loaded on thermal desorption tubes (Tenax (R) TA). Aging effects of focusing agents are evaluated by monitoring deviations in quantification as thermal desorption tubes age in storage at room temperature and relative humidity. The addition of focusing agents improves the quantification of tabun, sarin, soman, cyclosarin and sulfur mustard that is analyzed within the same day as well as a 14-day period. Among the six focusing agents studied here, diisopropyl fluorophosphate has the best performance for nerve agents (G-series) and blistering agents (mustard gas) compared to other focusing agents in this work and is recommended for field use for quantification. The use of focusing agent in the field leads to more accurate and reliable quantification of Tabun (GA), Sarin (GB), Soman (GD), Cyclosarin (GF) and Sulfur Mustard (HD) than the traditional internal standard. Future improvements on the detection of chemical, biological, radiological, nuclear, and explosive materials (CBRNE) can be safely demonstrated with standards calibrated for harmful agents. (C) 2020 The Author(s). Published by Elsevier B.V.
机译:商用气相色谱-质谱仪(其中一台是Inficon的HAPSITE(R)ER)已证明在现场对神经毒剂(G系列)和起泡剂(芥子气)进行了化学检测和鉴定;然而,大多数分析依赖于自包含或外部校准,这些校准本身会随时间漂移。我们描述了一种分析方法,该方法使用基于目标的热解吸标准(称为聚焦剂),精确计算通过气相色谱-质谱分析的化学战剂浓度。在此,我们提供了聚焦剂(2-氯乙基乙基硫醚、二异丙基氟磷酸盐、甲基膦酸二乙酯、丙二酸二乙酯、水杨酸甲酯和敌敌畏)的相对响应系数,这些聚焦剂用于量化热脱附管(Tenax(R)TA)上装载的塔朋、沙林、梭曼、环沙林和硫芥的浓度。随着热脱附管在室温和相对湿度下储存老化,通过监测定量偏差来评估聚焦剂的老化效应。添加聚焦剂可提高在同一天和14天内分析的塔邦、沙林、梭曼、环沙林和硫芥的定量。在本文研究的六种聚焦剂中,与本研究中的其他聚焦剂相比,氟磷酸二异丙酯对神经毒剂(G系列)和起泡剂(芥子气)的性能最好,建议用于现场定量。与传统的内标法相比,在现场使用聚焦剂可以更准确、可靠地定量塔邦(GA)、沙林(GB)、梭曼(GD)、环沙林(GF)和硫芥(HD)。未来在化学、生物、放射性、核和爆炸性材料(CBRNE)检测方面的改进可以通过校准有害物质的标准进行安全演示。(C) 2020作者。由Elsevier B.V.出版。

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