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Analysis of munitions constituents in groundwater using a field-portable GC-MS

机译:使用现场便携式GC-MS分析地下水中的弹药成分

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摘要

The use of munitions constituents (MCs) at military installations can produce soil and groundwater contamination that requires periodic monitoring even after training or manufacturing activities have ceased. Traditional groundwater monitoring methods require large volumes of aqueous samples (e.g., 2-4 L) to be shipped under chain of custody, to fixed laboratories for analysis. The samples must also be packed on ice and shielded from light to minimize degradation that may occur during transport and storage. The laboratory's turn-around time for sample analysis and reporting can be as long as 45 d. This process hinders the reporting of data to customers in a timely manner; yields data that are not necessarily representative of current site conditions owing to the lag time between sample collection and reporting; and incurs significant shipping costs for samples. The current work compares a field portable Gas Chromatograph-Mass Spectrometer (GC-MS) for analysis of MCs on-site with traditional laboratory-based analysis using High Performance Liquid Chromatog-raphy with UV absorption detection. The field method provides near real-time (within ~1 h of sampling) concentrations of MCs in groundwater samples. Mass spectrometry provides reliable confirmation of MCs and a means to identify unknown compounds that are potential false positives for methods with UV and other non-selective detectors.
机译:在军事设施中使用弹药成分(MC)会产生土壤和地下水污染,即使在训练或生产活动停止后,也需要定期监测。传统的地下水监测方法需要将大量的水样(例如2-4 L)按照监管链运输到固定实验室进行分析。样品还必须包装在冰上并避光,以最大程度减少运输和存储过程中可能发生的降解。实验室用于样品分析和报告的周转时间可以长达45 d。这个过程阻碍了及时向客户报告数据;由于样品收集和报告之间存在时间间隔,因此得出的数据不一定代表当前的现场情况;并导致样品运输成本高昂。当前的工作将现场便携式气相色谱-质谱仪(GC-MS)与使用高效液相色谱和紫外线吸收检测技术的传统实验室分析方法进行了现场比较。现场方法可提供地下水样品中MC的近实时浓度(约1小时内)。质谱提供了可靠的MC确认,并且是鉴定使用UV和其他非选择性检测器的方法可能是假阳性的未知化合物的方法。

著录项

  • 来源
    《Chemosphere》 |2012年第8期|p.894-901|共8页
  • 作者单位

    US Army Engineer Research and Development Center, Environmental Laboratory, 3909 Halls Ferry Rd., Vicksburg, MS 39180, United States;

    Badger Technical Services, Vicksburg, MS, United States;

    Badger Technical Services, Vicksburg, MS, United States;

    US Army Engineer Research and Development Center, Environmental Laboratory, 3909 Halls Ferry Rd., Vicksburg, MS 39180, United States;

    FUR, 3000 KentAve., West Lafayette, IN, United States;

    US Army Corps of Engineers Environmental and Munitions Center of Expertise, Omaha, NE, United States;

    US Army Corps of Engineers Environmental and Munitions Center of Expertise, Omaha, NE, United States;

    US Army Engineer Research and Development Center, Cold Regions Research and Engineering Laboratory, Hanover, NH, United States;

    US Army Engineer Research and Development Center, Environmental Laboratory, 3909 Halls Ferry Rd., Vicksburg, MS 39180, United States;

    US Army Engineer Research and Development Center, Environmental Laboratory, 3909 Halls Ferry Rd., Vicksburg, MS 39180, United States;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    munitions constituents; field analysis; GC-MS; detection and identification;

    机译:弹药成分;现场分析;气相色谱-质谱检测与鉴定;

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