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Developments toward a Low-Cost Approach for Long-Term Unattended Vapor Intrusion Monitoring

机译:低成本长期无人值守的蒸气入侵监测方法的发展

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摘要

There are over 450,000 sites contaminated by chemicals in the US. This large number of contaminated sites and the speed of subsurface migration of chemicals pose considerable risk to nearby residences and commercial buildings. The high costs for monitoring around these site stem from the labor involved in placing and replacing the passive sorbent vapor samplers and the resultant laboratory analysis. This monitoring produces sparse data sets that do not track temporal changes well. To substantially reduce costs and better track exposures, less costly, unattended systems for monitoring soil gases and vapor intrusion into homes and businesses are desirable to aid in the remediation of contaminated sites. This paper describes progress toward the development of an inexpensive system specifically for monitoring vapor intrusion; the system can operate repeatedly without user intervention with low detection limits (1 × 10−9, or 1 part-per-billion). Targeted analytes include chlorinated hydrocarbons (dichloroethylene, trichloroethane, trichloroethylene, and perchloroethylene) and benzene. The system consists of a trap-and-purge preconcentrator for vapor collection in conjunction with a compact gas chromatography instrument to separate individual compounds. Chemical detection is accomplished with an array of chemicapacitors and a metal-oxide semiconductor combustibles sensor. Both the preconcentrator and the chromatography column are resistively heated. All components are compatible with ambient air, which serves as the carrier gas for the gas chromatography and detectors.
机译:在美国,有超过450,000个被化学物质污染的场所。如此大量的污染场地以及化学物质在地下的迁移速度,对附近的住宅和商业建筑构成了相当大的风险。在这些站点周围进行监视的高昂成本源于放置和更换无源吸附剂蒸气采样器以及由此产生的实验室分析所涉及的劳动。这种监视产生的稀疏数据集无法很好地跟踪时间变化。为了大大降低成本并更好地跟踪暴露情况,需要一种成本较低,无人值守的监视土壤气体和蒸气侵入家庭和企业的系统,以帮助修复受污染的地点。本文描述了开发专门用于监视蒸汽入侵的廉价系统的进展;该系统可以在低检测限(1×10 −9 或十亿分之一)的情况下,无需用户干预即可重复运行。目标分析物包括氯代烃(二氯乙烯,三氯乙烷,三氯乙烯和全氯乙烯)和苯。该系统由捕集和吹扫预浓缩器组成,用于蒸汽收集,并配有紧凑型气相色谱仪,用于分离单个化合物。化学检测是通过一系列化学电容器和金属氧化物半导体可燃物传感器完成的。预浓缩器和色谱柱均被电阻加热。所有组分均与环境空气兼容,环境空气用作气相色谱仪和检测器的载气。

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  • 期刊名称 other
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  • 年(卷),期 -1(139),15
  • 年度 -1
  • 页码 3770–3780
  • 总页数 27
  • 原文格式 PDF
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