首页> 外文期刊>Journal of Contaminant Hydrology >Design and laboratory testing of a chamber device to measure total flux of volatile organic compounds from the unsaturated zone under natural conditions
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Design and laboratory testing of a chamber device to measure total flux of volatile organic compounds from the unsaturated zone under natural conditions

机译:在自然条件下测量来自不饱和区的挥发性有机化合物总通量的腔室设备的设计和实验室测试

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摘要

To determine if an aquifer contaminated with volatile organic compounds (VOCs) has .potential for natural remediation, all natural processes affecting the fate and transport of VOCs in the subsurface must be identified and quantified. This research addresses the quantification of air-phase volatile organic compounds (VOCs) leaving the unsaturated zone soil gas and entering the atmosphere—including the additional flux provided by advective soil-gas movement induced by barometric pumping. A simple and easy-to-use device for measuring VOC flux under natural conditions is presented. The vertical flux chamber (VFC) was designed using numerical simulations and evaluated in the laboratory. Mass-balance numerical simulations based on continuously stirred tank reactor equations (CSTR) provided information on flux measurement performance of several sampling configurations with the final chamber configuration measuring greater than 96% of model-simulated fluxes. A laboratory device was constructed to evaluate the flux chamber under both diffusion-only and advection-plus-diffusion transport conditions. The flux chamber measured an average of 82% of 15 diffusion-only fluxes and an average of 95% of 15 additional advection-plus-diffusion flux experiments. The vertical flux chamber has the capability of providing reliable measurement of VOC flux from the unsaturated zone under both diffusion and advection transport conditions.
机译:为了确定被挥发性有机化合物(VOC)污染的含水层是否具有自然修复的潜力,必须确定和量化影响地下有机化合物命运和运输的所有自然过程。这项研究致力于定量分析离开非饱和区土壤气体并进入大气的气相挥发性有机化合物(VOC),包括大气泵抽引起的平流土壤气体运动提供的额外通量。提出了一种简单易用的自然条件下测量VOC通量的设备。垂直通量室(VFC)是使用数值模拟设计的,并在实验室中进行了评估。基于连续搅拌釜反应器方程(CSTR)的质量平衡数值模拟提供了有关几种采样配置的流量测量性能的信息,最终腔室配置的流量大于模型模拟流量的96%。建造了一个实验室设备,以评估仅在扩散状态和对流加扩散状态下的通量室。助焊剂室测量了15个仅扩散助焊剂的平均值的82%,另外15个对流加扩散助焊剂实验的平均值为95%。垂直通量室具有在扩散和对流传输条件下可靠测量来自非饱和区的VOC通量的能力。

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