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利用天然氡评估饱和带中致密非水相液体分布的现场研究。

Field study of using naturally occurring radon to assess the dense non-aqueous phase liquid distribution in saturated zone.

机构信息

Department of Cosmetic Science and Application, Lan Yang Institute of Technology, No. 79, Fushin Rd., Touchen Town, Yilan County 261, Taiwan, ROC.

Apollo Technology Co., LTD, 15F-1, No. 421, Sung Shan Rd., Taipei 11083, Taiwan, ROC.

出版信息

J Environ Radioact. 2014 Feb;128:75-83. doi: 10.1016/j.jenvrad.2013.11.006. Epub 2013 Dec 6.

Abstract

The concept of radon deficiency such as the ratios of radon concentrations to the maximum measured value of a sample batch was employed as the survey methodology for this study to investigate contamination sources in an industrial zone that was suspected of causing subsurface dense non-aqueous phase liquid (DNAPL) contamination. The results showed that radon concentrations in certain wells were significantly lower than that in uncontaminated regions. Radon concentrations in groundwater are influenced by the in situ bioremediation of vegetable oil, which causes abnormal reductions of the radon in groundwater because radon partitions into vegetable oil and results in more variable for the radon deficit method to showing the impacts of remediation. Six contaminated regions were identified by integrating radon concentration ratios (divided into low (L), middle (M), and high (H) levels) and DNAPL concentrations (divided into low (L) and high (H) levels). Contaminated regions in the LH, MH, and HH categories are located in the vicinity of the contamination source, and those in the HL category are located far from the source zone. The ML and LL categories indicate the involvement of unknown factors, and that additional analyses are required to uncover the facts that affect radon and DNAPL concentrations.

摘要

本研究采用氡浓度与样本批次最大测量值的比值等氡亏缺概念作为调查方法,以调查一个疑似导致地下致密非水相液体(DNAPL)污染的工业区域的污染来源。结果表明,某些井中的氡浓度明显低于无污染区域。地下水的氡浓度受植物油原位生物修复的影响,这会导致地下水氡的异常减少,因为氡会分配到植物油中,从而使氡亏缺方法在显示修复影响方面更加多变。通过整合氡浓度比(分为低(L)、中(M)和高(H)水平)和 DNAPL 浓度(分为低(L)和高(H)水平),确定了六个污染区域。位于污染源附近的是 LH、MH 和 HH 类污染区域,而 HL 类污染区域则远离源区。ML 和 LL 类表明存在未知因素,需要进行额外的分析以揭示影响氡和 DNAPL 浓度的因素。

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