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Performance evaluation of remediation scenarios for DNAPL contaminated groundwater using analytical models and probabilistic methods

机译:利用分析模型和概率方法对DNAPL污染地下水进行修复方案的性能评估

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Chlorinated solvents are widespread groundwater contaminants. Treatment or removal of source areas and treatment of the groundwater plume are the two primary strategies used to reduce risks at contaminated sites. Optimal design of groundwater remediation strategies is important to maximize contaminant removal and reduce costs. We used an analytical model and probabilistic methods to evaluate the performance of remedial methods for groundwater contaminated by chlorinated solvents, evaluating different combinations of source removal and plume treatment. The results indicated that natural attenuation alone cannot control dissolved 1,1,1-trichloroethane plumes within the boundaries of the site, with the duration of the plume exceeding 60 years. When 20-80% of the source area was removed, the dissolved plume migrated beyond the site and the plume could not be contained within 50 m down gradient over 20 years. Without source removal, the dissolved plume can only be restricted to within the site by enhanced remediation, and source removal reduces the duration of the dissolved plume. Treatment of the plume shortens the distance over which the dissolved plume travels. When source removal and treatment of the plume were jointly applied, the remediation efficiency of the contaminated groundwater was significantly improved. Analytical models and probabilistic methods have been proven to be very useful tools for optimizing the design of remediation strategies for NAPL-contaminated sites.
机译:氯化溶剂是广泛的地下水污染物。治疗或去除源区和地下水羽流的治疗是用于减少受污染地点风险的两种主要策略。地下水修复策略的最佳设计对于最大化污染物去除并降低成本很重要。我们使用了分析模型和概率方法来评估氯化溶剂污染地下水的补救方法的性能,评价源去除和羽流治疗的不同组合。结果表明,单独的天然衰减不能控制位点的边界内的溶解1,1,1-三氯乙烷羽毛,羽流量超过60岁。当移除20-80%的源区时,溶解的羽流迁移超过现场,羽流在20年以上的50米下降范围内。在没有源去除的情况下,溶解的羽流可通过增强的修复而仅限于部位内,并且源去除降低了溶解的羽流的持续时间。羽流的处理缩短了溶解的羽毛行进的距离。当共同施加羽毛源去除和治疗时,污染地下水的修复效率显着提高。分析模型和概率方法已被证明是一种非常有用的工具,用于优化Napl污染场地的修复策略设计。

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