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首页> 外文期刊>Journal of Environmental Science and Health >Comparison of permeable reactive barrier, funnel and gate, nonpumped wells, and low-capacity wells for groundwater remediation
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Comparison of permeable reactive barrier, funnel and gate, nonpumped wells, and low-capacity wells for groundwater remediation

机译:渗透性反应性屏障,漏斗和闸门,非抽水井和低容量井的地下水修复比较

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摘要

This modeling study compared the performance of a no-action and four active groundwater remediation alternatives: a permeable reactive barrier, a funnel and gate, nonpumped wells with filter media, and a low-capacity extraction and injection well. The simulated aquifer had an average seepage velocity of 0.04 m d(-1), and the initial contaminant plume was 58 m long and 13 m wide. For each active alternative, mass transport modeling identified the smallest structure necessary to contain and remove the contaminant plume. Although the no-action alternative did not contain the plume, each active alternative did contain and remove the plume, but with significantly different installation and operation requirements. Low-capacity pumping wells required the least infrastructure, with one extraction well and one injection well each discharging only 1.7 m(3) d (1). The amount of time necessary to remove the contaminant plume was similar among active alternatives, except for the funnel and gate, which required much more time. Results of this study suggest that, for a modest seepage velocity and relatively narrow contaminant plume, low-capacity wells may be an effective alternative for groundwater remediation.
机译:这项建模研究比较了无作用和四种主动地下水修复方案的性能:渗透性反应性屏障,漏斗和闸门,带有过滤介质的非抽水井以及低容量的抽采井。模拟含水层的平均渗流速度为0.04 m d(-1),初始污染物羽流长58 m,宽13 m。对于每个主动替代方案,大众运输模型都确定了容纳和去除污染物羽流所需的最小结构。尽管无作用替代方案不包含羽流,但是每个活动替代方案均包含和除去羽流,但是对安装和操作的要求却大不相同。低容量抽水井所需的基础设施最少,其中一口抽采井和一口注入井的排量仅为1.7 m(3)d(1)。在活动替代方案中,除去污染物羽流所需的时间量相似,除了漏斗和浇口需要更长的时间。这项研究的结果表明,对于适度的渗流速度和相对较窄的污染物羽流,低容量井可能是地下水修复的有效替代方法。

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