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首页> 外文期刊>Journal of Environmental Engineering >Effects of groundwater velocity and permanganate concentration on DNAPL mass depletion rates during in situ oxidation
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Effects of groundwater velocity and permanganate concentration on DNAPL mass depletion rates during in situ oxidation

机译:原位氧化过程中地下水流速和高锰酸盐浓度对DNAPL质量耗竭率的影响

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摘要

In situ chemical oxidation (ISCO) using permanganate has been increasingly applied to deplete mass from dense nonaqueous-phase liquid (DNAPL) source zones. However, uncertainty in the performance of ISCO on DNAPL contaminants is partially attributable to a limited understanding of interactions between the oxidant, subsurface hydrology, and DNAPL mass transfer, resulting in failure to optimize ISCO applications. To investigate these interactions, a factorial design experiment was conducted using one-dimensional flow through tube reactors to determine how groundwater velocity, permanganate concentration, and DNAPL type affected DNAPL mass depletion rates. DNAPL mass depletion rates were found to increase with increasing groundwater velocity, or increasing oxidant concentration. An interaction occurred between the two factors, where high oxidant concentrations had little impact on mass depletion rates at high velocities. High oxidant concentration systems experienced gas generation. Mass depletion rates were fastest at high velocities, but required additional oxidant mass and pore volume addition to achieve complete mass depletion. Lower-velocity systems were more efficient with respect to oxidant mass and pore volume requirements, but mass depletion rates were reduced.
机译:使用高锰酸盐的原位化学氧化(ISCO)已越来越多地用于减少稠密非水相液体(DNAPL)源区的物质。但是,ISCO对DNAPL污染物性能的不确定性部分归因于对氧化剂,地下水文学和DNAPL传质之间相互作用的有限了解,导致无法优化ISCO应用。为了研究这些相互作用,使用一维流经管式反应器进行了析因设计实验,以确定地下水流速,高锰酸盐浓度和DNAPL类型如何影响DNAPL质量消耗率。发现DNAPL的质量耗竭率随地下水流速增加或氧化剂浓度增加而增加。两种因素之间发生相互作用,其中高氧化剂浓度对高速下的质量耗竭率影响很小。高氧化剂浓度的系统会产生气体。质量损失速率在高速时最快,但是需要额外的氧化剂质量和孔体积来实现完全质量损失。相对于氧化剂的质量和孔体积的要求,低速系统更为有效,但降低了质量耗竭率。

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