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In situ push-pull tests for the determination of TCE degradation and permanganate consumption rates

机译:原位推挽试验确定三氯乙烯的降解和高锰酸盐消耗率

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摘要

A simple, single-well push-pull test was conducted at a TCE-contaminated site to estimate the site-specific TCE degradation and permanganate (MnO_4~-) consumption rate. Known quantities of a conservative tracer (Br~-) and permanganate were rapidly injected into a saturated aquifer then periodically sampled during extraction from the same well. Concentrations of Br~- , TCE, and MnO_4~- were measured; breakthrough curves (BTCs) for all species of solute were determined. Data analysis of BTCs for bromide and TCE showed that the first-order rate constant of TCE degradation by MnO_4~- is 1.67 ±0.152 h~(-1) Further, the in situ MnO_4~- demand rate by TCE and aquifer materials is estimated to be 0.54 ± 0.371 h~(-1). This study demonstrates that in situ push-pull tests are useful and economical tools for field investigations to determine contaminant reaction and oxidant consumption rates, which may then be used to optimize groundwater remediation designs.
机译:在受TCE污染的地点进行了简单的单井推挽试验,以评估特定地点的TCE降解和高锰酸盐(MnO_4〜-)消耗速率。将已知量的保守示踪剂(Br〜-)和高锰酸盐迅速注入饱和含水层中,然后在从同一孔中提取期间定期采样。测量了Br〜-,TCE和MnO_4〜-的浓度;确定了所有溶质种类的突破曲线(BTC)。 BTC对溴化物和三氯乙烯的数据分析表明,MnO_4〜-降解TCE的一级速率常数为1.67±0.152 h〜(-1)。此外,TCE和含水层材料的原位MnO_4〜-需求速率得以估算。为0.54±0.371 h〜(-1)。这项研究表明,现场推挽试验是用于现场调查以确定污染物反应和氧化剂消耗率的有用且经济的工具,然后可将其用于优化地下水修复设计。

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