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Control of trichloroethylene plume migration using a biobarrier system: a field-scale study

机译:使用生物屏障系统控制三氯乙烯羽流的迁移:实地研究

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The objective of this field-scale study was to evaluate the effectiveness of controlling trichloroethylene (TCE) plume migration using the polycolloid substrate (PS) biobarrier. The developed PS (containing soybean oil, lactate and surfactants) could release substrate to enhance the TCE dechlorination. In this study, a biobarrier comprising PS injection wells was installed. Injection wells were installed at 5-m intervals, and approximately 15 L of PS was injected into each well. Results show that TCE concentrations in the injection wells dropped from an average of 87 μg/L to below 1 μg/L after 35 days of PS injection. The total organic carbon concentrations in the injection wells increased from an average of 2.1-543 mg/L after 30 days of PS injection. The dissolved oxygen (DO) concentrations and oxidation-reduction potential (ORP) values dropped from an average of 1.6 mg/L to below 0.1 mg/L and from 124 mv to -14 mv after 20 days of injection, respectively. The DO and ORP remained in anaerobic conditions during the remaining 100 days of the operational period. TCE degradation by-products were observed in groundwater samples during the operational period. This reveals that the addition of PS could effectively enhance the reductive dechlorinating of TCE.
机译:这项大规模研究的目的是评估使用聚胶体基质(PS)生物屏障控制三氯乙烯(TCE)羽流迁移的有效性。发达的PS(包含大豆油,乳酸和表面活性剂)可以释放底物以增强TCE的脱氯作用。在这项研究中,安装了包括PS注入井的生物屏障。每隔5分钟安装一次注入井,并向每个井中注入约15 L PS。结果表明,注射PS后35天,注射孔中的TCE浓度从平均87μg/ L降至1μg/ L以下。 PS注入30天后,注入井中的总有机碳浓度从平均2.1-543 mg / L增加。注射20天后,溶解氧(DO)浓度和氧化还原电位(ORP)值分别从平均1.6 mg / L降至0.1 mg / L以下和从124 mv降至-14 mv。在手术期的剩余100天内,DO和ORP保持在厌氧状态。在运行期间,在地下水样品中观察到三氯乙烯的降解副产物。这表明添加PS可以有效地增强TCE的还原性脱氯作用。

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