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In situ bioremediation of a cis-dichloroethylene-contaminated aquifer utilizing methane-rich groundwater from an uncontaminated aquifer

机译:利用未经污染的含水层中富含甲烷的地下水原位生物修复被二氯乙烯污染的含水层

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摘要

At a trichloroethylene (TCE)-contaminated site in Chikura, Chiba, Japan, TCE had spread over to the first and second aquifers over years. After 8 years of pumping and treatment, finally derivative of TCE, cis-dichloroethylene (c-DCE) remained only in the second aquifer. In this study, feasibility of a low cost in situ bioremediation utilizing groundwater of the third aquifer, which contained natural dissolved methane possibly derived from natural gas field nearby, to stimulate methane-oxidizing bacteria was examined. In vitro experiment showed that a mixture of the groundwater from the second and third aquifers stimulated a growth of methane oxidizing bacteria and enhanced c-DCE degradation. The groundwater of the third aquifer was introduced into the second aquifer in situ. The population of methanotrophs with high K_(max) and K_m for methane uptake increased, resulting in successful degradation of c-DCE at a monitoring well 2 m downgradient of the injection well.
机译:在日本千叶县千仓市受三氯乙烯(TCE)污染的地点,TCE多年来已经扩散到第一和第二含水层。经过8年的抽水和处理,最终的TCE衍生物,顺式二氯乙烯(c-DCE)仅保留在第二含水层中。在这项研究中,研究了利用第三含水层的地下水低成本原位生物修复的可行性,该地下水含有可能来自附近天然气田的天然溶解甲烷,可以刺激甲烷氧化细菌。体外实验表明,第二和第三含水层中的地下水混合物刺激了甲烷氧化细菌的生长并增强了c-DCE的降解。将第三含水层的地下水原位引入第二含水层。高甲烷吸收率的K_(max)和K_m的甲烷营养生物种群增加,导致c-DCE在注入井下降2 m的监测井处成功降解。

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