首页> 外文期刊>Journal of Environmental Science and Health. A, Toxic/Hazardous Substances & Environmental Engineering >Remediation of TCE-contaminated groundwater by a permeable reactive barrier filled with plant mulch (Biowall)
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Remediation of TCE-contaminated groundwater by a permeable reactive barrier filled with plant mulch (Biowall)

机译:通过充满植物覆盖物的可渗透反应性屏障(生物墙)修复受三氯乙烯(TCE)污染的地下水

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A pilot-scale permeable reactive barrier filled with plant mulch was installed at Altus Air Force Base in Oklahoma, USA to treat trichloroethylene (TCE) contamination in groundwater emanating from a landfill. The barrier was constructed in June 2002. It was 139 meters long, 7 meters deep, and 0.5 meters wide. The barrier is also called a Biowall because one of the mechanisms for removal of TCE is anaerobic biodegradation. This study aimed at evaluating the performance of the pilot-scale Biowall after its installation. Data from over four years' monitoring indicated that the Biowall greatly changed geochemistry in the study area and stimulated TCE removal. The concentration of TCE in the Biowall and downgradient of the Biowall was greatly reduced as compared to that in ground water upgradient of the Biowall, while the concentration of cis-DCE in the Biowall and downgradient of the Biowall was much higher than that observed upgradient of the Biowall. Over time, the concentration of vinyl chloride in the Biowall and downgradient of the Biowall increased. Dehalococcoides DNA was detected within and downgradient of the Biowall, corresponding to the observation that vinyl chloride was produced at these locations. Results from a tracer study indicated that the regional groundwater flow pattern ultimately determined the flow direction in the area around the Biowall. The natural groundwater velocity was estimated at an average of 0.060 ± 0.015 m/d.
机译:在美国俄克拉荷马州的阿尔特斯空军基地安装了一个中试规模的可渗透反应性屏障,该屏障装有植物覆盖物,用于处理垃圾填埋场产生的地下水中的三氯乙烯(TCE)污染。该屏障建于2002年6月。它长139米,深7米,宽0.5米。该屏障也称为生物墙,因为去除TCE的机制之一是厌氧生物降解。这项研究旨在评估中试规模的生物墙安装后的性能。超过四年的监测数据表明,生物墙大大改变了研究区域的地球化学,并刺激了三氯乙烯的去除。与地下水中生物墙的上升相比,生物墙中TCE的浓度和生物墙的下降大大降低,而生物墙中顺式-DCE的浓度和生物墙的下降远高于观察到的生物墙中TCE的浓度和下降。生物墙。随着时间的流逝,生物墙中氯乙烯的浓度和生物墙的降级增加。在Biowall内和降级中检测到了Dehalococcoides DNA,这与在这些位置产生氯乙烯的观察结果相对应。示踪研究的结果表明,区域地下水的流型最终决定了生物墙周围区域的流向。估计的自然地下水速度平均为0.060±0.015 m / d。

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