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Coupling of zero valent iron and biobarriers for remediation of trichloroethylene in groundwater

机译:零价铁与生物屏障的耦合修复地下水中的三氯乙烯

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This study attempted to construct a three series barrier system to treat high concentrations of trichloroethylene (TCE; 500 mg/L) in synthetic groundwater. The system consisted of three reactive barriers using iron fillings as an iron-based barrier in the first column, sugarcane bagasse mixed with anaerobic sludge as an anaerobic barrier in the second column, and a biofilm coated on oxygen carbon inducer releasing material as an aerobic barrier in the third column. In order to evaluate the extent of removal of TCE and its metabolites in the aquifer down gradient of the barrier system, a fourth column filled with sand was applied. Residence time of the system was investigated by a bromide tracer test. The results showed that residence time in the column system of the control set and experimental set were 23.62 and 29.99 days, respectively. The efficiency of the three series barrier system in removing TCE was approximately 84% in which the removal efficiency of TCE by the iron filling barrier, anaerobic barrier and aerobic barrier were 42%, 16% and 25%, respectively. cis-Dichloroethylene (cis-DCE), vinyl chloride (VC), ethylene and chloride ions were observed as metabolites following TCE degradation. The presence of chloride ions in the effluent from the column system indicated the degradation of TCE. However, cis-DCE and VC were not fully degraded by the proposed barrier system which suggested that another remediation technology after the barrier treatment such as air sparging and adsorption by activated carbon should be conducted.
机译:这项研究试图构建一个三级屏障系统来处理合成地下水中的高浓度三氯乙烯(TCE; 500 mg / L)。该系统由三个反应性屏障组成,在第一列中使用铁填料作为铁基屏障,在第二列中使用甘蔗渣与厌氧污泥混合作为厌氧屏障,在生物膜上覆盖生物膜,在氧气诱导剂上释放材料作为有氧屏障在第三栏中。为了评估在屏障系统的含水层向下梯度中TCE及其代谢物的去除程度,使用了第四个装有沙子的色谱柱。通过溴化物示踪剂测试研究了系统的停留时间。结果表明,对照组和实验组在色谱柱系统中的停留时间分别为23.62天和29.99天。三级屏障系统去除三氯乙烯的效率约为84%,其中铁填充屏障,厌氧屏障和好氧屏障对三氯乙烯的去除效率分别为42%,16%和25%。在三氯乙烯(TCE)降解后,观察到顺式二氯乙烯(cis-DCE),氯乙烯(VC),乙烯和氯离子为代谢产物。柱系统流出物中氯离子的存在表明三氯乙烯的降解。然而,所提出的阻隔系统不能完全降解顺式-DCE和VC,这表明在阻隔处理后应进行另一种修复技术,例如鼓入空气和用活性炭吸附。

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