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Application of coupled zero-valent iron/biochar system for degradation of chlorobenzene-contaminated groundwater

机译:耦合零价铁/生物炭系统在氯苯污染地下水降解中的应用

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摘要

A novel iron-carbon micro-electrolysis system, bamboo-derived biochar coupled with zero-valent iron (ZVI), was investigated for chlorobenzene (CB)-contaminated groundwater removal. Influences of initial pH value, mass ratio of the ZVI/Biochar, initial CB concentration and ionic strength of the ZVI/Biochar micro-electrolysis were studied. The results indicated that the increase of initial pH led to the decrease of the CB removal efficiency. While the optimum mass ratio of ZVI to biochar was 2:1, the improved initial concentration and reaction time were 33.68 mg/L and 4 h, respectively. When pH of 2, mass ratio of 2:1 and reaction time of 4 h were applied, the CB removal efficiency was 99.92%. Enhanced degradation of CB was observed with increased Cl- concentration. When the Cl- concentration of 1,000 mg/L and reaction time of 1 h were applied, the CB removal efficiency arrived at 98.2%. Additionally, considering that biochar is cost-effective and readily produced, the coupled ZVI/Biochar micro-electrolysis could represent an effective approach for the treatment of groundwater containing chlorinated organic compounds in the future.
机译:对氯苯(CB)的氯苯(CB)除去氯苯,研究了一种新型铁 - 碳微电解系统,竹衍生的生物炭加上零价铁(ZVI)。研究了初始pH值,ZVI / Biochar的质量比,ZVI / Biochar微电解的初始CB浓度和离子强度的影响。结果表明,初始pH的增加导致CB去除效率降低。虽然ZVI至BioChar的最佳质量比为2:1,但分别改善的初始浓度和反应时间分别为33.68mg / L和4小时。当pH为2,质量比为2:1和4小时的反应时间,Cb去除效率为99.92%。通过增加的CL浓度观察到CB的增强降解。当施加1,000mg / L和1小时的反应时间时,Cb去除效率达到98.2%。另外,考虑到BioChar具有成本效益和容易产生的,偶联的ZVI / Biochar微电解可以代表未来处理含氯有机化合物的地下水的有效方法。

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