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Field demonstration of enhanced removal of chlorinated solvents in groundwater using biochar-supported nanoscale zero-valent iron

机译:现场演示使用生物炭负载的纳米零价铁增强去除地下水中的氯化溶剂

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The application of biochar-supported nanoscale zero-valent iron (biochar-nZVI) was successfully implemented in a field demonstration for the first time. To overcome the significant shortcomings of nZVI agglomeration for in-situ groundwater remediation, biochar-nZVI was injected into groundwater using direct-push and water pressure driven packer techniques for a site impacted by chlorinated solvents in the North China Plain. The field demonstration comprising two-step injections was implemented to demonstrate the effectiveness of nZVI and biochar-nZVI respectively. The outcome of the demonstration revealed a sharp reduction of contaminant concentrations of chlorinated solvents in 24 h following the first injection of nZVI, but the rebound of the concentrations of these contaminants in groundwater has occurred within the next two weeks. However, application of biochar-nZVI greatly enhanced the removal of chlorinated solvents in groundwater over the longer period of 42 days. The enhanced removal of chlorinated solvents in groundwater by biochar-nZVI is mainly attributed to the synergistic effects of adsorption and reduction. The adsorption by biochar significantly reduced the level of chlorinated solvents in groundwater. Overall increases in ferrous iron and chloride concentrations after the injections indicated that the reduction has occurred during the removal of chlorinated solvents in groundwater. In summary, biochar-supported nZVI could be potentially used for the effective remediation of chlorinated solvents in groundwater. (C) 2019 Elsevier B.V. All rights reserved.
机译:生物炭负载的纳米零价铁(biochar-nZVI)的应用首次在现场演示中成功实施。为克服nZVI团聚技术在原位地下水修复方面的重大缺陷,在华北平原地区,采用直接推动和水压驱动的封隔器技术将biochar-nZVI注入地下水。进行了包括两步进样的现场演示,分别演示了nZVI和biochar-nZVI的有效性。演示的结果表明,在首次注入nZVI之后的24小时内,氯化溶剂的污染物浓度急剧降低,但是在接下来的两周内,这些污染物在地下水中的浓度又出现了反弹。但是,使用生物炭-nZVI可以在42天的较长时间内大大提高了去除地下水中氯化溶剂的能力。生物炭-nZVI增强了地下水中氯化溶剂的去除,主要归因于吸附和还原的协同作用。生物炭的吸附显着降低了地下水中的氯化溶剂含量。注入后亚铁和氯化亚铁的总体浓度增加表明减少是在去除地下水中的氯化溶剂的过程中发生的。总而言之,生物炭支持的nZVI可以潜在地有效修复地下水中的氯化溶剂。 (C)2019 Elsevier B.V.保留所有权利。

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