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Degradation of perchloroethylene in cosolvent solutions by zero-valent iron

机译:零价铁降解助溶剂溶液中的全氯乙烯

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Remediation of sites contaminated by chlorinated organic compounds is a significant priority in the environmental field. Subsequently, the addition of cosolvent solutions for in situ flushing of contaminated source zones has been successfully field tested. However, the treatment of effluent fluids in such cleanup efforts is an often overlooked component of this technology implementation. The purpose of this research was to evaluate the effectiveness of zero-valent iron (Fe~0) in treating perchloroethylene (PCE) in an aqueous solution, and how the presence of a cosolvent (ethanol) and modification of the iron surface altered dechlorination. The modified iron surfaces included in this study were nickel-plated iron, acid-treated iron, and untreated iron surfaces. PCE dechlorination in the presence of each of the iron surfaces displayed pseudo first-order kinetics. The highest degradation rate of PCE occurred on the nickel-plated iron surface, 5.83 x 10~(-3) h~(-1), followed by the acid-treated iron, 4.92 x 10~(-3) h~(-1), and the untreated iron, 3.34 x 10~(-3) h~(-1). Dechlorination on each of the surfaces decreased with increasing cosolvent fractions. It was shown that as cosolvent fractions increased, PCE adsorption decreased and resulted in a concomitant decrease in PCE degradation rates.
机译:在环境领域,对被氯代有机化合物污染的场所进行修复是一项重要的工作。随后,已成功地现场测试了用于现场冲洗污染源区的助溶剂溶液的添加。但是,在这种清理工作中对废水进行处理是该技术实施中经常被忽略的部分。这项研究的目的是评估零价铁(Fe〜0)在水溶液中处理全氯乙烯(PCE)的有效性,以及助溶剂(乙醇)的存在和铁表面的改性如何改变脱氯作用。本研究中包括的改性铁表面为镀镍铁,酸处理铁和未经处理的铁表面。在每个铁表面的存在下PCE脱氯均显示出伪一级动力学。 PCE的最高降解速率发生在镀镍铁表面上,为5.83 x 10〜(-3)h〜(-1),其次是酸处理铁,为4.92 x 10〜(-3)h〜(- 1),以及未经处理的铁,为3.34 x 10〜(-3)h〜(-1)。每个表面上的脱氯都随着助溶剂分数的增加而降低。结果表明,随着助溶剂分数的增加,PCE的吸附减少,并导致PCE降解率随之降低。

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