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Application of weak magnetic field coupling with zero-valent iron for remediation of groundwater and wastewater: A review

机译:弱磁场耦合与零价熨斗进行地下水和废水修复:综述

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Zero valent iron (ZVI) has been extensively used for remediation of contaminated groundwater and wastewater. The removal of contaminants by alone ZVI is significantly limited by its intrinsic passive layer and influenced by the precipitation of iron (hydr)oxides on the surface of ZVI, which affects the further reaction of ZVI with contaminants. The premagnetization of ZVI and the addition of weak magnetic field (WMF) were proposed to resolve these problems. The application of a WMF is considered to be a promising and cutting-edge technology to increase the corrosion of ZVI, rejuvenate or improve the reactivity of ZVI, expand the range of target contaminants, and improve the removal efficiency of ZVI system. This study summarized the latest advances of WMF coupling with ZVI and magnetic ZVI derivative technologies for sequestration of (a) heavy metals, (b) arsenic, (c) selenium, (d) antimony, and degradation of (e) chlorinated organic compounds, (f) nitroaromatic compounds, (g) dyes, and (h) others. The remediation performance and reaction mechanisms were discussed and summarized. The results showed that WMF-ZVI and magnetic ZVI derivative technologies were the mainstream technology and had excellent remediation performance for the above contaminants. Concerning the future development and application of WMF-ZVI and magnetic ZVI derivative technologies, some suggestions are put forward and some conclusions are drawn. (c) 2020 Elsevier Ltd. All rights reserved.
机译:零价铁(ZVI)已广泛用于修复污染的地下水和废水。通过单独的ZVI除去污染物是由其内在无源层的显着限制,并受ZVI表面上的铁(氢)氧化物的沉淀,这影响ZVI与污染物的进一步反应。提出了ZVI的预留和添加弱磁场(WMF)以解决这些问题。 WMF的应用被认为是一种有前途和尖端的技术,以增加ZVI的腐蚀,恢复活力或改善ZVI的反应性,扩大靶污染物的范围,提高ZVI系统的去除效率。该研究总结了与ZVI和磁性ZVI衍生物技术的最新进展,用于螯合(a)重金属的封存,(b)砷,(c)硒,(d)锑,(e)氯化有机化合物的降解, (f)硝基芳族化合物,(g)染料,和(h)其他。讨论并汇总了修复性能和反应机制。结果表明,WMF-ZVI和磁性ZVI衍生物技术是主流技术,对上述污染物具有优异的修复性能。关于WMF-ZVI和磁性ZVI衍生技术的未来发展和应用,提出了一些建议,绘制了一些结论。 (c)2020 elestvier有限公司保留所有权利。

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