ZVI/lapillus混合物在渗透反应屏障中除镍的优化设计

S. Bilardi, P. Calabrò, N. Moraci
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引用次数: 1

摘要

通过渗透反应屏障(PRB)技术对受污染地下水进行修复,涉及使用一种只要达到修复目标就能降低污染物浓度的反应介质。在本研究中,提出了使用零价铁(ZVI)和小毛石组成的颗粒混合物处理镍污染地下水。通过短期和长期柱实验,分析了以下因素对突破点发生的影响:i)单位体积ZVI百分比,ii)反应介质厚度,iii)流速和iv)初始镍浓度。当反应介质能够在修复所需的时间内保持其反应性和导电性时,确定最佳混合物组成(即单位体积内ZVI的最佳含量)。如本研究所示,该容量取决于污染锋通过反应介质的传播速度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optimal design of ZVI/lapillus mixtures for nickel removal in permeable reactive barriers
The remediation of contaminated groundwater, through the technology of permeable reactive barriers (PRB), involves the use of a reactive medium able to reduce the concentration of contaminants as long as remediation targets are achieved. In the present study, the use of granular mixtures composed of zero valent iron (ZVI) and lapillus for the treatment of nickel contaminated groundwater is proposed. Through short and long term column experiments, the effects of the following were analysed: i) ZVI percentage per unit volume, ii) reactive medium thickness, iii) flow velocity and iv) initial nickel concentration, on the breakthrough point occurrence (point where a rapid increase in nickel concentration in the effluent is observed). The optimal mixture composition (i.e. the optimal ZVI content per unit volume) was defined when the reactive medium was able to keep its reactivity and hydraulic conductivity for the time necessary for remediation. This capacity, as shown in this study, depends on the propagation velocity of the contamination front through the reactive medium.
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