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Simultaneous removal of CUII, NIII and ZN(II) by a granular mixture of zero-valent iron and pumice in column systems

机译:柱系统中零价铁和浮石的颗粒混合物同时去除CUII,NIII和ZN(II)

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摘要

The granular mixtures between zero-valent iron (ZVI) and other materials (e.g. sand, pumice) have been recently proposed to overcome the problems (e.g. clogging) related to the use of ZVI alone in treatment systems such as permeable reactive barriers or individual potabilisation systems. This paper presents the results of the research activity, carried out by column tests, aimed at comparing the performance of a granular mixture between ZVI and pumice (weight ratio 30:70) and of pure ZVI for the individual and combined removal of Cu-II, Ni-II and Zn-II. The specific objective was to verify the occurrence of phenomena of mutual interaction and/or competition among contaminants. In fact, although metal removal by ZVI has been extensively documented in the past, the great majority of studies examined either very simple systems (i.e. single metal solutions) or very complicated ones (e.g. real acid mine drainage). In both cases, and for different reasons, the occurrence of mutual interactions (positive or negative) among the chemical species present in water is impossible to detect. For these reasons, this paper compares column experiments carried out in similar conditions using both monocontaminant and pluricontaminant solutions. The concentration values used for the three contaminants were of 500 or 50mg/l for Cu-II and 50mg/l for Ni-II and Zn-II. In monocontaminant systems, in both reactive media the removal sequence observed is Cu>Zn>Ni. In pluricontaminant solutions, Cu-II removal is unaffected by the presence of the other metals while the removal efficiencies of Ni and Zn decrease in respect to monocontaminant tests. In the mixture ZVI/pumice, the long-term removal efficiency reduction is higher for Zn (about 58% in respect to the experiment carried out with the solution containing Zn only) than for Ni (reduction of about 33%), leading to the removal sequence Cu>Ni>Zn for the test with the highest Cu-II concentration. This behaviour has been explained, hypothesising the possible spontaneous formation of a bimetallic system between ZVI and Cu capable of enhancing Ni removal especially in the short term.
机译:最近提出了零价铁(ZVI)与其他材料(例如沙子,浮石)之间的粒状混合物,以克服与在处理系统中单独使用ZVI有关的问题(例如堵塞),例如可渗透的反应性屏障或单独的增钙作用系统。本文介绍了通过柱测试进行的研究活动的结果,旨在比较ZVI和浮石(重量比为30:70)和纯ZVI的颗粒混合物对于单独和联合去除Cu-II的性能。 ,Ni-II和Zn-II。具体目标是验证污染物之间相互相互作用和/或竞争的现象的发生。实际上,尽管过去已广泛记录了ZVI去除金属的情况,但绝大多数研究都对非常简单的系统(即单一金属溶液)或非常复杂的系统(例如实际的酸性矿井排水)进行了研究。在这两种情况下,由于不同的原因,都无法检测到水中存在的化学物质之间的相互作用(正向或负向)。由于这些原因,本文比较了使用单污染物溶液和多污染物溶液在相似条件下进行的色谱柱实验。用于三种污染物的浓度值对于Cu-II为500或50mg / l,对于Ni-II和Zn-II为50mg / l。在单污染物系统中,在两种反应介质中,观察到的去除顺序为Cu> Zn> Ni。在多污染物溶液中,Cu-II的去除不受其他金属的存在的影响,而相对于单污染物测试,Ni和Zn的去除效率降低。在ZVI /浮石混合物中,Zn的长期去除效率降低程度较高(相对于仅含Zn的溶液进行的实验而言约为58%),Ni的去除率长期降低率约为33%。 Cu-Ni浓度最高的测试的去除顺序为Cu> Ni> Zn。已经解释了这种行为,并假设可能在ZVI和Cu之间自发形成双金属体系,从而特别是在短期内能够增强Ni的去除。

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