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使用零价铁和颗粒状活性炭从垃圾渗滤液中去除重金属。

Removal of heavy metals from landfill leachate using zero valent iron and granular activated carbon.

机构信息

Department of Civil, Energy, Environmental and Materials Engineering (DICEAM), Mediterranea University of Reggio Calabria, Reggio Calabria, Italy.

出版信息

Environ Technol. 2020 Jan;41(4):498-510. doi: 10.1080/09593330.2018.1503725. Epub 2018 Aug 2.

Abstract

The possibility of a landfill leachate pre-treatment, aiming at heavy metals removal, by means of either zero valent iron (ZVI), or granular activated carbon (GAC) or by a mixture of the two materials, was investigated in this paper through batch and column tests. For this purpose, a synthetic landfill leachate containing heavy metals (i.e. Cu, Ni, Zn), chloride, sulphates, ammonium and organic matter was prepared. Batch tests results demonstrated the efficiency of ZVI, GAC and ZVI/GAC mixture in heavy metals removal (efficiency > 90%) and their negligible effect on the other contaminants. Column tests showed as pure ZVI is by far more efficient than pure GAC in the long term. The influence of humic acids (HA) on the reactive and hydraulic behaviour of ZVI was also studied through column tests. The presence of HA in the leachate caused a reduction of ZVI removal efficiency and a considerable decrease in its hydraulic conductivity. Results of a column test carried out using the ZVI/GAC granular mixture showed as the removal efficiency over time ranges from 100% to 89% for Cu, from 93% to 80% for Ni and from 98% to 95% for Zn. The use of a filter filled with the ZVI/GAC mixture could find application for leachate pre-treatment having the objective of removing heavy metals prior the final co-treatment with municipal wastewater minimizing adverse side effect on the process (e.g. transfer of heavy metals in the excess sludge to be used in agriculture).

摘要

本文通过批式和柱式试验研究了采用零价铁(ZVI)、颗粒状活性炭(GAC)或两者混合物对垃圾渗滤液进行预处理以去除重金属的可能性。为此,制备了一种含有重金属(即 Cu、Ni、Zn)、氯化物、硫酸盐、铵和有机物的合成垃圾渗滤液。批式试验结果表明,ZVI、GAC 和 ZVI/GAC 混合物在去除重金属方面的效率很高(效率>90%),对其他污染物的影响可以忽略不计。柱式试验表明,在长期运行中,纯 ZVI 的效率远高于纯 GAC。通过柱式试验还研究了腐殖酸(HA)对 ZVI 反应和水力行为的影响。渗滤液中存在 HA 会降低 ZVI 的去除效率,并使其水力传导率显著降低。采用 ZVI/GAC 颗粒混合物进行的柱式试验结果表明,Cu 的去除效率随时间的变化范围为 100%至 89%,Ni 的去除效率为 93%至 80%,Zn 的去除效率为 98%至 95%。使用填充有 ZVI/GAC 混合物的过滤器进行渗滤液预处理,可以去除重金属,然后与城市废水进行最终共处理,从而最小化对工艺的不利影响(例如,将重金属转移到用于农业的过量污泥中)。

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