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Removal of heavy metals and arsenic from contaminated soils using bioremediation and chelant extraction techniques

机译:使用生物修复和螯合萃取技术去除污染土壤中的重金属和砷

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摘要

A combined chemical and biological treatment scheme was evaluated in this study aiming at obtaining the simultaneous removal of metalloid arsenic and cationic heavy metals from contaminated soils. The treatment involved the use of the iron reducing microorganism Desulfuromonas palmitatis, whose activity was combined with the chelating strength of EDTA. Taking into consideration that soil iron oxides are the main scavengers of As, treatment with iron reducing microorganisms aimed at inducing the reductive dissolution of soil oxides and thus obtaining the release of the retained As. The main objective of using EDTA was the removal of metal contaminants, such as Pb and Zn, through the formation of soluble metal chelates. Experimental results however indicated that EDTA was also indispensable for the biological reduction of Fe(Ⅲ) oxides. The bacterial activity was found to have a pronounced positive effect on the removal of arsenic, which increased from the value of 35% obtained during the pure chemical treatment up to 90% in the presence of D. palmitatis. In the case of Pb, the major part, i.e. approximately 85%, was removed from soil with purely chemical mechanisms, whereas the biological activity slightly improved the extraction, increasing the final removal up to 90%. Co-treatment had negative effect only for Zn, whose removal was reduced from 80% under abiotic condition to approximately 50% in the presence of bacteria.
机译:本研究评估了化学和生物处理相结合的方案,旨在从受污染的土壤中同时去除准金属砷和阳离子重金属。该治疗涉及使用铁还原微生物棕榈酸脱硫杆菌,其活性与EDTA的螯合强度相结合。考虑到土壤氧化铁是砷的主要清除剂,用还原铁的微生物进行处理旨在诱导土壤氧化物的还原溶解,从而释放出残留的砷。使用EDTA的主要目的是通过形成可溶性金属螯合物来去除金属污染物,例如Pb和Zn。但是实验结果表明,EDTA对于生物还原Fe(Ⅲ)氧化物也是必不可少的。发现细菌活性对砷的去除具有显着的积极作用,从纯化学处理过程中获得的35%的值增加到存在棕榈棕杆菌时的90%。对于Pb来说,主要部分(即约85%)是通过纯粹的化学机理从土壤中去除的,而生物活性则稍微改善了提取效果,最终去除率高达90%。协同处理仅对锌具有负面影响,而锌在细菌存在下的去除率从非生物条件下的80%降至约50%。

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