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Behavior and Distribution of Heavy Metals Including Rare Earth Elements, Thorium, and Uranium in Sludge from Industry Water Treatment Plant and Recovery Method of Metals by Biosurfactants Application

机译:工业水处理厂污泥中包括稀土元素、,和铀在内的重金属的行为与分布以及生物表面活性剂对金属的回收方法

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摘要

In order to investigate the behavior, distribution, and characteristics of heavy metals including rare earth elements (REEs), thorium (Th), and uranium (U) in sludge, the total and fractional concentrations of these elements in sludge collected from an industry water treatment plant were determined and compared with those in natural soil. In addition, the removal/recovery process of heavy metals (Pb, Cr, and Ni) from the polluted sludge was studied with biosurfactant (saponin and sophorolipid) elution by batch and column experiments to evaluate the efficiency of biosurfactant for the removal of heavy metals. Consequently, the following matters have been largely clarified. (1) Heavy metallic elements in sludge have generally larger concentrations and exist as more unstable fraction than those in natural soil. (2) Nonionic saponin including carboxyl group is more efficient than sophorolipid for the removal of heavy metals in polluted sludge. Saponin has selectivity for the mobilization of heavy metals and mainly reacts with heavy metals in F3 (the fraction bound to carbonates) and F5 (the fraction bound to Fe-Mn oxides). (3) The recovery efficiency of heavy metals (Pb, Ni, and Cr) reached about 90–100% using a precipitation method with alkaline solution.
机译:为了研究污泥中重金属(包括稀土元素(REEs),or(Th)和铀(U))的行为,分布和特性,从工业用水中收集的污泥中这些元素的总浓度和分数浓度确定处理植物并与天然土壤中的植物进行比较。此外,通过分批和柱实验,通过生物表面活性剂(皂苷和槐糖脂)洗脱研究了从污染污泥中重金属(Pb,Cr和Ni)的去除/回收过程,以评估生物表面活性剂去除重金属的效率。 。因此,以下事项已大为澄清。 (1)污泥中的重金属元素通常比天然土壤中的重金属元素浓度更高,并且存在的不稳定部分更高。 (2)含羧基的非离子皂苷比槐糖脂更有效地去除了污泥中的重金属。皂苷对重金属的移动具有选择性,并且主要与F3(与碳酸盐结合的部分)和F5(与Fe-Mn氧化物结合的部分)中的重金属反应。 (3)采用碱溶液沉淀法可回收重金属(Pb,Ni和Cr)的效率约为90-100%。

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