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Lead (Ⅱ) removal from natural soils by enhanced electrokinetic remediation

机译:电动修复增强方法从天然土壤中去除铅(Ⅱ)

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Electrokinetic remediation is a very effective method to remove metal from fine-grained soils having low adsorption and buffering capacity. However, remediation of soil having high alkali and adsorption capacity via the electrokinetic method is a very difficult process. Therefore, enhancement techniques are required for use in these soil types. In this study, the effect of the presence of minerals having high alkali and cation exchange capacity in natural soil polluted with lead (Ⅱ) was investigated by means of the efficiency of electrokinetic remediation method. Natural soil samples containing clinoptilolite, gypsum and calcite minerals were used in experimental studies. Moreover, a sample containing kaolinile minerals was studied to compare with the results obtained from other samples. Best results for soils bearing alkali and high sorption capacity minerals were obtained upon addition of 3 mol AcH and application of 20 V constant potential after a remediation period of 220 h. In these test conditions, lead (Ⅱ) removal efficiencies for these samples varied between 60% and 70% up to 0.55 normalized distance. Under the same conditions, removal efficiencies in kaolinite sample varied between 50% and 95% up to 0.9 normalized distance.
机译:电动修复是一种从吸附和缓冲能力低的细颗粒土壤中去除金属的非常有效的方法。然而,通过电动方法修复具有高碱和吸附能力的土壤是非常困难的过程。因此,需要在这些土壤类型中使用增强技术。本研究利用电动修复方法,研究了铅(Ⅱ)污染的天然土壤中高碱金属和阳离子交换能力高的矿物质存在的影响。在实验研究中使用了含有斜发沸石,石膏和方解石矿物的天然土壤样品。此外,还对含高岭土矿物的样品进行了研究,以与其他样品的结果进行比较。在220 h的修复时间后,添加3 mol AcH并施加20 V恒定电位,可获得含碱和高吸附能力矿物的土壤的最佳结果。在这些测试条件下,这些样品中铅(Ⅱ)的去除效率在60%到70%之间变化,最大归一化距离为0.55。在相同条件下,高岭石样品的去除效率最高可达0.9归一化距离,介于50%和95%之间。

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