首页> 外文期刊>Electrochimica Acta >Removal of mercury from marine sediments by the combined application of a biodegradable non-ionic surfactant and complexing agent in enhanced-electrokinetic treatment
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Removal of mercury from marine sediments by the combined application of a biodegradable non-ionic surfactant and complexing agent in enhanced-electrokinetic treatment

机译:通过可生物降解的非离子型表面活性剂和络合剂在增强型电动处理中的联合应用去除海洋沉积物中的汞

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In this work, the Hg removal potentiality of an electrokinetic (EK) decontamination treatment enhanced by a biodegradable complexing agent (MGDA) also in combination with a biodegradable surfactant (Tween (R) 80) was investigated to decontaminate heavily contaminated marine sediments. The main results revealed that the nature of sediments and their interactions with different enhancing agents significantly influenced the remediation processes. A general increase of pH values along the sediment specimen was observed due to the strong buffering capacity of the carbonates, which are the main constituent minerals. This, in combination with the high organic matter and sulphide sediment content, resulted in very poor contaminant mobilization without any appropriate conditioning agents. The use of EDTA as a processing fluid resulted in a modest increase in Hg removal of similar to 15%, whereas a further improvement in the Hg removal rate (similar to 39%) was achieved by replacing EDTA with MGDA as the anodic solution in response to its ability to form stable negative complexes with mercury, which can be moved towards the anode. A significantly higher Hg-removal of similar to 71% was obtained by the simultaneous use of MGDA and Tween (R) 80 due to their synergic action in remedial processes and, especially, due to the improved selective action of the non-ionic surfactant adopted in favour of organo-Hg-complex removal. Compared with other Hg-removal technologies, the investigated enhanced-EK treatment allows the achievement of remediation targets, which can hardly met by one-stage processes. The data can be useful for predicting the remediation activity responses, as well as for guiding the design and scaling-up of EK treatment of Hg-contaminated sediments. In addition, the knowledge of the investigated Hg-removal mechanism can provide basic information, which is helpful for improving the development of further novel enhanced-EK technologies. (C) 2016 Elsevier Ltd. All rights reserved.
机译:在这项工作中,研究了通过可生物降解的络合剂(MGDA)和可生物降解的表面活性剂(Tween®80)组合进行的电动(EK)净化处理的汞去除潜力,以净化严重污染的海洋沉积物。主要结果表明,沉积物的性质及其与不同增强剂的相互作用显着影响了修复过程。由于碳酸盐(它们是主要组成矿物)具有很强的缓冲能力,因此沿沉积物标本观察到pH值总体增加。再加上高有机物含量和硫化物沉淀物含量,导致在没有任何适当调节剂的情况下污染物的迁移能力非常差。使用EDTA作为处理液会导致Hg的去除率略有增加,达到15%,而通过用MGDA作为阳极溶液代替EDTA,可以进一步提高Hg去除率(接近39%)其与汞形成稳定的负配合物的能力,可以向阳极移动。同时使用MGDA和Tween(R)80,由于它们在补救过程中的协同作用,尤其是由于采用的非离子表面活性剂的选择性作用得到了改善,因此汞的去除率明显提高了约71%。有利于有机汞复合物的去除。与其他除汞技术相比,研究的增强型EK处理可以实现补救目标,而这一目标很难通过一个阶段的过程来实现。该数据可用于预测补救活动的响应,以及指导对汞污染沉积物进行EK处理的设计和扩大规模。此外,所研究的汞去除机理的知识可以提供基本信息,这有助于改进其他新型增强型EK技术的开发。 (C)2016 Elsevier Ltd.保留所有权利。

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