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Remediation of heavy metal contaminated fine grained soils using electrokinetic geosynthetics

机译:用动电土工合成材料修复重金属污染的细粒土壤

摘要

Among the most promising novel methods for treating heavy metal contamination in fine soils is electrokinetic soil remediation - passing a low-voltage current through the soil that causes the target contaminants to migrate to the electrodes where they can be captured, broken down or immobilized. However, the widespread in-situ application of this process as a creative solution for the problem of metal contamination has been prevented because of a variety of problems, some of which are linked to the available electrodes. The limitations related to the available electrodes include: corrosion of the anodes difficulties in removing contaminated water and gases from the electrodes poor electrical contact of electrodes with the soil, cost of producing functioning electrodes, and limitations related to the physical form of the electrodes. Many of these historical limitations have been eliminated by the introduction of Electrokinetic Geosynthetics (EKGs) which combine electrokinetics with geosynthetics technology to create geosynthetice lectrodes. In this investigation, the use of an EKG system to capture and dispose of zinc ions from kaolin soil is evaluated by conducting extensive labor4tOry tests using specially designed bench scale tanks. A comprehensive test programme was established to include two electrokinetic remediation removal approaches: One Process Approach and Two Process Approach. The former was achieved by electro, migration of metal contaminants towards the cathode electrode without any external enhancement agent while the latter combined soil flushing with the electrokinetic process. The testing technique enabled the study of effects of. water flushing, soil depth, intermittent currents and replenishing draining chambers along the soil profile with deionised water, on the efficiency of cation removal. The respective responses were primarily presented in terms of electrical current/test duration, water content/test duration, zinc concentration/normalised distance from the anode, zinc concentration/ test duration and pW normalised distance from the anode. Results indicated that the EKG system has a lot of potential for cleaning up soil at sites contaminated by heavy metals and other harmful compounds. The in-depth analysis also showed clearly that combining the technique with soil flushing improved the effectiveness of the treatment operation. The study considerably extended the understandinogf the performance of electrokinetic technology particularly in fine grained soil and are as where further research would improve this understanding were highlighted.
机译:电动土壤修复是处理细土壤中重金属污染的最有前途的新颖方法,即通过土壤中的低压电流通过,使目标污染物迁移到电极上,从而可以将其捕获,分解或固定。然而,由于各种问题,已经阻止了该方法作为金属污染问题的创造性解决方案的广泛现场应用,其中一些问题与可用的电极有关。与可用电极有关的限制包括:阳极腐蚀,难以从电极中除去污染的水和气体,电极与土壤的电接触不良,生产起作用的电极的成本,以及与电极的物理形式有关的限制。通过引入电动土工合成材料(EKG),消除了许多这些历史局限性,该技术将电动学与土工合成技术相结合以创建土工合成电极。在这项调查中,通过使用专门设计的台式水箱进行了广泛的劳动试验,评估了使用EKG系统从高岭土中捕获和处理锌离子的方法。建立了一个全面的测试程序,其中包括两种电动修复去除方法:一种工艺方法和两种工艺方法。前者是通过不带任何外部增强剂的金属污染物向阴极电极的电迁移而实现的,而后者则通过电动过程结合了土壤冲洗。测试技术使研究效果成为可能。冲洗水,土壤深度,间歇性水流以及用去离子水沿土壤剖面补充排水室,可有效去除阳离子。分别以电流/测试持续时间,水含量/测试持续时间,锌浓度/距阳极的标准化距离,锌浓度/测试持续时间和距阳极的pW标准化距离表示了相应的响应。结果表明,EKG系统具有清理重金属和其他有害化合物污染的土壤的巨大潜力。深入分析还清楚地表明,将技术与土壤冲洗相结合可以提高处理操作的效率。该研究极大地扩展了对电动技术性能的理解,特别是在细粒土壤中的应用,并强调了进一步的研究将改善这种理解的地方。

著录项

  • 作者

    Kalumba Denis;

  • 作者单位
  • 年度 2006
  • 总页数
  • 原文格式 PDF
  • 正文语种 English
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