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首页> 外文期刊>Journal of Hazardous Materials >Electrokinetic-enhanced bioaugmentation for remediation of chlorinated solvents contaminated clay
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Electrokinetic-enhanced bioaugmentation for remediation of chlorinated solvents contaminated clay

机译:电动增强的生物增强作用,用于修复氯溶剂污染的粘土

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摘要

Successful bioremediation of contaminated soils is controlled by the ability to deliver bioremediation additives, such as bacteria and/or nutrients, to the contaminated zone. Because hydraulic advection is not practical for delivery in clays, electrokinetic (EK) injection is an alternative for efficient and uniform delivery of bioremediation additive into low-permeability soil and heterogeneous deposits. EK-enhanced bioaugmentation for remediation of clays contaminated with chlorinated solvents is evaluated. Dehalo-coccoides (Dhc) bacterial strain and lactate ions are uniformly injected in contaminated clay and complete dechlorination of chlorinated ethene is observed in laboratory experiments. The injected bacteria can survive, grow, and promote effective dechlorination under EK conditions and after EK application. The distribution of Dhc within the clay suggests that electrokinetic transport of Dhc is primarily driven by electroosmosis. In addition to biodegradation due to bioaugmentation of Dhc, an EK-driven transport of chlorinated ethenes is observed in the clay, which accelerates cleanup of chlorinated ethenes from the anode side. Compared with conventional advection-based delivery, EK injection is significantly more effective for establishing microbial reductive dechlorination capacity in low-permeability soils.
机译:通过将生物修复添加剂(例如细菌和/或养分)输送到受污染区域的能力来控制受污染土壤的成功生物修复。由于水力平流在粘土中的输送不可行,因此电动(EK)注入是将生物修复添加剂高效,均匀地输送到低渗透性土壤和非均质沉积物中的替代方法。评估了EK增强的生物增强技术,以修复被氯化溶剂污染的粘土。将Dehalo-coccoides(Dhc)细菌菌株和乳酸离子均匀地注入受污染的粘土中,并在实验室实验中观察到氯化乙烯的完全脱氯。注入的细菌可以在EK条件下和EK应用后存活,生长并促进有效的脱氯。 Dhc在粘土中的分布表明Dhc的电动迁移主要由电渗驱动。除了由于Dhc的生物增强而导致的生物降解之外,在粘土中还观察到EK驱动的氯化乙烯的运输,这加速了阳极侧对氯化乙烯的清除。与传统的对流式输送相比,EK注入在低渗透性土壤中建立微生物还原性脱氯能力的效率明显更高。

著录项

  • 来源
    《Journal of Hazardous Materials 》 |2012年第30期| p.311-317| 共7页
  • 作者单位

    Civil and Environmental Engineering Department. Northeastern University. Boston. MA 02115, USA School of Resources and Environmental Science, Wuhan University, Wuhan 430079, P.R. China;

    Geosyntec Consultants, Columbia, MA, USA;

    Civil and Environmental Engineering Department. Northeastern University. Boston. MA 02115, USA;

    Geosyntec Consultants, Columbia, MA, USA;

    N1RAS A/S. AUeroed, Denmark;

    Capital Region of Denmark, Hilleroed, Denmark;

    Environmental Laboratory, Engineer Research and Development Center (ERDC), US Army Corps of Engineers, Vicksburg, MS, USA;

    Civil and Environmental Engineering Department. Northeastern University. Boston. MA 02115, USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    bioaugmentation; electrokinetic injection; contaminated clay; bacteria transport; chlorinated solvents;

    机译:生物强化电动注射受污染的粘土;细菌运输;氯化溶剂;

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