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Role of organic amendments on enhanced bioremediation of heavy metal(loid) contaminated soils

机译:有机改良剂在重金属(胶体)污染土壤的生物修复中的作用

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摘要

As land application becomes one of the important waste utilization and disposal practices, soil is increasingly being seen as a major source of metal(loid)s reaching food chain, mainly through plant uptake and animal transfer. With greater public awareness of the implications of contaminated soils on human and animal health there has been increasing interest in developing technologies to remediate contaminated sites. Bioremediation is a natural process which relies on soil microorganisms and higher plants to alter metal(loid) bioavailability and can be enhanced by addition of organic amendments to soils. Large quantities of organic amendments, such as manure compost, biosolid and municipal solid wastes are used as a source of nutrients and also as a conditioner to improve the physical properties and fertility of soils. These organic amendments that are low in metal(loid)s can be used as a sink for reducing the bioavailability of metal(loid)s in contaminated soils and sediments through their effect on the adsorption, complexation, reduction and volatilization of metal(loid)s. This review examines the mechanisms for the enhanced bioremediation of metal(loid)s by organic amendments and discusses the practical implications in relation to sequestration and bioavailability of metal(loid)s in soils.
机译:随着土地利用成为重要的废物利用和处置方式之一,土壤越来越被视为主要通过植物吸收和动物转移进入食物链的主要金属(胶体)来源。随着公众对受污染土壤对人类和动物健康影响的认识的提高,人们对开发修复受污染场地的技术的兴趣日益浓厚。生物修复是一种自然过程,它依赖于土壤微生物和高等植物来改变金属(金属)的生物利用度,并且可以通过向土壤中添加有机改良剂来增强。大量的有机改良剂,例如肥料堆肥,生物固体和城市固体废物,被用作养分的来源,也被用作改善土壤物理性质和肥力的调节剂。这些金属(胶体)含量低的有机改性剂可通过降低金属(胶体)对金属(胶体)的吸附,络合,还原和挥发的作用而用作降低污染土壤和沉积物中金属(胶体)生物利用度的汇。 s。这篇综述探讨了通过有机修饰物增强金属(金属)生物修复的机理,并讨论了与土壤中金属(金属)的螯合和生物利用度有关的实际含义。

著录项

  • 来源
    《Journal of Hazardous Materials 》 |2011年第3期| p.549-574| 共26页
  • 作者单位

    Centre for Environmental Risk Assessment and Remediation (CERAR). University of South Australia, Mawson Lakes. SA 5095, Australia, Cooperative Research Centre for Contamination Assessment and Remediation of the Environment (CRC CARE), Adelaide, SA 5095, Australia;

    Centre for Environmental Risk Assessment and Remediation (CERAR). University of South Australia, Mawson Lakes. SA 5095, Australia, Cooperative Research Centre for Contamination Assessment and Remediation of the Environment (CRC CARE), Adelaide, SA 5095, Australia;

    Centre for Environmental Risk Assessment and Remediation (CERAR). University of South Australia, Mawson Lakes. SA 5095, Australia, Indian Institute of Horticultural Research, Hessaraghatta Lake Post, Bangalore 560089, India;

    Centre for Environmental Risk Assessment and Remediation (CERAR). University of South Australia, Mawson Lakes. SA 5095, Australia, Cooperative Research Centre for Contamination Assessment and Remediation of the Environment (CRC CARE), Adelaide, SA 5095, Australia;

    Centre for Environmental Risk Assessment and Remediation (CERAR). University of South Australia, Mawson Lakes. SA 5095, Australia, Cooperative Research Centre for Contamination Assessment and Remediation of the Environment (CRC CARE), Adelaide, SA 5095, Australia;

    Department of Environmental Engineering, Jinju National University, 150 Chilam-dong, Jinju, Gyeongnam, 660-758, Republic of Korea;

  • 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

    (Im)mobilization; Phytoremediaiton; Bioavailability; Biosolid; Manure;

    机译:(Im)动员;植物修复;生物利用度;生物固体肥料;

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