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Remediation of heavy metal contaminated soil by biodegradable chelator-induced washing: Efficiencies and mechanisms

机译:可生物降解的螯合剂诱导的洗涤物修复重金属污染土壤:效率和机制

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摘要

Biodegradable chelators (BCs) are promising substitutes for conventional washing agents in the remediation of heavy metal contaminated soil with strong complexing ability and less cost. However, great challenges for the applications of BC-assisted washing still exist, such as the assessment of the factor affecting the efficiency of metal removal and the unclear of the metal removal mechanism. Batch washing was therefore explored to evaluate the potential for four BCs for removing Cd, Pb, and Zn from polluted soils. The soil spectroscopic characteristics before and after washing were also investigated. The results demonstrated that iminodisuccinic acid (ISA) and glutamate-N, N-diacetic acid (GLDA) were an appealing alternative to commonly used non-biodegradable ethylenediaminetetraacetic acid, but glucomonocarbonic acid (GCA) and polyaspartic acid (PASP) were less efficient. Optimal parameters of BCs were determined to be a concentration of 50 mmol L~(-1), a pH of 5.0, a contact time of 120 min, and a solid/liquid ratio of 1:5, considering metal removal efficiencies and the suitable cost. A single removal washing could be up to 52.39% of Cd, 71.79% of Pb, and 34.13% of Zn from mine soil, and 98.28% of Cd, 91.10% of Pb, and 90.91% of Zn from polluted farmland soil. After washing, the intensity of heavy metal binding to soil colloids increased while the metal mobility reduced because of weakly bound fractions removed by BCs. The BCs-induced soil washing revealed that the possible mechanisms of metal removal included the acid dissolution, ion exchange, and surface complexation. Our findings highlight the potential application of especially ISA and GLDA as efficient washing agents to remove potentially toxic elements from contaminated soils.
机译:可生物降解的螯合剂(BCS)是对常规洗涤剂的替代品,其在重金属污染土壤中具有强烈的络合能力和成本较低的重金属污染土壤。然而,BC辅助洗涤仍然存在的巨大挑战仍然存在,例如对影响金属去除效率的因子和不清楚的金属去除机制的因子进行评估。因此,探索了批量洗涤以评估从污染的土壤中去除CD,Pb和Zn的四种BCS的可能性。还研究了洗涤前后的土壤光谱特性。结果表明,氨基二碳酸(ISA)和谷氨酸-N,N-二醋酸(GLDA)是常用的非可生物降解的乙二胺四乙酸的吸引力,但葡糖胺羧酸(GCA)和聚天冬氨酸(PASP)效率较低。将BCS的最佳参数确定为50mmol L〜(-1)的浓度,pH为5.0,接触时间为120分钟,并且考虑到金属去除效率和合适的固体/液体比为1:5成本。单一的去除洗涤可高达52.39%的镉,71.79%的Pb,占矿山土壤的34.13%,98.28%的镉,91.10%,污染农田土壤的90.91%的Zn。洗涤后,由于BCS除去的弱馏分,金属迁移率降低了与土壤胶体的重金属结合的强度增加。 BCS诱导的土壤洗涤揭示了金属去除的可能机制包括酸溶解,离子交换和表面络合。我们的研究结果突出了特别是ISA和GLDA作为高效洗涤剂的潜在应用,以消除来自受污染的土壤的潜在有毒元素。

著录项

  • 来源
    《Environmental research》 |2020年第7期|109554.1-109554.12|共12页
  • 作者单位

    College of Environmental Science Sichuan Agricultural University Wenjiang 611130 China Sichuan Provincial Key Laboratory of Soil Environmental Protection Chengdu 611130 China Institute of Environmental Sciences (CML) Leiden University P.O. Box 9518 2300 RA Leiden the Netherlands;

    College of Environmental Science Sichuan Agricultural University Wenjiang 611130 China Chengdu Agricultural College Wenjiang 611130 China;

    College of Environmental Science Sichuan Agricultural University Wenjiang 611130 China Sichuan Provincial Key Laboratory of Soil Environmental Protection Chengdu 611130 China;

    College of Environmental Science Sichuan Agricultural University Wenjiang 611130 China Sichuan Provincial Key Laboratory of Soil Environmental Protection Chengdu 611130 China;

    College of Resources Sichuan Agricultural University Wenjiang 611130 China;

    College of Environmental Science Sichuan Agricultural University Wenjiang 611130 China;

    College of Environmental Science Sichuan Agricultural University Wenjiang 611130 China;

    Institute of Environmental Sciences (CML) Leiden University P.O. Box 9518 2300 RA Leiden the Netherlands;

    Institute of Environmental Sciences (CML) Leiden University P.O. Box 9518 2300 RA Leiden the Netherlands National Institute of Public Health and the Environment (RIVM) P.O. Box 1 Bilthoven the Netherlands;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Soil washing; Biodegradable chelator; Heavy metal; Spectroscopic analysis; Contaminated soil;

    机译:土壤洗涤;可生物降解的螯合剂;重金属;光谱分析;污染的土壤;
  • 入库时间 2022-08-18 21:51:06

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