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Soil washing enhanced by humic substances and biodegradable chelating agents

机译:腐殖质和可生物降解的螯合剂可增强土壤洗涤

摘要

Industrial timber treatment sites have resulted in widespread soil contamination by Cu, Cr, and As, presenting potential long-term liability and associated risks to human health and the environment. This study evaluated the roles of natural humic substances (lignite-derived humic substances, standard and commercially available humic acids) and biodegradable chelating agents (ethylenediamine-N,N-disuccinic acid (EDDS) and glutamic-N,N-diacetic acid (GLDA)) for soil washing. Batch kinetic experiments revealed that humic substances promoted Cu extraction at pH 8, but they were significantly adsorbed on the soil at pH 4, possibly posing impediment to soil remediation. The metal extraction by EDDS and GLDA was comparable to that of EDTA (ethylenediamine-tetraacetic acid), and it was more effective at pH 4 than pH 8, probably due to acidic dissolution of metal precipitates and oxides. Metal distribution analysis indicated that the carbonate fraction of Cu and the oxide fraction of As and Cr were mainly extracted, while the exchangeable fraction of Cu increased. The residual leachability tests showed that humic substances reduced the Cu and As leachability but the reduction was insufficient. In contrast, EDDS was able to reduce the leachate concentrations of Cu and As to below 5 mg L-1, meeting the waste acceptance criteria for landfill disposal. Nevertheless, soil washing methods and remediation strategy may need further modifications to facilitate site restoration and promote soil recycling.
机译:工业木材处理场已导致土壤中广泛地被铜,铬和砷污染,这表现出潜在的长期责任以及对人类健康和环境的相关风险。这项研究评估了天然腐殖质(褐煤衍生的腐殖质,标准和市售腐殖酸)和可生物降解的螯合剂(乙二胺-N,N-二琥珀酸(EDDS)和谷氨酸-N,N-二乙酸(GLDA)的作用。 ))进行土壤洗涤。间歇动力学实验表明,腐殖质在pH为8时促进了铜的提取,但在pH为4时它们被大量吸附在土壤中,可能会阻碍土壤修复。用EDDS和GLDA进行的金属萃取与EDTA(乙二胺四乙酸)相当,并且在pH 4时比pH 8更为有效,这可能是由于金属沉淀和氧化物的酸性溶解所致。金属分布分析表明,主要提取了铜的碳酸盐部分和砷和铬的氧化物部分,而铜的可交换部分增加了。残留浸出性测试表明,腐殖质降低了Cu和As的浸出性,但降低程度不足。相反,EDDS能够将Cu和As的浸出液浓度降低至5 mg L-1以下,满足垃圾填埋处置的废物接受标准。然而,土壤清洗方法和修复策略可能需要进一步修改,以促进场地恢复和促进土壤循环利用。

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