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Integrating EDDS-enhanced washing with low-cost stabilization of metal-contaminated soil from an e-waste recycling site

机译:结合EDDS增强的洗涤功能和低成本的电子废物回收站对金属污染土壤的稳定处理

摘要

While chelant-enhanced soil washing has been widely studied for metal extraction from contaminated soils, there are concerns about destabilization and leaching of residual metals after remediation. This study integrated 2-h soil washing enhanced by biodegradable ethylenediaminedisuccinic acid (EDDS) and 2-month stabilization using agricultural waste product (soybean stover biochar pyrolyzed at 300 and 700 °C), industrial by-product (coal fly ash (CFA)), and their mixture. After integration with 2-month stabilization, the leachability and mobility of residual metals (Cu, Zn, and Pb) in the field-contaminated soil were significantly reduced, especially for Cu, in comparison with 2-h EDDS washing alone. This suggested that the metals destabilized by EDDS-washing could be immobilized by subsequent stabilization with biochar and CFA. Moreover, when the remediation performance was evaluated for phytoavailability and bioaccessibility, prior EDDS washing helped to achieve a greater reduction in the bioavailable fraction of metals than sole stabilization treatment. This was probably because the weakly-bound metals were first removed by EDDS washing before stabilization. Both individual and combined applications of biochar and CFA showed comparable effectiveness regardless of the difference in material properties, possibly due to the high level of amendments (150 ton ha−1). Based on the mobility and bioaccessibility results, the estimated human health risk (primarily resulting from Pb) could be mitigated to an acceptable level in water consumption pathway or reduced by half in soil ingestion pathway. These results suggest that an integration of EDDS washing with soil stabilization can alleviate post-remediation impacts of residual metals in the treated soil.
机译:尽管已经对螯合剂增强的土壤洗涤进行了广泛研究,以从受污染的土壤中提取金属,但人们仍对修复后残留金属的不稳定和浸出感到担忧。这项研究整合了可生物降解的乙二胺二琥珀酸(EDDS)增强的2小时土壤洗涤和使用农业废品(在300和700°C下热解的大豆秸秆生物炭),工业副产品(粉煤灰(CFA))进行的2个月稳定化,以及它们的混合物。经过2个月的稳定化处理后,与单独进行2小时EDDS洗涤相比,田间污染土壤中的残留金属(铜,锌和铅)的浸出性和迁移率显着降低,尤其是铜。这表明可以通过随后用生物炭和CFA进行稳定化来固定通过EDDS洗涤而失稳的金属。此外,当评估修复性能的植物利用率和生物利用率时,与单独的稳定化处理相比,预先的EDDS洗涤有助于实现金属生物利用率的更大降低。这可能是因为在稳定之前,首先通过EDDS洗涤除去了弱结合的金属。生物炭和CFA的单独应用和组合应用均显示出可比的有效性,无论材料性能如何不同,这可能是由于高水平的改性剂(150吨公顷-1)。根据流动性和生物可及性的结果,估计的人类健康风险(主要是由铅引起的)可以在耗水途径中降低到可接受的水平,或在土壤摄入途径中降低一半。这些结果表明,EDDS洗涤与土壤稳定化相结合可以减轻处理后土壤中残留金属的修复后影响。

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