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从污染土壤中提取重金属:冲洗液的回收

Heavy metals extraction from contaminated soil: recovery of the flushing solution.

作者信息

Di Palma L, Ferrantelli P, Medici F

机构信息

Dipartimento di Ingegneria Chimica dei Materiali delle Materie Prime e Metallurgia-Università di Roma La Sapienza, via Eudossiana 18, 00184 Roma.

出版信息

J Environ Manage. 2005 Nov;77(3):205-11. doi: 10.1016/j.jenvman.2005.02.018. Epub 2005 Jul 25.

Abstract

The optimum conditions for the recovery of copper from a contaminated soil by using the soil flushing technique are evaluated. Tests on a soil artificially contaminated with copper chloride were carried out in order to evaluate the influence of the speed of percolation and of the chelating agent concentration (aqueous solution of an ethylendiaminotetraacetic acid di-sodium salt Na2-EDTA). At pH=7.3 an efficiency up to 93.9% for copper extraction was achieved by flushing 500 ml of Na2-EDTA 0.05 M solution and 100 ml of pure water at 0.792 cm/h. At these operating conditions the formation of EDTA complexes with other competitive cations (calcium and iron) was negligible. The experimental results were in agreement with the ones obtained using a model describing the chemistry of metal extraction. This model assessed that above pH=6 the formation of calcium and iron EDTA complexes was excluded and only the chelation of copper was allowed. The recovery of 91.6% of EDTA was also achieved by evaporating and acidifying the extracted solution: after filtration, solid EDTA was obtained, through the addition of sodium hydroxide Na2-EDTA. About 99.5% of the extracted copper was finally precipitated under alkaline conditions from the liquid phase.

摘要

评估了采用土壤冲洗技术从受污染土壤中回收铜的最佳条件。为了评估渗流速度和螯合剂浓度(乙二胺四乙酸二钠盐Na2-EDTA的水溶液)的影响,对人工被氯化铜污染的土壤进行了测试。在pH = 7.3时,以0.792 cm/h的速度冲洗500 ml 0.05 M的Na2-EDTA溶液和100 ml纯水,铜的提取效率达到93.9%。在这些操作条件下,EDTA与其他竞争性阳离子(钙和铁)形成的络合物可忽略不计。实验结果与使用描述金属提取化学过程的模型所获得的结果一致。该模型评估得出,在pH>6时,钙和铁的EDTA络合物的形成被排除,仅允许铜的螯合。通过蒸发和酸化提取液,还实现了91.6%的EDTA回收:过滤后,通过添加氢氧化钠Na2-EDTA获得固体EDTA。最终,约99.5%的提取铜在碱性条件下从液相中沉淀出来。

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