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化学淋滤对细粒土壤渗透性能和镉去除的影响。

Impact of chemical leaching on permeability and cadmium removal from fine-grained soils.

机构信息

State Key Laboratory of Water Resources and Hydropower Engineering Science, Wuhan University, Wuhan, 430072, China.

School of Environmental Science and Engineering, Guangdong Provincial Key Laboratory of Environmental Pollution Control and Remediation Technology, Sun Yat-sen University, Guangzhou, 510275, China.

出版信息

Environ Sci Pollut Res Int. 2017 Aug;24(22):18229-18239. doi: 10.1007/s11356-017-9523-2. Epub 2017 Jun 21.

Abstract

The aim of this study was to investigate the influence of chemical leaching on permeability and Cd removal from fine-grained polluted soils. Column leaching experiments were conducted using two types of soils (i.e., artificially Cd-polluted loam and historically polluted silty loam). Chemical agents of CaCl, FeCl, citric acid, EDTA, rhamnolipid, and deionized water were used to leach Cd from the soils. Results showed that organic agents reduced permeability of both soils, and FeCl reduced permeability of loam soil, compared with inorganic agents and deionized water. Entrapment and deposition of colloids generated from the organic agents and FeCl treatments reduced the soil permeability. The peak Cd effluence from the artificially polluted loam columns was retarded. For the artificially polluted soils treated with EDTA and the historically polluted soils with FeCl, Cd precipitates were observed at the bottom after chemical leaching. When Cd was associated with large colloid particles, the reduction of soil permeability caused Cd accumulation in deeper soil. In addition, the slow process of disintegration of soil clay during chemical leaching might result in the retardation of peak Cd effluence. These results suggest the need for caution when using chemical-leaching agents for Cd removal in fine-grained soils.

摘要

本研究旨在探讨化学淋洗对细粒污染土壤渗透性和 Cd 去除的影响。采用两种土壤(即人工 Cd 污染壤土和历史污染粉壤土)进行柱淋洗实验。使用 CaCl、FeCl、柠檬酸、EDTA、鼠李糖脂和去离子水等化学试剂从土壤中淋洗 Cd。结果表明,与无机试剂和去离子水相比,有机试剂降低了两种土壤的渗透性,FeCl 降低了壤土的渗透性。有机试剂和 FeCl 处理产生的胶体的截留和沉积降低了土壤的渗透性。人工污染壤土柱中 Cd 峰值流出物的迁移速率降低。对于用 EDTA 处理的人工污染土壤和用 FeCl 处理的历史污染土壤,化学淋洗后在底部观察到 Cd 沉淀。当 Cd 与大胶体颗粒结合时,土壤渗透性的降低导致 Cd 在较深的土壤中积累。此外,化学淋洗过程中土壤粘土的缓慢崩解可能导致 Cd 峰值流出物的迁移速率降低。这些结果表明,在细粒土壤中使用化学淋洗剂去除 Cd 时需要谨慎。

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