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酸雨 pH 值对水泥稳定铅污染土壤浸出行为的影响。

Effect of acid rain pH on leaching behavior of cement stabilized lead-contaminated soil.

机构信息

Institute of Geotechnical Engineering, Southeast University, Nanjing 210096, China.

Department of Civil & Materials Engineering, University of Illinois at Chicago, USA.

出版信息

J Hazard Mater. 2014 Apr 30;271:131-40. doi: 10.1016/j.jhazmat.2014.02.002. Epub 2014 Feb 12.

Abstract

Cement stabilization is a practical approach to remediate soils contaminated with high levels of lead. However, the potential for leaching of lead out of these stabilized soils under variable acid rain pH conditions is a major environmental concern. This study investigates the effects of acid rain on the leaching characteristics of cement stabilized lead contaminated soil under different pH conditions. Clean kaolin clay and the same soil spiked with 2% lead contamination are stabilized with cement contents of 12 and 18% and then cured for 28 days. The soil samples are then subjected to a series of accelerated leaching tests (or semi-dynamic leaching tests) using a simulated acid rain leachant prepared at pH 2.0, 4.0 or 7.0. The results show that the strongly acidic leachant (pH ∼2.0) significantly altered the leaching behavior of lead as well as calcium present in the soil. However, the differences in the leaching behavior of the soil when the leachant was mildly acidic (pH ∼4.0) and neutral (pH ∼7.0) prove to be minor. In addition, it is observed that the lead contamination and cement content levels can have a considerable impact on the leaching behavior of the soils. Overall, the leachability of lead and calcium is attributed to the stability of the hydration products and their consequent influence on the soil buffering capacity and structure.

摘要

水泥稳定化是修复受高水平铅污染土壤的实用方法。然而,在不同酸雨 pH 值条件下,这些稳定化土壤中铅浸出的可能性是一个主要的环境关注点。本研究调查了酸雨对不同 pH 值条件下水泥稳定化铅污染土壤浸出特性的影响。将干净的高岭土粘土和相同的土壤添加 2%的铅污染,用 12%和 18%的水泥含量稳定化,然后养护 28 天。然后,将土壤样品用 pH 值为 2.0、4.0 或 7.0 的模拟酸雨浸提剂进行一系列加速浸出试验(或半动态浸出试验)。结果表明,强酸性浸提剂(pH∼2.0)显著改变了土壤中铅和钙的浸出行为。然而,当浸提剂为弱酸性(pH∼4.0)和中性(pH∼7.0)时,土壤浸出行为的差异较小。此外,观察到铅污染和水泥含量水平对土壤浸出行为有相当大的影响。总体而言,铅和钙的浸出性归因于水合产物的稳定性及其对土壤缓冲能力和结构的影响。

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