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沉积物中重金属的生物浸出:pH值的重要性。

Bioleaching of heavy metals from sediment: significance of pH.

作者信息

Chen S Y, Lin J G

机构信息

Institute of Environmental Engineering, National Chiao Tung University, Hsinchu, Taiwan, ROC.

出版信息

Chemosphere. 2001 Aug;44(5):1093-102. doi: 10.1016/s0045-6535(00)00334-9.

Abstract

Bioleaching process, which causes acidification and solubilization of heavy metals, is one of the promising methods for removing heavy metals from contaminated sediments. The solubilization of heavy metals from contaminated sediments is governed by the sediment pH. In the present study, the significance of pH in bioleaching of heavy metals from contaminated sediment was evaluated at different solid contents of sediments in a bench-scale reactor. Results showed that a temporal change of pH in the bioleaching process was effected by the buffering capacity of the sediment particulates. The variations of pH in this bioleaching process were calculated by a modified logistic model. It was observed that solubilization of heavy metals from sediments is highly pH-dependent. In addition, a non-linear equation for metal solubilization relating pH value in the bioleaching process was established. This allows an easier and faster estimate of metal solubilization by measuring pH in the bioleaching process.

摘要

生物浸出过程会导致酸化和重金属溶解,是从受污染沉积物中去除重金属的一种有前景的方法。受污染沉积物中重金属的溶解受沉积物pH值的控制。在本研究中,在实验室规模的反应器中,针对不同固体含量的沉积物,评估了pH值在受污染沉积物重金属生物浸出中的重要性。结果表明,生物浸出过程中pH值的时间变化受沉积物颗粒缓冲能力的影响。该生物浸出过程中pH值的变化通过修正的逻辑模型进行计算。据观察,沉积物中重金属的溶解高度依赖于pH值。此外,还建立了一个在生物浸出过程中关联pH值与金属溶解的非线性方程。这使得通过测量生物浸出过程中的pH值能够更轻松、快速地估算金属溶解情况。

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