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硫酸和三价铁对废镍镉电池中镉生物浸出的影响。

Influence of H2SO4 and ferric iron on Cd bioleaching from spent Ni-Cd batteries.

机构信息

Technical University in Košice, Faculty of Metallurgy, Department of Materials Science, Park Komenského 11, Košice 04200, Slovak Republic.

出版信息

Waste Manag. 2013 Feb;33(2):456-61. doi: 10.1016/j.wasman.2012.10.007. Epub 2012 Nov 4.

Abstract

The paper is concerned with biohydrometallurgical methods of cadmium recovery from spent Ni-Cd batteries. Cd leaching efficiency from electrode material in different media (H(2)SO(4) and Fe(2)(SO(4))(3) solutions), at different Fe(III) concentrations and using the bacteria Acidithiobacillus ferrooxidans were investigated. The main aim of this study was to understand which from the bioleaching products (sulphuric acid or ferric sulphate) play a main role in the bioleaching process of Cd recovery. The influence of Fe ions on Cd leachability was confirmed. The best leaching efficiency of Cd (100%) was reached by bioleaching and also by leaching in Fe(2)(SO(4))(3) solution. The results of X-ray diffraction confirmed that no cadmium was present in solid residuum obtained after the Cd bioleaching as well as Cd leaching using solely ferric iron. The use of H(2)SO(4) solution resulted in the lowest efficiency of Cd leachability, the presence of hydroxides in electrode materials caused neutralization of the leaching solution and inhibition of Cd leaching.

摘要

本文研究了从废镍镉电池中回收镉的生物冶金方法。考察了在不同介质(硫酸和硫酸铁溶液)、不同三价铁浓度下,利用嗜酸氧化亚铁硫杆菌,从电极材料中浸出镉的效率。本研究的主要目的是了解生物浸出过程中,哪种生物浸出产物(硫酸或硫酸铁)在镉回收中起主要作用。实验证实了铁离子对镉浸出率的影响。生物浸出和硫酸铁溶液浸出均可达到 100%的最佳镉浸出效率。X 射线衍射的结果证实,在用生物浸出和仅用三价铁浸出后得到的固体残渣中均不存在镉。硫酸溶液的使用导致镉浸出效率最低,电极材料中氢氧化物的存在使浸出溶液呈中性,抑制了镉的浸出。

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