Bioleaching: Metal solubilization by microorganisms

被引:462
|
作者
Bosecker, K
机构
关键词
bioleaching; biohydrometallurgy; metal solubilization; microorganisms; bacteria; fungi; Thiobacillus; Penicillium; Aspergillus;
D O I
10.1111/j.1574-6976.1997.tb00340.x
中图分类号
Q93 [微生物学];
学科分类号
071005 ; 100705 ;
摘要
Bioleaching is a simple and effective technology for metal extraction from low-grade ores and mineral concentrates. Metal recovery from sulfide minerals is based on the activity of chemolithotrophic bacteria, mainly Thiobacillus ferrooxidans and T. thiooxidans, which convert insoluble metal sulfides into soluble metal sulfates. Non-sulfide ores and minerals can be treated by heterotrophic bacteria and by fungi. In these cases metal extraction is due to the production of organic acids and chelating and complexing compounds excreted into the environment. At present bioleaching is used essentially for the recovery of copper, uranium and gold, and the main techniques employed are heap, dump and in situ leaching. Tank leaching is practised for the treatment of refractory gold ores. Bioleaching has also some potential for metal recovery and detoxification of industrial waste products, sewage sludge and soil contaminated with heavy metals.
引用
收藏
页码:591 / 604
页数:14
相关论文
共 50 条
  • [21] Bioleaching of chalcopyrite by mixed culture of moderately thermophilic microorganisms
    Chang-bin Wu
    Wei-min Zeng
    Hong-bo Zhou
    Bo Fu
    Ju-fang Huang
    Guan-zhou Qiu
    Dian-zuo Wang
    Journal of Central South University of Technology, 2007, 14 : 474 - 478
  • [22] Bioleaching of Enargite and Tennantite by Moderately Thermophilic Acidophilic Microorganisms
    Elkina, Yu. A.
    Melnikova, E. A.
    Melamud, V. S.
    Bulaev, A. G.
    MICROBIOLOGY, 2020, 89 (04) : 413 - 424
  • [23] Comparative genomics of the oxidative stress response in bioleaching microorganisms
    Pablo Cardenas, Juan
    Moya, Francisco
    Covarrubias, Paulo
    Shmaryahu, Amir
    Levican, Gloria
    Holmes, David S.
    Quatrini, Raquel
    HYDROMETALLURGY, 2012, 127 : 162 - 167
  • [24] Bioleaching of chalcopyrite by mixed culture of moderately thermophilic microorganisms
    Wu, Chang-bin
    Zeng, Wei-min
    Zhou, Hong-bo
    Fu, Bo
    Huang, Ju-fang
    Qiu, Guan-zhou
    Wang, Dian-zuo
    JOURNAL OF CENTRAL SOUTH UNIVERSITY OF TECHNOLOGY, 2007, 14 (04): : 474 - 478
  • [25] Bioleaching of chalcopyrite by mixed culture of moderately thermophilic microorganisms
    邬长斌
    曾伟民
    周洪波
    符波
    黄菊芳
    邱冠周
    王淀佐
    Journal of Central South University of Technology, 2007, (04) : 474 - 478
  • [26] Toxicity of flotation reagents to moderately thermophilic bioleaching microorganisms
    Okibe, N
    Johnson, DB
    BIOTECHNOLOGY LETTERS, 2002, 24 (23) : 2011 - 2016
  • [27] Toxicity of flotation reagents to moderately thermophilic bioleaching microorganisms
    Naoko Okibe
    D. Barrie Johnson
    Biotechnology Letters, 2002, 24 : 2011 - 2016
  • [28] Mechanisms of bioleaching: iron and sulfur oxidation by acidophilic microorganisms
    Jones, Sarah
    Santini, Joanne M.
    ESSAYS IN BIOCHEMISTRY, 2023, 67 (04) : 685 - 699
  • [29] Bioleaching of Enargite and Tennantite by Moderately Thermophilic Acidophilic Microorganisms
    Yu. A. Elkina
    E. A. Melnikova
    V. S. Melamud
    A. G. Bulaev
    Microbiology, 2020, 89 : 413 - 424
  • [30] Electrochemical study of enargite bioleaching by mesophilic and thermophilic microorganisms
    Munoz, J. A.
    Blazquez, M. L.
    Gonzalez, F.
    Ballester, A.
    Acevedo, F.
    Gentina, J. C.
    Gonzalez, P.
    HYDROMETALLURGY, 2006, 84 (3-4) : 175 - 186