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Influence of ore grade and mineral medium on chalcopyrite bioleaching with mixed microbial consortia

机译:矿石等级和矿质培养物对混合微生物组成的硫代铜矿生物浸渍的影响

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摘要

In the present work, key parameters in copper bioleaching from chalcopyrite have been investigated at long-term operation. In detail, the type of mixed microbial consortium (origin and adaptation); the composition of two mineral media (the growth medium and the modified 9K medium); its buffer capacity by the buffers HCl/KCl and Na_2HPO_4/KH_2PO_4; and the influence of different ore grades in relation with the potential alkalinity associated have been investigated. For the first time, a mixed microbial consortium, obtained from a gas-phase biotrickling filter treating high loads of H_2S, was employed revealing significant copper extraction by biological leaching. Results reveal that a single adaptation step of this biomass improved both kinetics and process efficiency, nearly doubling the amount of copper obtained compared with the non-adapted consortium. Nevertheless, the growth medium also influences the efficiency of the bioleaching process, enhancing copper extraction at higher sul-fate concentration. The ore containing the metal is also a determining factor, obtaining same copper extraction for biotic and abiotic in one case, and enhancing up to 50 times from the abiotic in the other. Thus, this becomes a relevant limitation for the applicability of bioleaching for some ores, mainly due to the composition of the matrix.
机译:在本作本作中,在长期运行中研究了从硫代铜矿的铜生物浸浸铜中的关键参数。详细地,混合微生物联盟(原点和适应)的类型;两种矿物培养基的组成(生长培养基和改性的9K培养基);缓冲区HCL / KCL和NA_2HPO_4 / KH_2PO_4的缓冲容量;并研究了不同矿石等级与潜在碱度相关的影响。首次由处理高负荷的H_2S的气相生物轧制过滤器获得的混合微生物联原,揭示了生物浸出的显着铜提取。结果表明,这种生物质的单一适应步骤改善了动力学和工艺效率,几乎加倍与未适应的联盟获得的铜量加倍。然而,生长培养基还影响生物浸入过程的效率,以较高的硫浓度提高铜提取。含有金属的矿石也是一种确定因子,在一种情况下获得生物和非生物的相同铜萃取,并在另一个情况下从非生物增强50倍。因此,这成为对某些矿石对生物浸出的适用性的相关限制,主要是由于基质的组成。

著录项

  • 来源
    《Environmental progress & sustainable energy》 |2021年第3期|e13588.1-e13588.8|共8页
  • 作者单位

    Department of Mining Industrial and ICT Engineering Universitat Politecnica de Catalunya Manresa Spain;

    Department of Mining Industrial and ICT Engineering Universitat Politecnica de Catalunya Manresa Spain;

    Department of Mining Industrial and ICT Engineering Universitat Politecnica de Catalunya Manresa Spain;

    Department of Mining Industrial and ICT Engineering Universitat Politecnica de Catalunya Manresa Spain;

    Department of Mining Industrial and ICT Engineering Universitat Politecnica de Catalunya Manresa Spain;

    Department of Mining Industrial and ICT Engineering Universitat Politecnica de Catalunya Manresa Spain;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    bioleaching; copper; metal recovery; microbial consortium; mineral medium;

    机译:生物浸渍;铜;金属恢复;微生物联盟;矿物培养基;

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