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Implication of biofilms in the sustainability of acid mine drainage and metal dispersion near coal tailings

机译:生物膜对煤尾附近酸性矿井排水和金属分散性可持续性的影响

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摘要

In this study, the ecology of biofilms collected from sediments and efflorescent crusts (EFC) along an acid mine drainage (AMD) system was determined using 16S bacterial metagenomics. The dissolution of coal tailing and EFC by bacteria hosted in biofilms was investigated. Results revealed the predominance of acidophilic bacteria such as Acidithiobaallus ferrooxidans, Leptospirilum ferrooxidans, Acidithrix, Leptospirilum sp, Acidimicrobiaceae, Sulfobacillus, Acidiphilium, and Acidithiobacillus sp. in the biofilms, some of which have been reported to oxidize sulfide minerals and contribute to AMD formation. The experimental results further highlighted the ability of the bacteria in biofilms to leach out metals such as Co, Fe, and Zn, while decreasing the pH of the solution. The bioleaching of EFC was very fast, and increased diversity of the bacterial inoculum contributed to accelerating the leaching rate. Compared to abiotic leaching, the dissolution of minerals by acidophilic bacteria increased the percentage of free hydrated metal speciated forms over the inorganic complex speciated forms, suggesting the potential of biofilms to enhance the dispersion of metals in aquatic systems.
机译:在这项研究中,使用16S细菌偏心组学测定从沉积物和渐次溶解的沉积物和渐次溶质地壳(EFC)的生物膜的生态学。研究了生物膜中托管的细菌的煤拖尾和EFC的溶解。结果揭示了嗜酸性细菌的优势,如酸酐铁氧辛,乳螺旋丝素辛烷钠,酸纤维,百倍血清菌,酸纤维素,磺酰嘧啶,酸纤维素和酸酐。在生物膜中,其中一些已据报道氧化硫化物矿物并有助于AMD形成。实验结果进一步突出了生物膜中的细菌能够浸出金属,例如CO,Fe和Zn,同时降低溶液的pH。 EFC的生物浸出非常快,并且细菌接种物的多样性促使加速浸出速率。与非生物浸出相比,嗜酸性细菌的矿物质溶解增加了自由水合金属所指出的无机复合标称形式的百分比,表明生物膜的潜力,以增强金属在水生体系中的分散体。

著录项

  • 来源
    《Science of the total environment》 |2021年第20期|147851.1-147851.9|共9页
  • 作者单位

    Department of Chemistry College of Natural Science Yeungnam University 280 Daehak-Ro Gyeongsan Gyeongbuk 38541 Republic of Korea Particulate Matter Research Center Research Institute of Industrial Science & Technology (RIST) 187-12 Geumho-ro Gwangyang-si Jeollanam-do 57801 Republic of Korea;

    Department of Electrical and Mining Engineering College of Science Engineering and Technology University of South Africa Florida Science Campus South Africa;

    Water Pollution Monitoring and Remediation Initiatives Research Group School of Chemical and Minerals Engineering North West University P. Bag X6001 Potchefstroom 2520 South Africa;

    Particulate Matter Research Center Research Institute of Industrial Science & Technology (RIST) 187-12 Geumho-ro Gwangyang-si Jeollanam-do 57801 Republic of Korea;

    Department of Chemistry College of Natural Science Yeungnam University 280 Daehak-Ro Gyeongsan Gyeongbuk 38541 Republic of Korea;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Acid mine drainage (AMD); Biofilms; Bioleaching; Acidophiles; Coal tailing; Efflorescent crust;

    机译:酸性矿山排水(AMD);生物膜;生物浸润;嗜酸性;煤拖;幸福的外壳;

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