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首页> 外文期刊>Science of the total environment >The chemical composition and bacteria communities in acid and metalliferous drainage from the wet-dry tropics are dependent on season
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The chemical composition and bacteria communities in acid and metalliferous drainage from the wet-dry tropics are dependent on season

机译:从干湿热带地区排出的酸性和含金属废水中的化学成分和细菌群落取决于季节

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摘要

Acid and metalliferous drainage (AMD) occurs when sulphidic minerals, such as arsenopyrite, chalcopyrite and pyrite, are exposed to oxygen and water. Climate, geology and mine site practices can have a significant impact on AMD composition. The elemental composition of the AMD can also affect the bacterial community. Our hypothesis was that in the dry season the AMD at two mine sites, Rum Jungle and MtTodd, in the Northern Territory, Australia, has a higher concentration of dissolved metals because standing water evaporates during the extended dry period. Our second hypothesis was that the wet and dry season bacteria community in AMD at Rum Jungle and Mt Todd are different, and this difference is correlated to seasonally specific changes in physicochemistry. The first hypothesis was tested by measuring elemental concentrations in AMD during the wet and dry seasons at Mt Todd and Rum Jungle mine sites. The physicochemical properties such as temperature, pH and dissolved oxygen were also measured. To test the second hypothesis, we extracted DNA from AMD samples collected at Rum Jungle and Mt Todd during the wet and dry seasons. The hypervariable V6 region of the bacterial 16S rRNA gene was sequenced by 454 pyrosequencing. The bacterial community composition was examined and related to physiochemical variables. The elemental concentrations in Rum Jungle AMD were higher in the dry season compared to the wet season, but at Mt Todd the elemental composition of AMD changed with year, rather than season. The bacteria community in AMD at Rum Jungle changed between the wet and dry season while in Mt Todd AMD the bacteria community from year was significantly different from year 2. The data showed that the elemental composition and bacteria communities of AMD at Rum Jungle and Mt Todd are influenced by season, mine site practices and geological characteristics of the ore body. In addition, the iron oxidising bacteria Leptospirillum and Acidithiobacillus typically associated with AMD in temperate regions were not prevalent at out tropical study sites.
机译:当硫化矿物(如毒砂,黄铜矿和黄铁矿)暴露于氧气和水中时,就会发生酸和含金属的排泄(AMD)。气候,地质和矿场实践会对AMD的组成产生重大影响。 AMD的元素组成也会影响细菌群落。我们的假设是,在干旱季节,澳大利亚北领地的Rum Jungle和MtTodd这两个矿场的AMD溶解金属浓度较高,因为在延长的干旱期间会积水蒸发。我们的第二个假设是Rum Jungle和Mt Todd的AMD的湿季和干季细菌群落是不同的,并且这种差异与理化的季节性特定变化有关。通过测量Mt Todd和Rum Jungle矿场在潮湿和干燥季节的AMD中的元素浓度来检验第一个假设。还测量了诸如温度,pH和溶解氧的理化性质。为了检验第二个假设,我们从在干季和湿季从朗姆丛林和托德山收集的AMD样品中提取了DNA。通过454焦磷酸测序对细菌16S rRNA基因的高变V6区进行测序。检查了细菌群落组成并与理化变量相关。与干旱季节相比,朗姆丛林AMD中的元素含量在干燥季节要高,但是在托德山,AMD的元素组成随年份而不是季节变化。 Rum Jungle的AMD的细菌群落在干湿季节之间变化,而Todd山的AMD的细菌群落与第二年显着不同。数据显示Rum Jungle和Mt Todd的AMD的元素组成和细菌群落。受季节,矿场实践和矿体地质特征的影响。另外,在温带地区,典型地与AMD相关的铁氧化细菌钩端螺旋体和酸性硫杆菌在热带地区并不普遍。

著录项

  • 来源
    《Science of the total environment》 |2013年第15期|65-79|共15页
  • 作者单位

    Research Institute of Environment and Livelihoods, Building Yellow 2, Charles Darwin University, Darwin, NT 0909, Australia,Australian Institute of Marine Science, ATRF Building, Ellengowan Drive, Darwin, NT 8010, Australia;

    Research Institute of Environment and Livelihoods, Building Yellow 2, Charles Darwin University, Darwin, NT 0909, Australia;

    Research Institute of Environment and Livelihoods, Building Yellow 2, Charles Darwin University, Darwin, NT 0909, Australia;

    Australian Centre for Astrobiology, School of Biotechnology and Biomolecular Sciences, University of New South Wales. Sydney 2052, Australia;

    Australian Institute of Marine Science, ATRF Building, Ellengowan Drive, Darwin, NT 8010, Australia,Rio Tinto Technology and Innovation, Albert Street, Brisbane, QLD 4000, Australia;

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

    acid mine drainage; mount todd; rum jungle;

    机译:酸性矿山排水托德山朗姆酒丛林;

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