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Microbial Communities in Contaminated Sediments, Associated with Bioremediation of Uranium to Submicromolar Levels

机译:与铀生物修复至亚微摩尔水平相关的受污染沉积物中的微生物群落

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Microbial enumeration, 16S rRNA gene clone libraries, and chemical analysis were used to evaluate the in situ biological reduction and immobilization of uranium(VI) in a long-term experiment (more than 2 years) conducted at a highly uranium-contaminated site (up to 60 mg/liter and 800 mg/kg solids) of the U.S. Department of Energy in Oak Ridge, TN. Bioreduction was achieved by conditioning groundwater above ground and then stimulating growth of denitrifying, Fe(III)-reducing, and sulfate-reducing bacteria in situ through weekly injection of ethanol into the subsurface. After nearly 2 years of intermittent injection of ethanol, aqueous U levels fell below the U.S. Environmental Protection Agency maximum contaminant level for drinking water and groundwater (Desulfovibrio, Geobacter, Anaeromyxobacter, Desulfosporosinus, and Acidovorax spp. The predominant sulfate-reducing bacterial species were Desulfovibrio spp., while the iron reducers were represented by Ferribacterium spp. and Geothrix spp. Diversity-based clustering revealed differences between treated and untreated zones and also within samples of the treated area. Spatial differences in community structure within the treatment zone were likely related to the hydraulic pathway and to electron donor metabolism during biostimulation.
机译:微生物计数,16S rRNA基因克隆文库和化学分析用于评估铀污染严重的地方(超过2年)的长期实验(超过2年)中原位生物还原和固定铀(VI)达60毫克/升和800毫克/千克固体)。生物还原是通过调节地面以上的地下水,然后通过每周向地下注入乙醇来刺激反硝化,Fe(III)还原和硫酸盐还原的细菌的生长来实现的。在间歇性注入乙醇近2年后,U水溶液的水含量降至美国环境保护署饮用水和地下水(脱硫弧菌,地细菌,厌氧杆菌,脱硫孢子菌和嗜酸性菌属)的最大污染物水平。主要的硫酸盐还原菌是脱硫弧菌尽管铁还原剂以Ferribacterium spp。和Geothrix spp为代表,但基于多样性的聚类揭示了处理区与未处理区之间以及处理区样品之间的差异,处理区内社区结构的空间差异可能与在生物刺激过程中通过液压途径和电子供体代谢。

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