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Abundant and diverse arsenic-metabolizing microorganisms in peatlands treating arsenic-contaminated mining wastewaters

机译:在泥炭地治疗砷污染的采矿废水器中的丰富和多样化的砷代谢微生物

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摘要

Mining operations produce large quantities of wastewater. At a mine site in Northern Finland, two natural peatlands are used for the treatment of mining-influenced waters with high concentrations of sulphate and potentially toxic arsenic (As). In the present study, As removal and the involved microbial processes in those treatment peatlands (TPs) were assessed. Arsenic-metabolizing microorganisms were abundant in peat soil from both TPs (up to 10(8) cells g(dw)(-1)), with arsenate respirers being about 100 times more abundant than arsenite oxidizers. In uninhibited microcosm incubations, supplemented arsenite was oxidized under oxic conditions and supplemented arsenate was reduced under anoxic conditions, while little to no oxidation/reduction was observed in NaN3-inhibited microcosms, indicating high As-turnover potential of peat microbes. Formation of thioarsenates was observed in anoxic microcosms. Sequencing of the functional genemarkers aioA (arsenite oxidizers), arrA (arsenate respirers) and arsC (detoxifying arsenate reducers) demonstrated high diversity of the As-metabolizing microbial community. The microbial community composition differed between the two TPs, which may have affected As removal efficiencies. In the present situation, arsenate reduction is likely the dominant net process and contributes substantially to As removal. Changes in TP usage (e.g. mine closure) with lowered water tables and heightened oxygen availability in peat might lead to re-oxidation and re-mobilization of bound arsenite.
机译:采矿业产生大量废水。在芬兰北部的矿场,两个天然泥炭地用于治疗采矿影响的水域,具有高浓度的硫酸盐和潜在的毒性砷(AS)。在本研究中,评估这些研究中的除去和所涉及的微生物方法(TPS)。砷代谢微生物在来自TPS的泥炭土壤中丰富(最多10(8)个细胞G(DW)( - 1)),砷酸盐抑制剂比砷酸盐氧化剂更多100倍。在未抑制的微观孵育中,补充亚砷酸盐在氧化条件下氧化,并在缺氧条件下减少补充砷酸盐,而在纳米3抑制的微观中观察到少量氧化/还原,表明泥炭微生物的高度增加潜力。在缺氧微观中观察到硫代甲酸盐的形成。官能团的测序官能团AiOA(砷酸氧化剂),ARRA(砷酸呼吸脂)和ARSC(解毒砷酸盐还原剂)表现出高多样性的代效微生物群落。微生物群落组合物在两种TP之间不同,这可能会被影响作为去除效率。在目前的情况下,减少减少可能是主要的净过程,并基本上贡献以除去。具有降低的水表的TP使用(例如矿井闭合)的变化,并在泥炭中提高氧气可用性可能导致重新氧化和重新动动结合的砷酸盐。

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