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Nitrate respirers mediate anaerobic As(III) oxidation in filters

机译:硝酸盐呼吸器在过滤器中介导厌氧作为(iii)氧化

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Microorganisms play a key role in the redox transformation of arsenic in aquifers.In this study,the impact of indigenous bacteria,especially the prevailing nitrate respirers,on arsenite oxidation was explored during groundwater filtration using granularTiO2 and subsequent spent TiO2 anaerobic landfill.X-ray absorption near edge structure spectroscopy analysis showed As(III) oxidation (46% in 10 days) in the presence of nitrate in the simulated anaerobic landfills.The Fe phase showed no change during the anaerobic incubation.Incubation experiments implied that the indigenous bacteria completely oxidized arsenite to arsenate in 10 days using nitrate as the terminal electron acceptor under anaerobic conditions.Phylogenetic tree analysis revealed that Proteobacteria was the dominant phylum,with Hydrogenophaga (34%),Limnohabitans (16%),and Simplicispira (7%) as the major bacterial genera.The nitrate respirers especially from the Hydrogenophaga genus anaerobically oxidized As(III) using nitrate as an electron acceptor instead of oxygen.Our study implied that microbes can facilitate the groundwater As oxidation using nitrate on the adsorptive media.
机译:微生物在含水层砷的氧化还原转化中发挥着关键作用。在本研究中,使用肉芽桃粒子2和随后的废除TiO2Anaerobic Landfill.x-ray,在地下水过滤期间探讨了土着细菌的影响,尤其是盛行的硝酸盐呼吸道。在模拟的厌氧填埋场中,在硝酸盐存在下,近边缘结构光谱分析的吸收显示为(III)氧化(10天内的46%)。在厌氧孵育过程中,Fe相没有变化。incigation实验暗示了本土细菌完全氧化在厌氧条件下,使用硝酸盐作为终端电子受体的10天内砷酸盐。噬菌学树分析显示,植物菌是主要的字段,具有氢气(34%),Limnohitans(16%)和Simplicispira(7%)作为主要的细菌属。硝酸盐呼吸器,尤其是厌氧氧化为(iii)的氢气呼吸道作为电子受体而不是氧气。暗示微生物可以促进地下水在吸附介质上使用硝酸盐作为氧化。

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