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Dissolution of Arsenic Minerals Mediated by Dissimilatory Arsenate Reducing Bacteria: Estimation of the Physiological Potential for Arsenic Mobilization

机译:异化砷酸盐还原菌介导的砷矿物质的溶解:砷动员的生理潜力的估计。

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摘要

The aim of this study was characterization of the isolated dissimilatory arsenate reducing bacteria in the context of their potential for arsenic removal from primary arsenic minerals through reductive dissolution. Four strains, Shewanella sp. OM1, Pseudomonas sp. OM2, Aeromonas sp. OM4, and Serratia sp. OM17, capable of anaerobic growth with As (V) reduction, were isolated from microbial mats from an ancient gold mine. All of the isolated strains: (i) produced siderophores that promote dissolution of minerals, (ii) were resistant to dissolved arsenic compounds, (iii) were able to use the dissolved arsenates as the terminal electron acceptor, and (iii) were able to use copper minerals containing arsenic minerals (e.g., enargite) as a respiratory substrate. Based on the results obtained in this study, we postulate that arsenic can be released from some As-bearing polymetallic minerals (such as copper ore concentrates or middlings) under reductive conditions by dissimilatory arsenate reducers in indirect processes.
机译:这项研究的目的是表征分离的异化砷酸盐还原菌,其潜力在于通过还原溶解从主要砷矿物质中去除砷。四个菌株,希瓦氏菌。 OM1,假单胞菌属。 OM2,气单胞菌属。 OM4和Serratia sp。从一个古老的金矿的微生物垫中分离出能够通过减少砷(V)厌氧生长的OM17。所有分离的菌株:(i)产生的促进矿物溶解的铁载体,(ii)对溶解的砷化合物有抵抗力,(iii)能够将溶解的砷酸盐用作末端电子受体,并且(iii)能够使用含有砷矿物质(例如,硬石膏)的铜矿物质作为呼吸基质。根据本研究获得的结果,我们推测砷可以通过间接过程中的异化砷还原剂在还原条件下从某些含砷多金属矿物(如铜精矿或中矿)中释放出来。

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