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首页> 外文期刊>International Biodeterioration & Biodegradation >Reductive dissolution and release of arsenic from arsenopyrite by a novel arsenate-respiring bacterium from the arsenic-contaminated soils
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Reductive dissolution and release of arsenic from arsenopyrite by a novel arsenate-respiring bacterium from the arsenic-contaminated soils

机译:从砷污染的土壤中的新型砷酸盐胶质细菌从阿塞纳吡啶物中减少溶出和释放

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It is well established that arsenopyrite can be dissolved by both oxygen and microbes under oxic conditions; however, little is known about whether it can be mobilized under anoxic conditions. Here, we isolated a dissimilatory arsenate-respiring prokaryote (DARP) strain (Citrobacter sp. A99) from arsenic-contaminated soils. It respires arsenate, ferric iron and thiosulfate, but not sulfate. Molecular features of A99 suggest that it is a new DARP. A99 can promote the dissolution and release of arsenic from arsenopyrite, and addition of sulfate enhanced the microbial dissolution of arsenic. SEM/EDS analysis suggested that the bioreduction led to marked changes in the mineral structure, and the residual grains contained much lower contents of arsenic compared to wild-type minerals. Based on the findings of this work, a mechanic hypothesis was proposed to explain the reductive dissolution of arsenopyrite catalyzed by A99 cells. This work suggests that arsenopyrite can be significantly reduced and dissolved by indigenous DARPs under anaerobic conditions.
机译:很好地确定,砷黄石可以通过氧气和微生物溶解氧化物条件;然而,关于是否可以在缺氧条件下调动它。在此,我们分离出一种聚糖抑制剂(DARP)菌株(Citrobacter sp.A99),来自砷污染的土壤。它呼吸砷盐,铁和硫代硫酸盐,但不硫酸盐。 A99的分子特征表明它是一个新的DARP。 A99可以促进砷吡啶砷的溶解和释放,并加入硫酸盐增强了砷的微生物溶解。 SEM / EDS分析表明,生物防体导致矿物结构的变化,与野生型矿物相比,残留颗粒含有更低的砷含量。基于这项工作的发现,提出了一种机制假设,解释了A99细胞催化的砷吡啶物的还原溶解。这项工作表明,在厌氧条件下,亚苯甲酸甲橡胶可以明显减少和溶解。

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