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The Deposition of Elemental Gold from Gold(I)-Thiosulfate Complexes Mediated by Sulfate-Reducing Bacterial Conditions

机译:硫酸盐还原细菌条件介导的金(I)-硫代硫酸盐络合物中元素金的沉积

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The role of sulfate-reducing bacteria in the precipitation of elemental gold through a geologic stratum was investigated using column experiments. The mixed culture, dominated by sulfate-reducing bacteria, was isolated from the Driefontein consolidated gold mine, Witwatersrand basin, Republic of South Africa. Bacterially mediated gold precipitation from the gold(I)-thiosulfate complex was more efficient than the corresponding abiotic experiments. In the bacterial systems, sulfate-reducing bacteria (i.e., Desulfovibrio sp.) deposited gold inside the cells as spherical nanoparticles. Over time, these nanoparticles of gold were released from the cells and deposited at cell surfaces and in the bulk solutions. Ultimately, these nanoparticles of gold contributed to the formation of micrometer-scale octahedral gold crystals, occasional framboidlike structures (approx 1.5-mu m diam) and millimeter-scale gold foils, typically surrounding the silicate grains. Spherical gold particles (approx l-mu m diam) were precipitated in the abiotic experiments, and the formation of octahedral gold, framboidlike structures and gold foils were not observed in these experiments. The reduction and enrichment of elemental gold by sulfate-reducing bacteria occurred without the concomitant death of the bacteria, suggesting that in natural systems, this process could go on over geologic time scales, as long as nutrients and gold(I)-thiosulfate were provided to the system.
机译:使用柱实验研究了硫酸盐还原细菌在元素金通过地质层沉淀中的作用。从减少硫酸盐的细菌为主的混合培养物是从南非共和国威特沃特斯兰盆地的Driefontein合并金矿中分离出来的。细菌介导的金(I)-硫代硫酸盐络合物的金沉淀比相应的非生物实验更有效。在细菌系统中,硫酸盐还原细菌(即Desulfovibrio sp。)以球形纳米颗粒的形式在细胞内沉积金。随着时间的流逝,这些金纳米颗粒从细胞中释放出来,并沉积在细胞表面和整体溶液中。最终,这些金纳米颗粒有助于形成微米级的八面体金晶体,偶有的类黄褐色结构(直径约1.5微米)和毫米级的金箔,通常围绕着硅酸盐晶粒。在非生物实验中沉淀出球形金颗粒(直径约1微米),并且在这些实验中未观察到八面体金,类糠状结构和金箔的形成。还原硫酸盐的细菌对元素金的还原和富集发生时并未伴随细菌的死亡,这表明在自然系统中,只要提供了养分和硫代硫酸金(I),该过程就可以在地质时间尺度上进行。到系统。

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