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The shift of microbial communities and their roles in sulfur and iron cycling in a copper ore bioleaching system

机译:铜矿生物浸出系统中微生物群落的变化及其在硫和铁循环中的作用

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摘要

Bioleaching has been employed commercially to recover metals from low grade ores, but the production efficiency remains to be improved due to limited understanding of the system. This study examined the shift of microbial communities and S&Fe cycling in three subsystems within a copper ore bioleaching system: leaching heap (LH), leaching solution (LS) and sediment under LS. Results showed that both LH and LS had higher relative abundance of S and Fe oxidizing bacteria, while S and Fe reducing bacteria were more abundant in the Sediment. GeoChip analysis showed a stronger functional potential for S0 oxidation in LH microbial communities. These findings were consistent with measured oxidation activities to S0 and Fe2+, which were highest by microbial communities from LH, lower by those from LS and lowest form Sediment. Moreover, phylogenetic molecular ecological network analysis indicated that these differences might be related to interactions among microbial taxa. Last but not the least, a conceptual model was proposed, linking the S&Fe cycling with responsible microbial populations in the bioleaching systems. Collectively, this study revealed the microbial community and functional structures in all three subsystems of the copper ore, and advanced a holistic understanding of the whole bioleaching system.
机译:生物浸出已在商业上用于从低品位矿石中回收金属,但是由于对该系统的了解有限,因此生产效率仍有待提高。这项研究检查了铜矿生物浸出系统中三个子系统中微生物群落的变化和S&Fe循环:浸出堆(LH),浸出溶液(LS)和LS下的沉积物。结果表明,沉积物中LH和LS均具有较高的S和Fe氧化细菌相对丰度,而S和Fe还原细菌则相对丰富。 GeoChip分析显示,LH微生物群落中S 0 氧化的功能潜力更大。这些发现与测得的对S 0 和Fe 2 + 的氧化活性一致,其中LH的微生物群落最高,Ls的微生物群落最低,沉积物的形态最低。此外,系统发育分子生态网络分析表明,这些差异可能与微生物分类群之间的相互作用有关。最后但并非最不重要的一点是,提出了一个概念模型,将S&Fe循环与生物浸出系统中负责任的微生物种群联系起来。这项研究共同揭示了铜矿所有三个子系统中的微生物群落和功能结构,并对整个生物浸出系统有了全面的了解。

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