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Microbial Community Structure Dynamics before and after Bioleaching of Copper Pyrites

机译:硫铁矿浸出前后微生物群落结构动力学

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Microorganisms in AMD (Acid Mine Drainage) were enriched in 9K culture medium. The enrichment was applied to leach copper pyrite after the microbial community structure and metabolism was stable. Before and after bioleaching, the microbial DNA was extracted and applied to RFLP (restricted fragment length polymorphism) analysis to demonstrate the relationship between the leaching efficiency and the change of microbial community. Atomic absorption spectrometry results showed that when concentration of the pulp was 10% and pH were 1.5, 2.0 and 2.5, the leaching rate were 56%, 57% and 34% on the 18th day respectively. These results indicated that the rise of pH resuited in the decrease of leaching rate. In lower pH condition, the growth of microbe was faster:when pH was 1.5, the microbial cell number reached to 1.4×107cells/mL on the 9th day; while pH was 2.5, the microbial cell number decreased to 4×106cells/mL. The analysis of microbial community structure showed that Acidithiobacillus ferrooxidans and Leptospirillura ferrooxidans were dominant species before bioleaching (account for 43% and 32% respectively). And after bioleaching,these two species were still dominant when the initial bioleaching pH werel.5 and 2.0. While the initial bioleaching pH was 2.5, the proportion of these two species decreased. These results demonstrated that the initial bioleaching pH would affect the microbial community structure in bioleaching system at room temperature, and this affect could lead to different copper pyrites bioleaching efficiency.
机译:AMD(酸性矿井排水)中的微生物富含9K培养基。在微生物群落结构和新陈代谢稳定后,将其富集用于浸出黄铁矿。在生物浸提之前和之后,提取微生物DNA并将其用于RFLP(限制性片段长度多态性)分析,以证明浸提效率与微生物群落变化之间的关系。原子吸收光谱法结果表明,当纸浆浓度为10%,pH为1.5、2.0和2.5时,第18天的浸出率分别为56%,57%和34%。这些结果表明,pH的升高与浸出速率的降低相吻合。在较低的pH条件下,微生物的生长较快:当pH为1.5时,第9天微生物细胞数达到1.4×107cells / mL。 pH为2.5时,微生物细胞数降至4×106cells / mL。对微生物群落结构的分析表明,酸性浸出铁硫酸杆菌和氧化铁螺旋体是优势菌(分别占43%和32%)。在生物浸提后,当初始生物浸提pH值分别为5和2.0时,这两个物种仍占主导地位。当初始生物浸提pH为2.5时,这两个物种的比例下降。这些结果表明,初始生物浸提pH值会影响室温下生物浸提系统中的微生物群落结构,并且这种影响可能导致不同的黄铁矿铜生物浸提效率。

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