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Variation in microbial community from predominantly mesophilic to thermotolerant and moderately thermophilic species in an industrial copper heap bioleaching operation

机译:在工业铜堆生物浸提操作中,微生物群落从主要为嗜温菌变为耐热和中等嗜热菌种

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A comprehensive monitoring program has been performed at an industrial bioleaching heap at the Escondida mine in Chile since 2006, in order to study possible changes to the indigenous microbial population. In the initial stage of the bioleaching heap operation, the microbial population was dominated by mesophilic microorganisms. When the height of the heap increased, the microbial population changed from predominantly mesophilic to thermotolerant and moderate thermophilic microorganisms. The results of molecular analyses indicated that under these conditions Leptospirillumferriphilum and Sulfobacillus thermosulfidooxidans are the most abundant microorganisms. Those results obtained show that the highest ferrous iron oxidation activity at the third lift occurs at the same operational temperature window as that of the thermotolerant and moderate thermophiles. An increase in the expression of genes (including rfaF1) associated with cell envelope biogenesis was indicative of the active growth of L ferriphilum. We conclude that the increasing heap height and the consequent increase in temperature within the heap triggered a change in the microbial community from mesophilic to moderate thermophilic microorganisms. Further, this shift had a relevant impact on the metallurgical performance of the industrial bioheap process at Escondida mine.
机译:自2006年以来,已在智利Escondida矿的一个工业生物浸出堆中执行了一项全面的监控程序,以研究土著微生物种群的可能变化。在生物浸出堆操作的初始阶段,微生物群体以嗜温微生物为主导。当堆的高度增加时,微生物种群从主要是嗜温的变为耐热的和中等嗜热的微生物。分子分析的结果表明,在这些条件下,钩端螺旋体和热硫氧化亚砜是最丰富的微生物。获得的那些结果表明,在第三升程中,最高的亚铁氧化活性发生在与耐热和中等嗜热剂相同的工作温度范围内。与细胞包膜生物发生相关的基因(包括rfaF1)的表达增加表明L型铁蛋白活跃生长。我们得出的结论是,堆高的增加和堆内温度的随之升高引发了微生物群落从中温微生物变为中性嗜热微生物的变化。此外,这种转变对Escondida矿的工业生物堆工艺的冶金性能产生了重要影响。

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