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(595422) POTENTIAL IMPACTS OF IN SITU METAL RECOVERY PROCESSES ON MICROBIAL ECOLOGY

机译:(595422)原位金属回收过程对微生物生态的潜在影响

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Sulfuric acid has been demonstrated to be an efficient lixiviant for in situ extraction of copper in the past. It has also been proposed that microbial production (by iron-oxidizing acidophilic bacteria) of acidic ferric solution either in situ or ex situ could provide an economic strategy to generate an effective lixiviant for secondary copper sulfides like chalcocite and covellite. Copper heap bioleaching also takes advantage of this approach. One of the major environmental challenges for in situ copper recovery projects is the containment of acidic solution within the ore deposit, and ultimate restoration of the depleted ore body to its original state. A perhaps overlooked aspect of projected site operations is the possibility that transient acidic conditions and pumping of solutions from surface reservoirs into the subsurface could stimulate the growth of iron- or sulfur-oxidizing species of acidophilic microbes in the ore body, leading to additional generation of sulfate, acid, and ferric iron. This outcome would benefit extraction of copper in mixed oxide/sulfide deposits in the near term, but could complicate restoration activities. Possible impacts of pumping acidic solutions into the subsurface on microbes resident in, or introduced into the extraction zone will be discussed in the context of our understanding of copper heap bioleaching and acid rock drainage.
机译:已经证明硫酸是一种有效的Lixiaiant,用于过去的原位提取铜。还提出了酸性二烷烃的微生物生产(通过铁氧化嗜酸性嗜酸性细菌)原位或原位可以提供经济策略,以产生氯钴酸核苷酸和聚四甲酸酯等二次硫化铜的有效液化液。铜堆生物浸出也利用了这种方法。原位铜回收项目的主要环境挑战之一是将矿床内的酸性溶液置于矿床内,并为其原始状态的最终恢复。 A可能被预计的网站运营所忽视的方面是,瞬态酸性条件和从表面储存器中泵送到地下的溶液可以刺激矿体中嗜酸性微生物的铁或硫氧化种类的生长,导致额外的产生硫酸盐,酸和铁。该结果将在接近术语中促进混合氧化物/硫化物沉积物中的铜,但可以使恢复活性复杂化。将在我们对铜堆生物浸入和酸性岩排水的背景下讨论将酸性溶液泵送到居住的微生物驻留在居住的地下的影响。

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