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A Cyanide Tailings Management Method Using Pseudomonas Fluorescens to Improve Conventional Treatments for Progressive Closure at Small Gold Mines

机译:一种氰化物尾矿管理方法,使用假单胞菌荧光荧光笔,改善小金矿的渐进式闭合处理

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Based on the review of different research studies, we could assess that, due to their unique biological features, microbes, specifically bacteria, could be used to repair damaged soils with heavy metal and toxic compound contents. Furthermore, these microorganisms are metabolically capable to oxidize cyanide and its by-products to generate less-toxic compounds at the end of the process. This research proposal seeks to improve conventional mine closure designs, thus counteracting their negative short-term, medium-term, and long-term after-effects to the environment. The proposed technique as a solution, therefore, is microbial remediation, using pseudomonas fluorescens bacteria to oxidize this compound to non-toxic components. It will ensure operational continuity for the deposits and, in turn, the sustainability of the entire mining industry.
机译:根据对不同研究研究的审查,我们可以评估,由于它们独特的生物学特征,微生物,特别是细菌,可用于修复具有重金属和有毒化合物内容物的受损土壤。 此外,这些微生物在代谢上能够氧化氰化物及其副产物,在该过程结束时产生较小的毒性化合物。 该研究提案寻求改善传统的矿井闭合设计,从而抵消它们对环境的负数短期,中期和长期后效应。 因此,所提出的技术作为溶液是微生物修复,使用假单胞菌荧光细菌来将该化合物氧化成无毒成分。 它将确保存款的运作连续性,而且反过来,整个矿业行业的可持续性。

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