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Phylogeny of Bacteria from Steelmaking Wastes and Their Acidic Enrichment Cultures

机译:炼钢废物中细菌的系统发育及其酸性富集培养

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Currently, millions of tons of steel are produced worldwide. This has become a serious economic and environmental challenge because the ores used for steel production are nonrenewable resources and the production generates huge amount of waste. In this study, we identified and investigated the ability of bacteria from steelmaking waste with low and high zinc concentration to promote leaching of zinc, when enriched by acidic (pH 2) culture conditions. The bioleaching assays indicated removal of Zn, as in chemical leaching. Bacterial communities from crude and enrichment culture wastes were characterized by the 16S rRNA gene. Phylogenetic analysis of the generated clone libraries revealed predominance of Proteobacteria and Firmicutes. The Actino- bacteria, Bacteroidetes, Cyanobacteria, and Deinococcus-Thermus phyla were also encountered. The clones were most closely related to cultivable heterotrophic bacteria. Different genera were identified including iron redox cycling and leaching bacteria such as Chromobacterium, Aeromonas, Escherichia, Bacillus, and Ochrobactrum. These data add significant new information on bacteria which survive in extremely acidic conditions. They are distantly related to typical acidophiles responsible for the leaching process, which makes them good candidates for future studies on metal bioleaching.
机译:目前,全世界生产数百万吨的钢材。这已经成为严重的经济和环境挑战,因为用于钢铁生产的矿石是不可再生的资源,并且生产会产生大量废物。在这项研究中,我们确定并研究了在酸性(pH 2)培养条件下富集时,锌浓度低和高的炼钢废料中细菌促进锌浸出的能力。与化学浸出法一样,生物浸出法表明锌的去除。通过16S rRNA基因表征来自粗制和富集培养废物的细菌群落。生成的克隆文库的系统进化分析表明,主要是变形杆菌和Firmicutes。还遇到了放线菌,拟杆菌,蓝细菌和门球菌-Thermus phyla。这些克隆与可培养的异养细菌最相关。确定了不同的属,包括铁氧化还原循环和浸出细菌,例如色杆菌,气单胞菌,大肠埃希氏菌,芽孢杆菌和,形纲。这些数据为在极端酸性条件下生存的细菌增加了重要的新信息。它们与负责浸出过程的典型嗜酸菌有很远的联系,这使其成为未来金属生物浸出研究的理想选择。

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