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首页> 外文期刊>International Journal of Mineral Processing >Bioleaching of a chalcopyrite concentrate using an extremely thermophilic culture
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Bioleaching of a chalcopyrite concentrate using an extremely thermophilic culture

机译:使用极度嗜热的培养物对黄铜矿精矿进行生物浸出

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The ability of an extreme thermophile to oxidise a concentrate comprising of chalcopyrite (66 percent) and pyrite (11 percent) is described. A batch test at 70 deg C showed that a copper extraction of >98 percent was possible. A series of continuous tests were carride out in a three-stage pilot plant, employing standard-design mechanically agitated and aerated tanks. The effect of residence time, feed grind and the mass transfer supply of oxygen and carbon dioxide on bioleach performance were evaluated. The results showed that overall Cu extractions of 95 percent could be obtained. However, compared to mesophilic and moderately thermophilic bioleaching bacteria, the extreme thermophiles appeared to be more sensitive to the solids concentration employed, which may also be related to the particle size of the feed solids. Levels of oxygen consumption approaching the maximum rates currently being employed in commercial-scale bioleach tanks treating refractory gold pyritic concentrates could be achieved. To maintain these high oxidation rates, it was important to ensure that the supply rate of oxygen and carbon dioxide to the reactors was sufficient. The high copper extractions obtained in these tests showed that a process treating chalcopyrite concentrates using extreme thermophiles has the potential for further development and assessment for commercial applications.
机译:描述了极端嗜热剂氧化由黄铜矿(66%)和黄铁矿(11%)组成的精矿的能力。在70摄氏度下的分批测试表明,铜的提取率> 98%是可能的。在采用标准设计的机械搅拌和充气罐的三阶段试验工厂中进行了一系列连续测试。评估了停留时间,进料研磨以及氧气和二氧化碳的传质供应对生物浸出性能的影响。结果表明,总的铜提取率可达到95%。然而,与嗜温和中等嗜热的生物浸出细菌相比,极端嗜热菌似乎对所使用的固体浓度更敏感,这也可能与饲料固体的粒径有关。可以达到耗氧量接近目前在处理难处理的黄铁矿精矿的商业规模生物滤池中使用的最大速率。为了维持这些高氧化速率,重要的是确保向反应器的氧气和二氧化碳的供应速率足够。这些测试中获得的高铜萃取率表明,使用极端嗜热剂处理黄铜矿精矿的工艺具有进一步开发和评估用于商业应用的潜力。

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