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首页> 外文期刊>International Journal of Mining and Geo-Engineering >The Effect of Different Additives and Medium on the Bioleaching of Molybdenite for Cu and Mo Extraction Using Mix Mesophilic Microorganism
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The Effect of Different Additives and Medium on the Bioleaching of Molybdenite for Cu and Mo Extraction Using Mix Mesophilic Microorganism

机译:不同添加剂和介质对混合嗜温微生物提取钼矿中铜和钼的生物浸出的影响

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Bioleaching processes for extraction of Cu and Mo from molybdenite cons. are more environmentally friendly and consume less energy than conventional technologies, yet less economically efficient. One necessary step towards arriving at a cost-effective bioleaching process is using appropriate methodology to optimize pertinent factors in such processes. To this end, the present study employed Response Surface Methodology to optimize important factors in a molybdenite bioleaching process by mix mesophilic microorganism using shake flasks. The effect of change in the levels of molybdenite concentration, pyrite and silver ion concentration as additives - in the range 3-9%, 1-5%, and 0-1.2gr/l, respectively - on the rate of Cu and Mo bioleaching was studied using a Central Composite Design. The results showed a statistically significant effect of silver ion and molybdenite concentration, and to a lesser pyrite concentration, on the rate of bioleaching of Cu and Mo. Further, different mediums and additives were evaluated for copper and molybdenum extraction from molybdenite concentrate in bioleaching process. Small amounts of silver (100mgr/l AgSO4) dramatically accelerated the copper dissolution process. Addition of FeS2 and sulfur with ferrous sulfate accelerated the acidification and raised the oxidation-reduction potential of solution (medium) with an inoculation of 15% (v/v) of active and adapted indigenous mesophilic bacteria, thus resulting in an overall increase in Mo dissolution efficiency.
机译:从辉钼矿中提取铜和钼的生物浸出工艺。与传统技术相比,它们更环保,消耗的能源更少,但经济效率却更低。达到具有成本效益的生物浸出过程的一个必要步骤是使用适当的方法来优化此类过程中的相关因素。为此,本研究采用响应面方法通过摇瓶混合嗜温微生物来优化辉钼矿生物浸出过程中的重要因素。分别作为3-9%,1-5%和0-1.2gr / l的辉钼矿,黄铁矿和银离子浓度水平变化对Cu和Mo生物浸出率的影响使用中央复合设计进行了研究。结果表明,银离子和辉钼矿的浓度对铜和钼的生物浸出率具有统计学意义的显着影响,而对黄铁矿浓度的影响较小。此外,还对生物浸出过程中从辉钼矿精矿中提取铜和钼的不同介质和添加剂进行了评估。少量的银(100mgr / l AgSO4)大大加速了铜的溶解过程。 FeS2和硫磺与硫酸亚铁的加入加速了酸化并提高了溶液(介质)的氧化还原电位,接种了15%(v / v)的活性和适应性原生嗜温细菌,从而导致Mo的总体增加溶解效率。

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