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首页> 外文期刊>Minerals Engineering >Bioleaching of anilite using pure and mixed culture of Acidithiobacillus ferrooxidans and Acidithiobacillus caldus
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Bioleaching of anilite using pure and mixed culture of Acidithiobacillus ferrooxidans and Acidithiobacillus caldus

机译:使用酸性氧化铁硫杆菌和卡尔德氏氧化硫杆菌的纯净和混合培养来生物浸提苯胺

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Anilite oxidation was evaluated with two acidophilic thiobacilli that are important in bioleaching processes. The experiments were carried out in shake flasks in the absence and presence of energy sources such as 2 g/L powdered sulphur and 10 g/L Fe~(2+) (as ferrous sulphate) at pH 2.0, 150 rpm, 35 deg C. Tests showed that copper extraction in a mixed culture of Acidithiobacillus ferrooxidans and Acidithiobacillus caldus was higher than in pure cultures with added sulphur in the presence of anilite. The effect of supplemental iron clearly improved Cu leaching by the A. ferrooxidans culture and the mixed culture. The oxidation of anilite by A. caldus was negligible and this bacterium seemed to have no ability to initiate anilite solubilization. On the other hand, an important potential of A. caldus to leaching anilite was indicated. It can decrease pH of the medium and supply a suitable bioleaching environment.
机译:用两种在生物浸出过程中很重要的嗜酸硫杆菌评估了苯胺的氧化。实验在不存在和存在能量源(例如2 g / L粉末状硫和10 g / L Fe〜(2 +)(作为硫酸亚铁))的摇瓶中进行,pH 2.0,150 rpm,35℃测试表明,在铁酸嗜酸性硫杆菌和卡尔德嗜酸性硫杆菌的混合培养物中,铜的萃取率高于在苯胺存在下添加硫的纯培养物中的铜萃取率。补充铁的作用明显改善了氧化铁农杆菌培养物和混合培养物对铜的浸出。卡尔德酵母对苯胺的氧化作用可以忽略不计,这种细菌似乎没有引发苯胺溶解的能力。另一方面,表明了A.caldus具有浸出苯胺石的重要潜力。它可以降低培养基的pH值并提供合适的生物浸提环境。

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