首页> 外文期刊>Iranian Journal of Science and Technology. Transaction A, Science >Copper Recovery from Chalcopyrite Flotation Concentrate Using Mixed Mesophilic Strains Subjected to Microwave and Ultrasound Irradiation
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Copper Recovery from Chalcopyrite Flotation Concentrate Using Mixed Mesophilic Strains Subjected to Microwave and Ultrasound Irradiation

机译:微波和超声辐照混合中温菌株从黄铜矿浮选精矿中回收铜。

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摘要

The current study compared the bioleaching ability of a mutated mesophilic mixed culture with that of a non-mutated mesophilic mixed culture and a moderately thermophilic mixed culture. Mutation experiments were carried out using ultrasonic and microwave irradiation on Acidithiobacillus ferrooxidans, Leptospirillum ferrooxidans, and Acidithiobacillus thiooxidans, mesophilic bacteria used in copper bioleaching. The mutational effects of irradiation were determined by measuring the ferrous iron and elemental sulfur oxidation rates. The mutated strains exhibiting the best oxidation activity were used in bioleaching tests. Bioleaching experiments using the mutated mixed culture were carried out under the same optimized operational conditions as for the non-mutated mesophilic mixed culture. The bioleaching results were compared to copper recovery obtained by the moderately thermophilic mixed culture. The copper recovery achieved by the non-mutated mesophilic mixed culture was 34.2% after 30days and increased to 39.06 and 37.21% for ultrasonic- and microwave-mutated mesophilic mixed cultures, respectively. The bioleaching rate increased using mutated mesophilic mixed cultures, such that the copper recovery for the ultrasonically mutated mixed culture reached 34.01% after 12days and for the microwave-irradiated mixed culture reached 33.15% after 15days. The results of bioleaching experiments using mutated mesophilic mixed cultures under optimized operational conditions showed that the copper recovery attained was 49.12 and 44.36% for mesophilic mixed cultures mutated by ultrasound and microwaves, respectively. These were comparable with the maximum copper recovery obtained by the moderately thermophilic mixed culture which was 49.8%, especially for the ultrasonically mutated mixed culture.
机译:当前的研究比较了突变的中温混合培养物与非突变的中温混合培养物和中等嗜热混合培养物的生物浸出能力。使用超声和微波辐射对铜生物浸出中使用的嗜酸性细菌铁酸嗜酸杆菌,铁螺旋体钩端螺旋体和硫氧酸嗜酸杆菌进行了突变实验。通过测量二价铁和元素硫的氧化速率来确定辐射的突变效应。表现出最佳氧化活性的突变菌株用于生物浸出测试。使用突变的混合培养物进行生物浸出实验是在与非突变的中温混合培养物相同的最佳操作条件下进行的。将生物浸出结果与通过适度嗜热混合培养获得的铜回收率进行了比较。 30天后,通过非突变的中温混合培养物获得的铜回收率为34.2%,对于超声和微波突变的中温混合培养物,铜的回收率分别提高到39.06和37.21%。使用突变的中温混合培养物提高了生物浸出率,因此,经超声波突变的混合培养物的铜回收率在12天后达到34.01%,而在微波照射下的混合培养物的铜回收率在15天后达到33.15%。在优化的操作条件下使用突变的中温混合培养物进行生物浸出实验的结果表明,经超声波和微波诱变的中温混合培养物的铜回收率分别为49.12和44.36%。这些与中等嗜热混合培养所获得的最大铜回收率可比,为49.8%,尤其是对于超声突变混合培养而言。

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