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Gold recovery enhancement from a refractory flotation concentrate by sequential bioleaching and thiourea leach

机译:通过顺序生物浸出和硫脲浸提提高难处理浮选精矿中的金回收率

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In the present work, the applicability of pre-biooxidation using mixed cultures containing Thiobacillus ferrooxidans and Leptospirillum ferrooxidans from a refractory flotation sulfide concentrate was studied. The flotation concentrate consisted mainly of arsenopyrite and pyrite. Parameters for adapting the bacteria to arsenic(III) and catalyzing oxidation of sulfides with silver ion were also studied. The optimum conditions for efficient biooxidation were 10 percent culture inoculation, 5 percent pulp density, and a 10 mg/L silver ion catalyst in a pH = 2 iron-free 9K suspension at 30 deg C for 6 days, using the tamed mixed cultures. Under optimal bioleaching conditions, the results demonstrated that the oxidation times were shortened by almost 9 days (from 15 to 6 days at a 95 percent arsenic and iron oxidation level) compared to the sterilized control. After biooxidation, the gold extraction from the above biooxidation residue was studied. When sodium sulfite powder of 2.52 g/kg concentrate was added into the pH = 2 sulfuric acidic-thiourea system, the consumption of thiourea significantly decreased from 12.0 to 3.0 g/kg concentrate and the gold extraction time was remarkably shortened from 6 to 1 h.
机译:在目前的工作中,研究了使用难处理的浮选硫化物精矿中含有铁氧硫硫杆菌和铁氧体螺旋螺菌的混合培养物进行生物预氧化的适用性。浮选精矿主要由毒砂和黄铁矿组成。还研究了使细菌适应砷(III)以及催化银离子氧化硫化物的参数。有效生物氧化的最佳条件是使用驯化的混合培养物,在10%的培养物接种,5%的果肉密度和10 mg / L的银离子催化剂中,在pH = 2的无铁9K悬浮液中,在30摄氏度下放置6天。在最佳生物浸出条件下,结果表明,与灭菌对照相比,氧化时间缩短了近9天(砷和铁的氧化水平为95%时,从15天缩短到6天)。生物氧化后,研究了从上述生物氧化残余物中提取金的方法。在pH = 2的硫酸-硫脲体系中添加2.52 g / kg精矿的亚硫酸钠粉末后,硫脲的消耗量从12.0 g / kg精矿显着降低至3.0 g / kg精矿,金提取时间从6 h显着缩短至1 h 。

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