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Two-step processing of refractory gold-containing sulfidic concentrate via biooxidation at two temperatures

机译:通过在两个温度下通过生物氧化进行耐火金硫酸浓缩物的两步处理

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摘要

A practical problem in the biohydrometallurgical processing of sulfide raw materials is the need to increase the efficiency and stability. The heating of pulp in bioreactors causes exothermic lysis of microorganisms and cessation of the production process. To find solutions to these problems, the present study examines the biooxidation of a gold-bearing sulfidic concentrate in a two-step (ferric leaching + biooxidation) process with different temperatures in the bioreactors at the biological step: 50 °C in the first bioreactor and 39 °C in the second. The main minerals of the flotation concentrate were pyrrhotite, pyrite, arsenopyrite, and stibnite. The preliminary ferric leaching of the concentrate for 5 h at 80 °C and pH 1.15-1.35 allowed oxidization of 26.8% of arsenopyrite and 54.4% of sulfur in the sulfides. At the biological step, a moderately thermophilic culture of acidophilic microorganisms dominated by representatives of the genus Sulfobacillus was used. The residence time of the pulp in each bioreactor was 2 days with a total residence time of 4 days. This study indicated that the efficiency of two-step process with the use of a two-temperature mode is comparable with the constant temperature mode and much higher than that of the one-step process. The final oxidation levels of arsenopyrite and sulfidic sulfur for the two-step process with elevated temperature in the primary bioreactor were 73.1 and 65.9%, respectively, with 82% gold recovery.
机译:硫化物原料的生物尺寸冶金加工中的实际问题是需要提高效率和稳定性。生物反应器中的纸浆加热导致微生物的放热裂解和生产过程的停止。为了寻找解决这些问题的解决方案,本研究研究了在生物步骤中具有不同温度的两步(公铁浸出+生物氧化)过程中镀金硫酸浓缩物的生物氧化,在生物步骤中的生物反应器中的不同温度:第一个生物反应器中的50℃第二个和39°C。浮选浓缩物的主要矿物质是烟草酸盐,黄铁矿,砷吡啶和锑。浓缩物在80℃和pH 1.15-1.35的初步丙醛浸出5小时,允许氧化26.8%的亚苯甲酸盐和54.4%的硫化物中的硫。在生物步骤中,使用由苏比拉菌属的代表主导的嗜酸性微生物的中等嗜热培养物。每个生物反应器中纸浆的停留时间为2天,总停留时间为4天。本研究表明,通过使用双温模式的两步过程的效率与恒温模式相当,远高于一步法的比较。在初级生物反应器中升高的两步方法的砷吡啶沸石和硫酸硫的最终氧化水平分别为73.1和65.9%,黄金回收率为82%。

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