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Biogenic Hydrogen Sulfide for Cyanide Regeneration in Solutions during Cupriferous Gold Ores Processing

机译:富含黄金矿石加工期间氰化物再生的生物硫化氢

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An optimal approach to the problem of cupriferous gold ores hydrometallurgical processing is the recycling of process solutions after copper recovery and regeneration of cyanide bound in complexes. The study focuses on the copper-cyanide solutions processing technology using biogenic hydrogen sulfide for copper recovery in the form of chalcocite, and cyanide regeneration. The strains of anaerobic sulfidogenic thermophilic microorganisms Desulfurella acetivorans and Desulfurella Kamchatkensis were used for producing hydrogen sulfide. The studies on copper precipitation and cyanide regeneration were conducted on copper-cyanide process solutions which were obtained during cyanidation of refractory cupriferous gold-bearing flotation concentrates from one of the deposits in the South Ural (Russia). Ten cycles of "Cyanidation-Regeneration" were carried out in total. The copper recovery was 86-96%; the cyanide regeneration obtained 96%. On an average 8.9 kg of sodium cyanide and 4.6 kg of copper sulfide were recovered from 1 m~3 of solution. The sodium cyanide consumption decreased from 25.0 kg/t to 6.0 kg/t without reducing gold recovery during the CIL (carbon-in-leach) recycling process. The gold recovery was the same 63-68%.
机译:富含黄金矿冶冶金加工问题的最佳方法是在复合物中铜回收和氰化物再生后的过程溶液再循环。该研究侧重于使用生物硫化硫化铜的铜 - 氰化物溶液加工技术,以氯代钴的形式进行铜恢复,以及氰化物再生。使用厌氧硫化嗜热嗜热微生物的菌株脱硫乙酰乙酰胍和脱硫菌Kamchatkensis用于生产硫化氢。对铜 - 氰化物加工溶液进行了铜沉淀和氰化物再生的研究,该铜 - 氰化物加工溶液在烧结铜含铜的烧结浮选浓缩物中获得的浓缩物,其中南部乌拉尔(俄罗斯)中的一种沉积物。 10个“氰化 - 再生”的周期总共进行。铜回收率为86-96%;氰化物再生获得96%。平均8.9kg氰化钠和4.6kg硫化铜从1M〜3溶液中回收。氰化钠消耗量从25.0kg / t降至6.0kg / t,而不减少CIL(含碳)回收过程中的金回收率。黄金回收率相同63-68%。

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