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Removal of Copper Cyanide Complexes from Solutions Formed in Silver/Gold -Cyanidation Recovery Process

机译:从银/金-氰化回收过程中形成的溶液中去除氰化铜络合物

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An innovative process for removing copper cyanide complexes including silver and zinc from cyanidation circuits has been developed. The technology was based on the inducing the nucleated precipitation of copper and silver in a tube serpentine reactor, using sodium sulfide as the precipitate and sulfuric acid as pH control. The results showed that pH had a great effect on copper cyanide removal efficiency and the optimum pH was about 3 to 3.5. At this pH value copper cyanide removal efficiency could be achieved above 97 and 99 % ,when influent copper concentration ions were 650 and 900 ppm respectively. In this process (sulphidizaton-acidification-recycle-thickening), the cyanide associated with the copper cyanide complexes is released as HCN gas under weakly acidic conditions, allowing it to be recycled back to the cyanidation process as free cyanide. This system was successfully commercial applied at Minera William in Mexico.
机译:开发了一种从氰化回路中去除包括银和锌在内的氰化铜络合物的创新方法。该技术基于在管式蛇形反应器中诱导铜和银的成核沉淀,使用硫化钠作为沉淀物,硫酸作为pH值控制剂。结果表明,pH值对氰化铜的去除率有很大影响,最适pH值约为3-3.5。在此pH值下,当进水铜浓度离子分别为650和900 ppm时,氰化铜的去除效率可达到97%和99%以上。在该过程中(磺化酸化-循环增稠),与氰化铜络合物缔合的氰化物在弱酸性条件下作为HCN气体释放出来,使其作为游离氰化物循环回到氰化过程中。该系统已在墨西哥的Minera William成功地商业应用。

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