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Cyanide recovery by ion exchange from gold ore waste effluents containing copper

机译:通过离子交换从含铜的金矿石废液中回收氰化物

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The recovery of cyanide from waste effluents of the cyanidation process in gold extraction plants is important environmentally and economically. In this respect ion exchange is being tested as a possible economic and versatile method for gold ores containing copper minerals. The present study shows the potential of strong and weak base ion exchange resins, particularly the former, for separating copper cyanide complexes from these industrial effluents, and in particular the feasibility of elution with different eluants. Three possible reagents are proposed for use with these resins and the industrial effluents as load solutions: NaCN, NaSCN and NaNO_3. The recovery of copper complexes from industrial effluents using a strong base resin, Lewatit MP-500, and NaSCN as eluant solution, is very high, with recoveries of over 90 percent in each step. Problems arise when several cycles of load and elution are carried out with the resin, and the performance of the resin decreases when working with unfiltered solutions after several operational cycles.
机译:从金提取工厂中氰化过程中的废水中回收氰化物在环境和经济上都很重要。在这方面,正在测试离子交换作为含铜矿物的金矿石的一种可能的经济通用方法。本研究表明,强碱离子交换树脂和弱碱离子交换树脂(特别是前者)从这些工业废水中分离出氰化铜络合物的潜力,尤其是用不同洗脱液洗脱的可行性。提出了三种可能的试剂与这些树脂和工业废水一起用作上样溶液:NaCN,NaSCN和NaNO_3。使用强碱树脂Lewatit MP-500和NaSCN作为洗脱液,从工业废水中回收铜络合物的回收率很高,每个步骤的回收率均超过90%。当用树脂进行数个负载和洗脱循环时会出现问题,并且在数个操作循环后使用未过滤溶液处理时,树脂的性能会下降。

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