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APPLICATION OF ION EXCHANGE POLYMERS IN COPPER CYANIDE AND ACID MINE DRAINAGE

机译:离子交换聚合物在氰化铜和酸矿排水中的应用

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Sulphide-containing minerals, particularly iron, lead to acid formation. In turn, the acid generates effluents such as copper acid drainage (AMD). The Berkeley Pit in Butte, Montana, USA and Mt Lyell in Tasmania, Australia, represent just two of many sites throughout the world for which acceptable treatment methods are required. In the gold cyanidation process, the presence of copper creates both a significant cost impediment and a potential environmental hazard. The tailings dam failure at Baia Mare in Romania which led to the release of copper and zinc cyanides created a major environmental disaster. The application of non-toxic water soluble polymers and ion exchange resins to selectively recover copper from AMD solutions, and the in-plant treatment of copper cyanide solutions and slurries to recover copper and recycle cyanide to prevent cyanide entering the tailings impoundment will be discussed. The economics of the various processes will be highlighted.
机译:含硫化物的矿物质,特别是铁,导致酸形成。反过来,酸产生流出物,例如铜酸引流(AMD)。澳大利亚塔斯马尼亚州蒙大拿,美国和MT Lyell的Buterkeley Pit在塔斯马尼亚州,占全球许多网站中的两个,所以需要可接受的治疗方法。在金氰化过程中,铜的存在产生了重大成本障碍和潜在的环境危害。 Baia Mare在罗马尼亚的尾矿坝失败,导致铜和紫绀型释放造成的主要环境灾害。无毒水溶性聚合物和离子交换树脂的应用从AMD溶液中选择性地回收铜,以及氰化铜溶液的植物处理和浆液中腐蚀,再循环氰化物,以防止氰化物进入尾矿蓄积。将突出各种过程的经济学。

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