首页> 外文会议>Annual Meeting of the Canadian Mineral Processors >DEVELOPMENT OF A FLOWSHEET INCORPORATING CYANIDATION, CIP, CCD AND THE SART PROCESS TO TREAT FLOTATION TAILINGS FROM A MEXICAN COPPER MINE
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DEVELOPMENT OF A FLOWSHEET INCORPORATING CYANIDATION, CIP, CCD AND THE SART PROCESS TO TREAT FLOTATION TAILINGS FROM A MEXICAN COPPER MINE

机译:开发含有氰化,CIP,CCD和SART过程的流程,以处理来自墨西哥铜矿的浮选尾矿

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A flowsheet has been developed to treat the flotation tailings from a copper mine in Mexico to recover gold and silver by cyanidation and carbon-in-pulp (CIP). The plant will treat ~15,000 t/day of a 60:40 blend of current flotation tailings and the mine's historic tailings. The tailings also contain a significant amount of cyanide-soluble copper, and the economic viability of the project is strengthened by recovering most of the copper and cyanide associated with this process. The solution and solid phases in the CIP tailings will be separated in a counter current decantation (CCD) circuit and the CCD solution overflow will be treated by a SART Process. Copper precipitates as a salable copper sulphide product in the SART Process and the cyanide that is associated with the copper complex is regenerated as free cyanide. After SART, a portion of the SART product solution will be recycled to leach to reuse the free cyanide, while the remaining solution will be used as wash water in the CCD circuit. Incorporation of the SART Process in the flowsheet allows the CIP circuit to be operated aggressively as a gold plant, which means most of the silver in solution passes through CIP to SART. Silver co-precipitates with copper in SART and is recovered very efficiently with the copper sulphide by-product. Incorporation of SART also allows the leach and CIP circuits to be operated with relatively high levels of free cyanide, which enhances silver leach kinetics and helps keep copper from loading onto the carbon in CIP. The flowsheet was developed in the laboratory and successfully demonstrated in a fully-integrated pilot plant in 2018.
机译:已经开发了一种流动曲,以将来自墨西哥铜矿的浮选尾矿用氰化和碳酸碳(CIP)来恢复金银。该植物将治疗〜15,000 T /日的目前浮选尾矿和矿山历史尾矿的融合。尾矿还含有大量的氰化溶解铜,并且通过回收与该过程相关的大部分铜和氰化物来加​​强该项目的经济可行性。 CIP尾矿中的溶液和固相将在计数器电流倾析(CCD)电路中分离,CCD溶液溢出将通过SART过程处理。铜沉淀为SART过程中的可销售硫化铜产物,与铜络合物相关的氰化物被再生为自由氰化物。在SART之后,将再循环SART产品溶液的一部分以重复使用自由氰化物,而剩余的溶液将用作CCD电路中的洗涤水。在流程中的SART过程的结合允许CIP电路作为金厂进行积极操作,这意味着大部分溶液中的银在溶液中通过CIP到SART。用SART中用铜共析出银,并用硫化铜副产物非常有效地回收。 SART的掺入还允许浸出和CIP电路以相对高水平的自由氰化物操作,这增强了银浸入动力学,并有助于将铜保持在CIP中的碳上。流程图是在实验室开发的,并于2018年在一家全集成的试点工厂中成功展示。

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