首页> 外文会议>International Symposium on Hydrometallurgy >INTEGRATION OF COPPER CONCENTRATE PRESSURE OXIDATION PROCESS WITH COPPER HEAP LEACHING FOR IMPROVING OVERALL METALLURGICAL PERFORMANCE
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INTEGRATION OF COPPER CONCENTRATE PRESSURE OXIDATION PROCESS WITH COPPER HEAP LEACHING FOR IMPROVING OVERALL METALLURGICAL PERFORMANCE

机译:铜浓缩氧化工艺与铜堆浸出的整合改善整体冶金性能

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During heap leaching of secondary copper sulphide ores operated at low heap temperatures and high levels of leach solution salinity, copper recovery is usually unsatisfactory, due to a slow chemical and bacteriological leaching of the covellite minerals either formed from leaching of chalcocite or naturally occurring in ores. A laboratory test program was conducted to investigate the effect of leach solution temperature in the range of 20 to 50°C on copper extraction during stirred reactor, bottle roll, and short column leaching of fresh or heap leached secondary copper sulphide ores. It was demonstrated that increasing heap temperature is an effective approach for improving recovery of copper from secondary copper sulphide ores. A review of the technologies available for heating heap leach solution or decreasing solution salinity to improve copper recovery from secondary sulphide ore indicates that an integration of copper concentrate pressure leaching with heap leaching is potentially a cost-effective approach. A copper flotation concentrate sample was tested through pressure oxidation with the use of heap leach solutions of varying strengths for the repulping of the concentrate in order to examine its effect on pressure oxidation performance. The test results indicate that use of heap leach solution of high salinity in the pressure oxidation process does not cause a negative impact on the process performance for copper extraction, sulphide oxidation, and recovery of gold (if present) from pressure leach residue, and has additional advantages of removing the bacterially inhibitory aluminum from heap leach solution and generating more acid and ferric iron in the pregnant leach solution. A flowsheet configuration for full integration of the copper concentrate pressure oxidation with heap leaching of secondary copper sulphide ore is proposed and discussed.
机译:在低堆温下操作的二级硫化铜矿石的堆浸出过程中,铜回收通常不令人满意,因为聚环素矿物的慢的化学和细菌浸出,无论是由氯钴酸的浸出还是在矿石中都发生。进行了实验室测试程序,以研究浸出反应器,瓶辊和短柱浸出的铜萃取在20至50℃的范围内的浸出溶液温度在新鲜或堆浸出的二级铜硫化铜矿石中的短柱浸出的范围内的影响。结果证明,堆温的增加是从二级硫化铜矿石中改善铜的恢复的有效方法。对用于加热堆浸出液或溶液盐度降低以改善仲硫化物矿石的铜回收的技术表明,铜浓缩液与堆浸出的整合是可能是具有成本效益的方法。通过使用堆浸出溶液来测试铜浮选浓缩物样品,用于使用变化强度的堆浸渍溶液进行浓缩物,以检查其对压力氧化性能的影响。测试结果表明,在压力氧化过程中使用高盐度的堆浸出溶液对铜提取,硫化物氧化和从压力浸出残留的回收的过程性能产生负面影响,并具有从堆浸出溶液中除去细菌抑制铝的额外优点,并在怀孕的浸出溶液中产生更多酸和铁。提出并讨论了用堆浸出堆浸出的铜浓缩氧化铜浓缩氧化铜浓缩氧化的流量配置。

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