首页> 外文会议>Symposium on Characterization of Minerals, Metals and Materials >REDUCTION MECHANISMS OF COPPER, COBALT AND IRON DURING LOW TEMPERATURE RECOVERY FROM MINERAL SULPHIDE CONCENTRATES
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REDUCTION MECHANISMS OF COPPER, COBALT AND IRON DURING LOW TEMPERATURE RECOVERY FROM MINERAL SULPHIDE CONCENTRATES

机译:矿硫化物浓缩物低温回收过程中铜,钴和铁的减少机制

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The study focuses on the reduction mechanisms of copper, cobalt and iron during carbothermic reduction of copper-cobalt mineral sulphide concentrates in the presence of lime, in the temperature range of 1073K and 1273K. We have used three types of mineral concentrates which were derived from froth flotation from the Copperbelt region in Zambia. The reduction mechanisms were studied using thermogravimetric analysis in which selected reactions were stopped at different times for characterising the reaction mechanism using optical microscopy, XRD and SEM-EDX analyses. Using SEM-EDX analysis, we have analysed in details the stages of metallic phase formation during reduction process. Metallic cobalt and iron were embedded into copper, thereby permitting magnetic separation of the reduced metals even though copper is diamagnetic. Methods of preferential reduction of metal values were investigated by analysing the metallic phase formation.
机译:该研究侧重于铜,钴和铁在石灰的铜 - 钴矿物硫化物浓缩物中的铜,钴和铁的减少机制,在1073K和1273K的温度范围内。我们使用了三种类型的矿物浓缩物,该矿物浓缩物来自赞比亚的铜带区的泡沫浮选。研究了使用热重分析进行了减少机制,其中在不同时间停止了选择的反应,以表征使用光学显微镜,XRD和SEM EDX分析来表征反应机理。使用SEM-EDX分析,我们在细节分析了在还原过程中金属相形成的阶段。金属钴和铁嵌入铜中,从而允许铜的磁性分离,即使铜是抗磁的。通过分析金属相形成研究了优先减少金属值的方法。

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