首页> 外文会议>TMS annual meeting exhibition;Symposium on characterization of minerals, metals, and materials >A NOVEL LOW-ENERGY ROUTE FOR THE EXTRACTION OF COPPER AND COBALT METALS/ALLOYS FROM THE ZAMBIAN SULPHIDE CONCENTRATES
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A NOVEL LOW-ENERGY ROUTE FOR THE EXTRACTION OF COPPER AND COBALT METALS/ALLOYS FROM THE ZAMBIAN SULPHIDE CONCENTRATES

机译:一种从赞比硫化物精矿中提取铜和钴金属/合金的新型低能路线

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Conventional smelting of copper - cobalt - iron sulphide concentrates result in the oxidation of cobalt and iron, which are subsequently lost into the slag. The emission of SO_2 bearing gas from smelting causes serious health and environmental problems. In this investigation, three different types of copper-cobalt-iron sulphide concentrates, derived from froth flotation, were investigated., the concentrates, each containing more than 40 wt % percent gangue material, were directly reduced in the presence of lime and carbon in the temperature range of 1073 K - 1573 K, for the production of an alloy containing copper, cobalt and iron. We demonstrate the basic principles of process physical chemistry for the recovery of alloy by carrying out a detailed process analysis utilising the predictions from thermodynamic equilibrium and the results from the kinetics of reduction reaction. The effect of temperature on the reduction kinetics and alloy formation were determined and analyzed in detail.
机译:铜-钴-硫化铁精矿的常规冶炼导致钴和铁的氧化,其随后损失到炉渣中。冶炼过程中所含的SO_2气体的排放会导致严重的健康和环境问题。在这项研究中,研究了从泡沫浮选中得到的三种不同类型的铜-钴-铁硫化物精矿。在石灰和碳的存在下,将每种精矿分别含有40%(重量)以上的脉石材料。温度范围为1073 K-1573 K,用于生产包含铜,钴和铁的合金。我们通过利用热力学平衡的预测和还原反应动力学的结果进行详细的过程分析,论证了用于回收合金的过程物理化学的基本原理。确定并分析了温度对还原动力学和合金形成的影响。

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