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Computational thermodynamic modelling of direct to blister copper smelting

机译:直接至粗铜冶炼的计算热力学模型

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All sulphide copper concentrates can be smelted directly to blister copper in a flash furnace, but whether or not this is economically viable depends on the iron content of the concentrates. In this work, a computational thermodynamic model of direct to blister copper smelting is described and then used to examine the differences between the smelting of a high iron chalcopyrite concentrate and a low iron bornite concentrate. The rapid decrease in copper recovery as the iron content of the concentrates increases is clearly seen. In practice, the slag has a higher copper content than expected from equilibrium considerations, and this is due to the entrainment of copper bearing material. It is shown that this entrainment can be satisfactorily accommodated in a thermodynamic model so that its impact on copper recovery can be appreciated. Finally, the effect of changing the fluxing regime on copper recovery is examined, and it is seen that adding some lime to the slag increases copper recovery. Whether or not this lime flux addition is economically justified is discussed. It is concluded that computational thermodynamic modelling is a convenient tool for developing a deeper understanding of the effect of process variables on direct to blister copper smelting.
机译:可以将所有硫化铜精矿直接在闪蒸炉中冶炼成粗铜,但在经济上是否可行取决于精矿中的铁含量。在这项工作中,描述了直接至粗铜冶炼的计算热力学模型,然后用于检验高铁黄铜矿精矿和低铁堇青石精矿的冶炼之间的差异。可以清楚地看到,随着精矿中铁含量的增加,铜的回收率迅速下降。在实践中,炉渣中的铜含量高于平衡考虑中的预期含量,这是由于夹带含铜材料引起的。结果表明,这种夹带可以令人满意地容纳在热力学模型中,从而可以理解其对铜回收率的影响。最后,研究了改变助熔剂状态对铜回收率的影响,可以看出向渣中添加石灰可提高铜回收率。讨论了这种石灰助熔剂的添加在经济上是否合理。结论是,计算热力学模型是一种方便的工具,可用于加深对工艺变量对直接至粗铜冶炼的影响的深入了解。

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