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Investigation of the Oxygen Bottom Blown Copper Smelting Process

机译:氧气底部吹铜冶炼过程的研究

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The oxygen bottom blown copper smelting process is a new technology which has been widely applied to the copper production in China. In this work, a computational thermodynamics model for this technology has been established, based on smelting mechanism and theory of Gibbs free energy minimization. The calculated results from the model agree well with the actual industrial data, indicating that the model can be used for the predictions under different operating conditions. The tendencies of the key parameters (such as Cu losses and Fe_3O_4 content in slag) and the distribution ratios of the minor elements (such as Pb, Zn, As, Sb and Bi) can be predicted by adjusting the oxygen/ore ratio charged into the bottom blown copper smelting furnace. The model can be used to monitor and optimize the industrial operations of the oxygen bottom blown copper smelting process.
机译:氧气底部吹铜冶炼过程是一种新技术,已广泛应用于中国的铜生产。在这项工作中,基于熔炼机构和GIBBS自由能量最小化的理论,建立了该技术的计算热力学模型。该模型的计算结果与实际的工业数据一致,表明该模型可用于不同的操作条件下的预测。通过调节充电的氧/矿比,可以预测键参数(如渣中的Cu损失和Fe_3O_4含量)和次次元素(例如Pb,Zn,As,Sb和Bi)的分布比底部吹铜冶炼炉。该模型可用于监测和优化氧气底部吹铜冶炼过程的工业运算。

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