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Minimizing of copper losses to converter slag by a boron compound addition

机译:通过硼化合物加入最小化铜损耗转换器渣

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In copper production, the concentrate obtained after ore-flotation follows by pyrometallurgical route; Smelting, Converting and Fire Refining stages to obtain the anode plates. In this production process, a significant amount of copper (4–8 %Cu) goes to converter slag (CS) which is the most serious problem facing the copper sector. Therefore, in this study, it was aimed to minimize the copper losses to CS in converter stage by adding calcined colemanite (CC) which is a boron compound. After characterization of CS in detail, effect of the reaction temperature and CC addition were experimentally investigated. Then, thermochemical calculations of the slag with the addition of CC were carried out by using the Equilib and Phase Diagram modules of the FactSage thermochemical software. Experimental results show that the amount of copper losses to the CS can be decreased from 4.45% to 1.2% by adding 2% CC to the converter slag at the temperature of 1250?°C for 3?h reaction time.
机译:在铜生产中,通过PyromePurgical途径在矿石后获得的浓缩物;冶炼,转换和消防阶段获得阳极板。在该生产过程中,大量的铜(4-8%Cu)进入转换器渣(CS),这是铜部门面临的最严重的问题。因此,在本研究中,旨在通过添加煅烧的Cohanite(CC)将转换器阶段中的CS铜损失最小化,该煅烧的Cohanite(CC)是硼化合物。在详细描述CS后,实验研究了反应温度和CC添加的影响。然后,通过使用Fequochemical软件的平衡和相图模块进行加入CC的炉渣的热化学计算。实验结果表明,通过在1250℃的温度下加入2%CC至转化器渣,可以从4.45%到1.2%降低到CS的铜损失量。

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