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铜闪速吹炼过程多相平衡热力学分析

Multiphase equilibrium thermodynamics analysis of copper flash converting process

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【作者】 李明周周孑民张文海李贺松童长仁

【Author】 LI Ming-zhou;ZHOU Jie-min;ZHANG Wen-hai;LI He-song;TONG Chang-ren;School of Metallurgy and Environment,Central South University;School of Metallurgy and Chemical Engineering,Jangxi University of Science and Technology;School of Energy Science and Engineering,Central South University;

【机构】 中南大学冶金与环境学院江西理工大学冶金与化学工程学院中南大学能源科学与工程学院

【摘要】 基于最小自由能原理,建立铜闪速吹炼过程多相平衡数学模型,考察粗铜含硫(CSCu)、渣中钙铁比(RCaFe)、富氧浓度(COxy)和温度(T)对平衡产物各相主元素与组分含量的影响。结果表明:对一定投入量和一定成分的铜锍,提高CSCu可增加粗铜产能,但Cu品位降低,可减少渣量,渣含Fe3O4降低,渣流动性变好;随着RCaFe增加,粗铜量减小,渣量和熔剂量增加,渣含FeO和Fe3O4降低,渣含Cu升高;COxy增加,除对粗铜含氧、富氧和烟气量产生一定影响外,对其他组分含量影响不大;T增加,会影响粗铜含氧、粗铜和炉渣量,还可降低渣含铜。

【Abstract】 Based on the principle of Gibbs free energy minimization, the multi-phase equilibrium mathematical model of the copper flash converting process was built. Then, the effects of the content of sulfide in blister copper(CSCu), the ratio of Ca and Fe in slag(RCaFe), the oxygen-rich concentration(COxy) and the converting temperature(T) on the contents of main elements and compositions of products were studied. The results show that, for the matte with a certain amount and a certain composition, the productivity of blister copper can increase with the rise of CSCu, however, the grade of blister copper and the content of Fe3O4 in slag are lead to reduce, and the mobility of slag shows better. With the rise of RCaFe, the amount of blister copper reduces and the amount of slag and flux increase, meanwhile, the contents of Fe O and Fe3O4 in slag decrease, and the copper in slag become larger. Increasing COxy can definite influence on the content of oxygen in blister copper and the amount of slag and flux, but less on the other compositions. With the rise of T, the content of oxygen in blister copper, the amount of blister copper and slag can be certainly affected, meanwhile, the content of copper in slag increases.

【基金】 国家科技支撑计划资助项目(2013BAB03B05)~~
  • 【文献出处】 中国有色金属学报 ,The Chinese Journal of Nonferrous Metals , 编辑部邮箱 ,2017年07期
  • 【分类号】TF811
  • 【被引频次】8
  • 【下载频次】205
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