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SELECTION OF THE PROCESS PARAMETERS FOR BATH AUTOGENOUS SMELTING OF COPPER
引用本文:Guo,Xianjian Beijing General Research lnstitute for Nonferrous Metals,Beijing 100088,China. SELECTION OF THE PROCESS PARAMETERS FOR BATH AUTOGENOUS SMELTING OF COPPER[J]. 中国有色金属学会会刊, 1993, 0(1)
作者姓名:Guo  Xianjian Beijing General Research lnstitute for Nonferrous Metals  Beijing 100088  China
作者单位:Guo,Xianjian Beijing General Research lnstitute for Nonferrous Metals,Beijing 100088,China
摘    要:The process parameters for bath autogenous smelting of copper were selected based on dynamic analysis of the experimental data and calculation of the mathematical model. Selecting the slag composition of SiO_2/Fe=0.80 and CaO%=16. desulphur ratio less than 80 wt.-% in system. and the copper content of matte less than 60 wt.-%, it is able to limit Fe_3O_4 formation and obtain a high desulphurization. The critical oxygen content of the blast increased with decrease of the sulphur content of the concentrate and increase of copper contents of the matte. If the copper contents of the concentrate are respectively of 30 and 35 wt.-%, the critical oxygen contents of the blast will be 48 and 69 wt.-% respectively. The smelling rate increases linearly with the blast intensity. When the sulphur content of the concentrate is 30 wt.-%, the oxygen content of the blast 70 vol.-% and the copper content of the matte 60 wt.-%, a blast intensityy of 700 Nm~3/m~2·h results in a smeling rate of 48.81 t/m~2·d.


SELECTION OF THE PROCESS PARAMETERS FOR BATH AUTOGENOUS SMELTING OF COPPER
Guo,Xianjian Beijing General Research lnstitute for Nonferrous Metals,Beijing ,China. SELECTION OF THE PROCESS PARAMETERS FOR BATH AUTOGENOUS SMELTING OF COPPER[J]. Transactions of Nonferrous Metals Society of China, 1993, 0(1)
Authors:Guo  Xianjian Beijing General Research lnstitute for Nonferrous Metals  Beijing   China
Affiliation:Guo,Xianjian Beijing General Research lnstitute for Nonferrous Metals,Beijing 100088,China
Abstract:
Keywords:process parameters copper bath smelting autogenous smelting
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