转炉炼钢过程渣钢间硫的分配比  被引量:3

Slag-Steel Sulfur Distribution in the Converter Steelmaking Process

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作  者:杨利彬[1] 刘浏[1] 焦兴利[1,2] 邓勇[2] 徐晓伟[2] 

机构地区:[1]钢铁研究总院冶金工艺研究所,北京100081 [2]马钢第四钢轧总厂,安徽马鞍山243000

出  处:《钢铁研究学报》2011年第12期18-21,共4页Journal of Iron and Steel Research

摘  要:采用热力学分析的方法研究了300t转炉渣钢间脱硫反应。发现渣中氧传质控制转炉炼钢脱硫反应,转炉终点渣钢间硫分配比与(FeO)-O-S热力学模型计算结果相符,说明脱硫反应接近平衡。定量分析结果表明,转炉渣钢间硫分配比主要受碱度、FeO含量、MgO含量及温度的影响。根据生产数据回归得到了对生产指导性较强的渣钢间硫分配比计算公式。In the steelmaking process of low sulfur steel,converter was the key to control sulfur content.Through thermodynamic analysis,the desulfurization reaction on the slag-steel interface in converter was investigated.The result show that desulfurization reaction in steelmaking process is cotrolled by oxygen mass transfer from slag to steel.The sulfur distribution calculated from production data has good linear relationship with that from(FeO)-O-S thermodynamic model.The desulfurization reaction in converter steelmaing is close to equilibrium.The key influencing factors on LS are binary basicity(R),mass fraction of FeO in slag,mass fraction of MgO in slag,and temperature of steel in sequence by weight.Based on thermodynamic analysis and production data regression,the semiempirical equation has been gained,which could direct effectively the industrial production.

关 键 词:热力学 脱硫 硫分配比 氧传质 

分 类 号:TF713[冶金工程—钢铁冶金]

 

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