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研究了埋弧炉锰铁生产中由MnO-CaO-MgO-SiO2-Al2O3组成的标准炉渣。渣中Al2O3含量固定在5%。本研究目标集中在1500℃时锰铁渣中MnO的热力学活度上。为了达到校准的目的,在1300、1400和1500℃时重新测定了Mn在Pt-Mn合金中的热力学活度。在1500℃CO气氛下研究了碳饱和的Mn-Si-Fe-C合金与MnO-CaO-MgO-SiO2-Al2O3渣之间的平衡。在试验中发现,aMnO值随着MnO的增加而增大,趋向于随CaO/MgO比的增大而增大。aMnO值也随着碱度的增大而增大。在渣-金属平衡试验中,金属相中碳和硅的含量为反比关系。当硅含量一定时,由于Mn/Fe比增加,碳在金相中的溶解度增加。金属中含硅量随着渣中SiO2含量的增加而增加.以及当MgO代替渣中的CaO时,金属中含硅量增加。增大渣碱度使金属相含硅量降低。
The standard slag composed of MnO-CaO-MgO-SiO2-Al2O3 in the production of ferromanganese submerged arc furnace was studied. Slag Al2O3 content fixed at 5%. The aim of this study is to focus on the thermodynamic activity of MnO in ferromanganese slag at 1500 ℃. For calibration purposes, the thermodynamic activity of Mn in Pt-Mn alloys was re-measured at 1300, 1400 and 1500 ° C. The equilibrium between carbon-saturated Mn-Si-Fe-C alloy and MnO-CaO-MgO-SiO2-Al2O3 slag was investigated at 1500 ℃ CO atmosphere. In the experiment, it was found that the value of aMnO increased with the increase of MnO and tended to increase with the increase of CaO / MgO ratio. The value of aMnO also increases with increasing alkalinity. In the slag-metal balance test, the content of carbon and silicon in the metal phase is inversely proportional. When the silicon content is constant, the solubility of carbon in the metallographic phase increases due to the increased Mn / Fe ratio. The amount of silicon in the metal increases as the SiO2 content in the slag increases. And when MgO replaces CaO in the slag, the amount of silicon in the metal increases. Increase the slag alkalinity to reduce the silicon content of the metal phase.