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CaO-SiO2-MgO-Al2O3煉鐵渣系硫化物容量的熱力學模型

Thermodynamic model of sulphide capacity in CaO-SiO2-MgO-Al2O3 ironmaking slags

  • 摘要: 基于爐渣離子-分子共存理論(IMCT)建立了CaO-SiO2-MgO-Al2O3煉鐵渣系的硫化物容量預報模型,即IMCT-CS2-模型,比較了該渣系1773 K時實測的硫化物容量、IMCT-CS2-模型預報的硫化物容量及其他五種硫化物容量模型的計算結果.結果表明,由IMCT-CS2-模型預報的1773K時CaO-SiO2-MgO-Al2O3煉鐵渣系的硫化物容量更精確.本文建立的IMCT-CS2-模型不僅可計算該渣系的總硫化物容量,而且可計算該渣系中自由CaO和MgO各自的硫化物容量.1 773 K時CaO-SiO2-MgO-Al2O3煉鐵渣系中Al2O3質量分數由10%增加到17%,CaO質量分數由38%增加到44%,MgO質量分數由12%降低到4%可使自由CaO對該渣系的總硫化物容量貢獻率由97%提高到99%,同時使自由MgO的貢獻率由3%降低到1%.

     

    Abstract: A prediction model of sulphide capacity in CaO-SiO2-MgO-Al2O3 slag systems was developed based on the ion and molecule coexistence theory (IMCT) of slags, i. e., IMCT-CS2-model. The predicted sulphide capacity by the IMCT-CS2-model was compared with the measured one from experiments and the predicted one by other five prediction models of sulphide capacity. The predicted sulphide capacity of CaO-SiO2-MgO-Al2O3 slags at 1 773 K by the developed IMCT-CS2-model has a higher accuracy than the measured one as well as the predicted one by other sulphide capacity models. The developed IMCT-CS2-model can calculate not only the total sulphide capacity of the slags but also the respective sulphide capacity of free CaO and MgO in the slags. Increasing the Al203 content from 10% to 17%, increasing the CaO content from 38% to 44% and decreasing the MgO content from 12% to 4% can improve the contribution ratio of free CaO from 97% to 99% and decrease the contribution ratio of free MgO from 3% to about 1% to the total sulphide capacity of CaO-SiO2-MgO-Al2O3 slags.

     

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