首页> 外文期刊>Ironmaking & Steelmaking >Thermodynamic models for predicting dephosphorisation ability and potential of CaO-FeO-Fe2O3-Al2O3-P2O5 slags during secondary refining process of molten steel based on ion and molecule coexistence theory
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Thermodynamic models for predicting dephosphorisation ability and potential of CaO-FeO-Fe2O3-Al2O3-P2O5 slags during secondary refining process of molten steel based on ion and molecule coexistence theory

机译:基于离子和分子共存理论的钢水二次精炼过程中CaO-FeO-Fe2O3-Al2O3-P2O5渣脱磷能力和潜力的热力学模型

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Thermodynamic models for predicting phosphorus distribution ratio L-P and phosphate capacity CPO43- of CaO-FeO-Fe2O3-Al2O3-P2O5 slags during secondary refining process of molten steel, according to the ion and molecule coexistence theory (IMCT), i.e. IMCT-L-P and IMCT-CPO43- models, have been developed by coupling with the developed thermodynamic model for calculating the mass action concentrations N-i of structural units or ion couples in the slags, i.e. the IMCT-N-i model, based on the IMCT. The developed IMCT-L-P and IMCT-CPO43- models have been verified with the experimental results from the literature and the predicted results by the summarised five L-P models and three CPO43- models. Besides the total dephosphorisation ability and potential of the slags as L-P and CPO43-, the respective phosphorus distribution ratio L-P,(i) and the respective phosphate capacity CPO43-; i of six dephosphorisation products as P2O5, 3FeO center dot P2O5, 4FeO center dot P2O5, 2CaO center dot P2O5, 3CaO center dot P2O5 and 4CaO center dot P2O5 can also reliably be predicted by the developed IMCT-L-P and IMCT-CPO43- models. 3CaO center dot P2O5 accounts for 95.00% of dephosphorisation products compared with 5% for 4CaO center dot P2O5. The comprehensive effect of CaO + FetO, which can be described by the mass action concentration ratio N-FetO/N-CaO, controls dephosphorisation ability and potential of the slags. An exponentially growing relationship of lg L-P against slag oxidisation ability and slag basicity as the simplified complex basicity (% CaO)/[(%P2O5) + (% Al2O3)] or optical basicity can be established for the slags in a temperature range from 1811 to 1927 K. However, a linearly increasing relationship of lg CPO43- against slag oxidisation ability and the aforementioned two kinds of slag basicity can be correlated for the slags in the lower temperature range from 1811 to 1828 K and the middle temperature range from 1870 to 1876 K; an inversely asymmetrical U type relationship of lg CPO43- against the aforementioned parameters can be observed for the slags in the higher temperature range from 1918 to 1927 K. The influences of the aforementioned parameters on dephosphorisation ability are significantly different from those on dephosphorisation potential of the slags.
机译:根据离子和分子共存理论(IMCT),即IMCT-LP和IMCT,预测钢水二次精炼过程中CaO-FeO-Fe2O3-Al2O3-P2O5炉渣的磷分布比LP和磷酸盐容量CPO43-的热力学模型-CPO43-模型是通过与开发的热力学模型相结合而开发的,用于计算炉渣中结构单元或离子对的质量作用浓度Ni,即基于IMCT的IMCT-Ni模型。已开发的IMCT-L-P和IMCT-CPO43-模型已通过文献中的实验结果和通过总结出的五个L-P模型和三个CPO43-模型的预测结果进行了验证。除了作为L-P和CPO43-的炉渣的总脱磷能力和潜力之外,相应的磷分布比L-P,(i)和相应的磷酸盐容量CPO43-;通过开发的IMCT-L-P和IMCT-CPO43-模型也可以可靠地预测六个脱磷产物中的i个,例如P2O5、3FeO中心点P2O5、4FeO中心点P2O5、2CaO中心点P2O5、3CaO中心点P2O5和4CaO中心点P2O5。 3CaO中心点P2O5占脱磷产物的95.00%,而4CaO中心点P2O5占5%。 CaO + FetO的综合作用可以通过质量作用浓度比N-FetO / N-CaO来描述,它控制了脱磷能力和炉渣的潜力。可以在1811年的温度范围内为炉渣建立lg LP对炉渣氧化能力和炉渣碱度的指数增长关系,其中包括简化的复杂碱度(%CaO)/ [(%P2O5)+(Al2O3%)]或光学碱度。然而,对于1811至1828 K的较低温度范围和1870至1828 K的中等温度范围的炉渣,lg CPO43-与炉渣氧化能力和上述两种炉渣碱度呈线性增加关系。 1876千;在1918至1927 K的较高温度范围内,可以观察到lg CPO43-与上述参数成反对称的U型关系。上述参数对脱磷能力的影响与对脱磷潜力的影响显着不同。炉渣。

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