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Dephosphorization Ability Estimation of FetO-rich Demanganization Slag during Hot Metal Pre-treatment

机译:热金属预处理过程中富含甲锰化渣的脱磷能力估算

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In order to find out the optimum thermodynamic conditions for hot metal dephosphorization and predict phosphorus content after demanganization pretreatment, thermodynamic equilibrium experiments between CaO-FetO-SiO_2-MnO-P_2O_5 slag and silver/solid iron were carried out in an iron crucible at different temperature under pure argon atmosphere in an electric resistant furnace. The results indicate that phosphorus distribution ratios increase with an increase of basicity in the slag at the experiment temperature, and then they decrease with an increase of basicity at 1573K and 1623K. The phosphorus distribution ratios decrease with an increase of FetO content in the slag at 1573K, while they increase with an increase of FetO content in the slag and then decrease with an increase of FetO content in the slag at 1623K. The results indicate that the maximum phosphorus distribution ratio between slag and hot metal is 92.4 when basicity of the slag is 1.7 and FetO content in slag is 49.75 mass% at 1623K, and the correspondent phosphorus content in the carbon saturated iron is 0.019 mass%. Dephosphorization is easier under low temperature. The equilibrium quotient of phosphorus obtained in the present work is formulated as a function of slag compositions and temperature using the multiple regression method which is used to predict phosphorus content equilibrium with the demanganization slag and optimum conditions needed for ideal phosphorus contents in demanganization pretreatment.
机译:为了确定热金属脱磷和预测后的热金属脱磷和预测磷含量的最佳热力学条件,在不同温度的铁坩埚中进行CaO-Feto-SiO_2-MnO-P_2O_5炉渣和银/固体铁之间的热力学平衡实验在纯氩气氛下在电阻炉下。结果表明,在实验温度下,磷的分布比率随着渣中的碱度的增加而增加,然后在1573K和1623K增加的基础上随着碱度的增加而降低。磷的分布比率随着1573K的渣中的纤维含量的增加而降低,而它们随着炉渣中的纤维含量的增加而增加,然后随着1623K的炉渣中的胎面含量的增加而降低。结果表明,当炉渣的碱度为1.7时,炉渣和热金属之间的最大磷分布比率为92.4,并且在1623K的渣中的芳级含量为49.75质量%,并且碳饱和铁中的相应的磷含量为0.019质量%。低温下的脱磷更容易。使用多元回归方法配制了本作本作中所得磷的磷的平衡商,其使用多频次返回方法用脱锰渣预测脱锰渣和脱盐预处理中理想磷含量所需的最佳条件的函数。

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