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ECONOMICAL RESEARCH OF DEPHOSPHORIZATION IN SINGLE SLAG MELTING PROCESS

机译:单炉渣熔化过程中脱磷的经济研究

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In order to forecast the cost of dephosphorization during BOF process, and achieve economical dephosphorization of BOF. The mathematical model of dephosphorization cost for BOF process was established. The model calculations show that, when the silicon content and phosphorus content are increased in hot metal, and the final phosphorus content of BOF is decreased, the dephosphorization cost will be increased. The silicon content of hot metal is increased of 0.1% in the plant, the dephosphorization cost is added by 9 RMB/ton steel. The De-P cost of mode A is much higher than the other two modes for three typical production modes of single slag melting process, when the phosphorus content of hot metal is higher than 0.14%, an increase in the phosphorus content by 0.01%, the De-P cost of mode A is added by about 7 RMB/ton steel. Meanwhile, when the phosphorus content of hot metal is lower than 0.165%, the De-P cost of mode C is higher than mode B's. For BOF single slag melting process, the dephosphorization cost calculated by model is between ± 2%, proving that the model is reliable for the prediction of dephosphorization cost.
机译:为了预测转炉过程中脱磷的成本,实现转炉经济的脱磷。建立了转炉流程脱磷成本的数学模型。模型计算表明,当铁水中硅含量和磷含量增加,而转炉的最终磷含量减少时,脱磷成本将增加。工厂中铁水的硅含量增加了0.1%,每吨钢增加了9元的脱磷成本。对于单渣熔炼的三种典型生产方式,方式A的De-P成本远高于其他两种方式,当铁水的磷含量高于0.14%时,磷含量增加0.01%,方式A的De-P成本每吨钢增加了约7元。同时,当铁水的磷含量低于0.165%时,模式C的De-P成本高于模式B。对于转炉单渣熔炼过程,模型计算的脱磷成本在±2%之间,证明了该模型对脱磷成本的预测是可靠的。

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