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A Modified Model for Calculating Theoretical Flame Temperature in Blast Furnace and Its Application 被引量:3
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作者 Li ZHU keng wu +3 位作者 Er-hua ZHANG Yuan SHE Wen-long ZHAN Qi-hang LIU 《Journal of Iron and Steel Research(International)》 SCIE EI CAS CSCD 2015年第1期9-14,共6页
The theoretical flame temperature (TFT) before tuyere, always highly concerned by blast furnace (BF) operators, is one of the most important parameters for evaluating the thermal state of hearth. However, some inf... The theoretical flame temperature (TFT) before tuyere, always highly concerned by blast furnace (BF) operators, is one of the most important parameters for evaluating the thermal state of hearth. However, some influ- encing parameters, for example, the SiO2 reduction by carbon, were always neglected or inaccurate when calculating the TFT. According to the definition of TFT, the temperature of coke into raceway and the reduction rate of SiO2 in ash of coke and pulverized coal were obtained by analyzing the samples before tuyere in blast furnace. Taking full ac- count of different factors, a modified model for calculating the TFT in blast furnace was established. The effects of the oxygen enrichment rate, the reduction rate of SiO2 in raceway, the ash content in coke and pulverized coal and the pulverized coal injection (PCI) rate on TFT were determined quantitatively. The modified model was applied to selecting the used coal for PCI in blast furnace. Considering the different SiO2 contents of mixed coal, the calculated TFT remained a stable level. This showed that the selected coal could be suitable for PCI in blast furnace. 展开更多
关键词 theoretical flame temperature blast furnace SiO2 reduction rate modified model
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Estimation of Energy Consumption in COREX Process Using a Modified Rist Operating Diagram 被引量:2
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作者 Wen-long ZHAN keng wu +2 位作者 Zhi-jun HE Qi-hang LIU Xiao-juan wu 《Journal of Iron and Steel Research(International)》 SCIE EI CAS CSCD 2015年第12期1078-1084,共7页
Fuel consumption in the COREX-3000 process run in Baosteel is currently higher than the design index. Therefore, mass and heat balance equations for the COREX process were established using the basic principles in- cl... Fuel consumption in the COREX-3000 process run in Baosteel is currently higher than the design index. Therefore, mass and heat balance equations for the COREX process were established using the basic principles in- cluded in the Rist operating diagram for blast furnace (BF) as a reference. Thermodynamic calculations were then used to modify the Rist operating diagram so that it was suitable for the COREX process. The modified Rist operating dia- gram was then applied for the evaluation of metallization rate (MR) and fuel structure to reduce the energy consump- tion in the COREX process. The modified Rist operating diagram for the shaft furnace (SF) provided a nearly ideal value for the restriction point W when the metallization rate was increased, while the point P on the operating line for the melter gasifier (MG) moved upward due to reduction in the heat required in hearth. The feasibility of reduc- ing the energy consumption during the COREX process by changing the fuel structure was also demonstrated. 展开更多
关键词 modified Rist operating diagram metallization rate fuel structure energy consumption COREX process
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