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Industrial Practice of BiPCI Process of Pulverized Coal Injection for Blast Furnace Ironmaking at SSAB

机译:SSAB高炉炼铁粉煤喷射BiPCI工艺的工业实践

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BiPCI technology of pulverized coal injection for blast furnace ironmaking was applied to No.2 Blast Furnace of SSAB Oxelosund in Sweden, and notable effectiveness of this BiPCI practice at SSAB has been achieved. The results show that if the tuyere injection rate of pulverized coal is kept nearly unchanged, (1) BiPCI can increase the overall coal rate and decrease the coke rate. When the second injection rate of pulverized coal attains 5 kg/tHM, the coke rate could be reduced by 5 kg/tHM; (2) BiPCI can increase the burden permeability, decrease the pressure drop of the furnace, and produce proper gas flow distribution, which is favourable to keep smooth running of the blast furnace and decrease the total reducing agent rate (RAR). During the test, the RAR showed a decrease by 2.8 kg/tHM (corrected RAR by 1.45 kg/tHM); (3) The pulverized coal through the second injection can be effectively used to protect the coke from fast degradation and improve the coke strength in the blast furnace, which is favourable to lower the high requirement on the coke quality under high coal rate operation.
机译:瑞典SSAB Oxelosund的2号高炉采用BiPCI高炉炼铁粉煤喷射技术,该BiPCI实践在SSAB上取得了显著成效。结果表明,如果将粉煤的风口注入率保持几乎不变,则(1)BiPCI可以提高总煤率,降低焦炭率。当煤粉的第二次喷射速率达到5 kg / tHM时,焦炭速率可以降低5 kg / tHM; (2)BiPCI可以提高炉料的渗透率,降低炉压降,并产生适当的气流分布,有利于保持高炉的平稳运行,降低总还原剂率(RAR)。在测试过程中,RAR降低了2.8 kg / tHM(校正后的RAR降低了1.45 kg / tHM); (3)第二次喷入的煤粉可有效地保护焦炭免于快速降解,提高高炉中的焦炭强度,有利于降低高煤速运转下对焦炭质量的高要求。

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