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Tetsu-to-Hagane, Vol.102 (2016), No.12 (December)

机译:哲海(ゔ)l。 102(2016)。 12(配菜)

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摘要

Utilization of small coke in the blast furnace was carried out to improve the permeability in the lower part of the blast furnace. However, at high small coke rates, it was thought that some small coke continues to exist in the lower part of the blast furnace because the small coke charging rate is larger than the gasification reaction rate of the small coke. Therefore, the effect of the small coke rate on permeability in the lower part of the blast furnace was investigated. At high small coke rates, residual small coke with a reduced particle size counted to exist in the lower part of the blast furnace after the coke gasification reaction, and the average particle diameter of the coke and the void fraction of the coke packed bed in the lower part of the blast furnace decreased. It was estimated that the increase in the pressure drop of the coke packed bed in the lower part of the blast furnace was larger than the decrease in pressure drop in the cohesive zone, and as a result, the pressure drop in the lower part of the blast furnace increased.
机译:为了提高高炉下部的渗透性,进行了高炉中的小焦炭的利用。但是,人们认为在高的小焦炭率下,由于小的焦炭装料速率大于小的焦炭的气化反应速率,因此在高炉的下部继续存在一些小的焦炭。因此,研究了低焦炭率对高炉下部渗透性的影响。在高的小焦炭率下,在焦炭气化反应后,高炉的下部存在着残留的,粒径减小的小焦炭,并且焦炭的平均粒径和填充床中的空隙率被计算在内。高炉下部降低。据估计,高炉下部的焦炭填充床的压力降的增加大于粘结区的压力降的减少,结果,高炉下部的压力降。高炉增加。

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