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首页> 外文期刊>鉄と鋼/Journal of the Iron and Steel Institute of Japan. >Reaction and Consumption Behavior of Unburnt Char in Lower Part of Blast Furnace
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Reaction and Consumption Behavior of Unburnt Char in Lower Part of Blast Furnace

机译:高炉下部未燃焦的反应和消耗行为

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To clarify the gasification and consumption behavior of Unburnt char ascending in the coke packed bed in the lower part of the blast furnace, char reaction-consumption model has been newly developed considering the average residence time and co-gasification with coke particles. The chemical reaction rate constant has been determined based on the high temperature experiments on the char injection into the coke packed bed.From the analyses using this model, the following results were obtained.(1)The mean ascending velocity of char particles with the diameter of 20 #mu# m was approximately 0.3 m/s, and it was smaller than the actual gas velocity by one order of magnitude, suggesting the char particles had fairly long residence time in the blast furnace.(2)The consumption rate of char became lower with the increase in the solid-gas loading ratio. This was considered to be caused by the higher ascending velocity which resulted from the successive renewal of stagnant particles in the packed bed by supplied char particles.(3)According to the examination of char consumption behavior along the blast furnace height, char discharge rate from the top of the thermal reserve zone could be reduced considerably by decreasing char exhaust rate from the raceway. This phenomenon resulted from the increase in the consumption rate throughout the height, due to the decrease in the solid-gas loading ratio. Therefore, to suppress the char exhaustion from the top, it was necessary to improve the combustion efficiency kin the raceway at higher injection rate of pulverized coal.
机译:为了阐明高炉下部焦炭填充床中未燃烧焦炭的气化和消耗行为,考虑了平均停留时间和与焦炭颗粒的共气化,新开发了焦炭反应消耗模型。通过对焦炭填充床中焦炭注入的高温实验,确定了化学反应速率常数,通过该模型的分析得出以下结果:(1)炭颗粒直径的平均上升速度20#mu#m的焦炭约为0.3 m / s,比实际气体速度小一个数量级,表明焦炭颗粒在高炉中的停留时间相当长。(2)焦炭的消耗率随着固体气体载量比的增加而降低。认为这是由于供给的焦炭颗粒连续填充填充床中的滞留颗粒而引起的较高的上升速度所致。(3)根据沿高炉高度的焦炭消耗行为,通过减少滚道的焦炭排放速率,可以大大减少热储备区的顶部。这种现象是由于整个高度的消耗率增加而导致的,这是由于固
体气体载量比的降低。因此,为了抑制从顶部排出的焦炭,必须在粉煤的高喷射率下提高燃烧效率,如滚道一样。

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