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首页> 外文期刊>鉄と鋼/Journal of the Iron and Steel Institute of Japan. >Coke disintegration behavior in the raceway of the blast furnace at pulverized coal injection
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Coke disintegration behavior in the raceway of the blast furnace at pulverized coal injection

机译:喷粉煤在高炉管道中的焦炭分解行为

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摘要

To clarify the effect of pulverized coal injection on coke disintegration behavior in the raceway, hot model experiments were carried out and changes in reaction mechanisms of coke in the raceway were examined by a mathematical model. Furthermore, a coke disintegration model had been newly developed to analyze the effects of the pulverized coal injection and the coal combustibility on the coke disintegration rate quantitatively. As the result of the analysis using this model, pulverized coal injection had a great effect on increasing the coke disintegration rate due to the shrinkage of the oxidation zone existing in front of the tuyere that had a burn-out effect of the degraded layer on coke particles generated by the solution-loss reaction in the depths of the raceway. However, the disintegration rate could be decreased by improvement of the combustibility of the pulverized coal. It was assumed that increase in consumption of carbon dioxide by the pulverized coal resulted in suppress the formation of the degraded layer on the coke particles. Based on above mentioned results, the injection lances at Fukuyama No.5 blast furnace were changed from the conventional single lance to the eccentric double lance with high combustibility, then the permeability at the lower part of the blast furnace was considerably improved, and it was suggested that the improvement of the lance structure could be an effective way to restrain the generation of coke fines from the raceway.
机译:为了弄清楚粉煤喷射对滚道中焦炭崩解行为的影响,进行了热模型实验,并通过数学模型研究了滚道中焦炭反应机理的变化。此外,还建立了新的焦炭分解模型,用于定量分析粉煤喷射和煤可燃性对焦炭分解速率的影响。使用该模型进行分析的结果表明,喷粉煤对提高焦炭的崩解速率有很大的影响,这是因为风口前存在的氧化区收缩,这对焦炭的降解层具有烧尽作用。溶液损失反应在滚道深处产生的颗粒。但是,通过提高煤粉的可燃性可以降低崩解率。据推测,煤粉消耗的二氧化碳的增加导致抑制了在焦炭颗粒上的降解层的形成。根据上述结果,将福山五号高炉的喷枪从传统的单喷枪改为易燃性高的偏心双喷枪,从而大大提高了高炉下部的渗透性,他认为,改进喷枪的结构可能是抑制滚道产生焦炭细粉的有效方法。

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