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Development of Waste Plastics Injection Process in Blast Furnace

机译:高炉废塑料注射工艺的发展

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At Keihin No.1 Blast Furnace, waste plastics recycling system was installed in Oct. 1996. Before the installation of that system, the behavior of waste plastics injected into the blast furnace has been studied with the raceway hot model and the commercial blast furnace so as to investigate the possibility of effective waste plastics utilization in the blast furnace. From the observation of plastics particle injected into the raceway of blast furnace , it was estimated that combustibility of coarse plastics was much different from that of pulverized coal. The combustion point of coarse plastics located to deep domain in raceway compared with that of pulverized coal. Although C_1-C_4 hydrocarbons due to the decomposition of plastics was detected in in-furnace, the decomposition products of plastics in the blast furnace top gas and dust were the same as that of pulverized coal injection. The preparation method of plastics had an influence on the combustion and gasification behavior in the raceway. The coarse plastics gave high combustion and gasification efficiency compared with fine plastics and pulverized coal, and CO_2 gasification rate of unburnt char derived from waste plastics was much higher than that of pulverized coal. Thus, it was concluded that coarse waste plastics could be effectively utilized as a reducing agent in the blast furnace. On the basis of above results, the waste plastics recycling system was designed.
机译:1996年10月,在京滨1号高炉安装了废塑料回收系统。在安装该系统之前,已使用滚道热模型和商用高炉对注入高炉的废塑料的性能进行了研究。以调查在高炉中有效利用废塑料的可能性。从高炉滚道中注入的塑料颗粒的观察,估计粗塑料的可燃性与煤粉的可燃性大不相同。与煤粉相比,粗塑料的燃烧点位于滚道深处。尽管在炉内检测到由于塑料分解引起的C_1-C_4碳氢化合物,但高炉炉顶煤气和粉尘中塑料的分解产物与煤粉喷射的分解产物相同。塑料的制备方法对滚道的燃烧和气化行为有影响。粗塑料与细塑料和煤粉相比具有较高的燃烧和气化效率,并且废塑料中未燃烧焦炭的CO_2气化率远高于煤粉。因此,得出的结论是,可以将粗的废塑料有效地用作高炉中的还原剂。基于以上结果,设计了废塑料回收系统。

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