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Pulverized coal burnout in blast furnace simulated by a drop tube furnace

机译:落管炉模拟高炉煤粉燃尽。

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摘要

Reactions of pulverized coal injection (PCI) in a blast furnace were simulated using a drop tube furnace (DTF) to investigate the burnout behavior of a number of coals and coal blends. For the coals with the fuel ratio ranging from 1.36 to 6.22, the experimental results indicated that the burnout increased with decreasing the fuel ratio, except for certain coals departing from the general trend. One of the coals with the fuel ratio of 6.22 has shown its merit in combustion, implying that the blending ratio of the coal in PCI operation can be raised for a higher coke replacement ratio. The experiments also suggested that increasing blast temperature was an efficient countermeasure for promoting the combustibility of the injected coals. Higher fuel burnout could be achieved when the particle size of coal was reduced from 60-100 to 100-200 mesh. However, once the size of the tested coals was in the range of 200 and 325 mesh, the burnout could not be improved further, resulting from the agglomeration of fine particles. Considering coal blend reactions, the blending ratio of coals in PCI may be adjusted by the individual coal burnout rather than by the fuel ratio.
机译:使用落管式炉(DTF)模拟了高炉中喷煤(PCI)的反应,以研究多种煤和煤混合物的燃尽行为。对于燃料比在1.36至6.22之间的煤,实验结果表明,燃耗随燃料比的降低而增加,除了某些煤偏离了总体趋势。燃料比为6.22的一种煤已显示出其燃烧的优点,这意味着可以通过提高焦炭置换率来提高PCI操作中煤的混合比。实验还表明,提高喷砂温度是提高注入煤可燃性的有效措施。当煤的粒度从60-100目降低到100-200目时,可以实现更高的燃尽率。但是,一旦受试煤的尺寸在200到325目范围内,细颗粒的团聚就无法进一步改善燃尽。考虑到煤的掺混反应,PCI中煤的掺混比可以通过单独的燃尽而不是通过燃料比来调节。

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