杨天钧. 煤粉高速加热条件下的快速热分解[J]. 工程科学学报, 1988, 10(3): 279-284. DOI: 10.13374/j.issn1001-053x.1988.03.001
引用本文: 杨天钧. 煤粉高速加热条件下的快速热分解[J]. 工程科学学报, 1988, 10(3): 279-284. DOI: 10.13374/j.issn1001-053x.1988.03.001
Yang Tianjun. Investigation on High Speed Pyrolysis of Pulverized Coal[J]. Chinese Journal of Engineering, 1988, 10(3): 279-284. DOI: 10.13374/j.issn1001-053x.1988.03.001
Citation: Yang Tianjun. Investigation on High Speed Pyrolysis of Pulverized Coal[J]. Chinese Journal of Engineering, 1988, 10(3): 279-284. DOI: 10.13374/j.issn1001-053x.1988.03.001

煤粉高速加热条件下的快速热分解

Investigation on High Speed Pyrolysis of Pulverized Coal

  • 摘要: 高炉喷吹煤粉和熔融还原铁浴粉煤气化等高速加热条件下,快速热分解是第一步。为研究1160-1750℃温度条件的这一过程,作者用等离子体加热的实验装置,加热速度可达4.3×103-2.4×104K/s。实验表明增加温度可明显改善烟煤的快速热分解过程,而旦效果比无烟煤明显得多;但气氛对快速热分解过程的影响不太明显。进而说明了铁浴气化粉煤和氧化介质可分开吹入,有利于控制喷嘴前端过热并减少金属蒸发后进入产品气体之中。

     

    Abstract: Under high speed preheat in blast furnace and gasification in iron-bath for smelting reduction the pyrolysis of pulverized coal injection is the first important stage. For study of this pyrolysis of coal in 1160-1750℃, an apparatus was designed. The heated rate by a plasma torch was as high as 4.3×103-2.4×104 K/s and even more than 105 K/s. The results show that increasing temperature gives more effect on the pyrolysis of bituminous coal than anthracite, but atmosphere seems to be no effect on pyrolysis process. This conclusion shows that in iron-bath process, the solid coal particles and oxydizing agent can be blown in separately. These will be good for controlling over the heat in front of the nozzles and eliminating heavy fume generation.

     

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