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孔隙结构对焦碳燃烧影响的数值研究 被引量:2

Numerical Study of the Effect of Pore Structure on Char Oxidation
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摘要 煤粒在热解过程中,由于不同的加热速度和不同的热解最终温度所产生的孔隙结构也不同,本文建立了多组分并存的情况下,综合考虑化学反应,内外传递过程及颗粒孔结构变化在内的单颗粒焦碳着火燃烧模型,计算出3种不同孔隙结构焦碳的转化率,氧化反应率及比面积的变化,比较了它们之间的差异。 Abstract Chars with different pore structures can be generated from the same coals by varying pryrolysis conditions, a higher final pyrolysis temperature or a slower heating rate generate chars of more compact structure. A model is developed for the combustion of a single char particle. The intraparticle diffusion and structural changes of the particle are considered with the chemical reactions. The ingnition line, area and combustion rate of three different char particles are calculated and compared.
出处 《火灾科学》 CSCD 1999年第1期52-57,共6页 Fire Safety Science
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  • 1张占涛,王黎,张睿,张丽.煤的孔隙结构与反应性关系的研究进展[J].煤炭转化,2005,28(4):62-68. 被引量:17
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  • 7Everson R C, Neomagus H W J P, Kaitano R. The Random Pore Model with Intraparticle Diffusion for the Description of Combustion of Char Particles Derived from Mineral- and Inertinite Rich Coal [J]. Fuel, 2011, 90(7): 2347-2352.
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