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下行床煤拔头工艺的产品产率分布和液体组成 被引量:37

Total Distribution and Liquid Composition of Products from Coal Topping Process in a Downer Reactor
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摘要 基于循环流化床锅炉燃烧技术和下行床技术相结合,在处理能力为8kg/h的煤拔头工艺热态实验装置上,以内蒙古霍林河褐煤为原料,普通河砂为固体热载体,考察了反应温度和煤粉粒径对气液固产品产率分布和液体组成的影响规律.结果表明,在实验温度范围内,随着温度的升高,气体和液体产品的产率增加;液体产率随粒径的增大而降低.当反应温度为660℃、煤粉粒径小于0.28mm、加料率为4.7kg/h时,轻质焦油(焦油中的正己烷可溶物)的产率可达7.5%(干煤基,ω),其中酚类占57.1%,粗汽油(脂肪烃类)占12.9%,芳香烃占21.4%,极性组分和其他组分占8.6%.实验表明,下行床由于气固沿重力场并流向下流动的特点,是适合煤拔头工艺的比较理想的反应器. A hot downer reactor system integrated with a circulating fluidized bed was built to examine its performance in the coal topping process. The effects of reaction temperature and coal particle size on the total product distribution and liquid composition were determined for Huolin River coal (Inner Mongolia, China). The results show that increasing temperature can increase the yields of gas and liquid products, and a larger coal particle size leads to a lower liquid yield. The experimental results exhibit a promising product distribution. As the pyrolysis temperature was 660℃, the coal particle size was less than 0.28 mm and feed rate was 4.7 kg/h, the yield of light tar (hexane soluble fraction) reached 7.5% (dry coal basis, ω). The composition of light tar was phenols (57.1%, ω), crude gasoline (aliphatics, 12.9%), aromatics (21.4%), and polar and basic groups (8.6%). The closeness to plug flow pattern of the gas and solids in the downer makes it a promising reactor for the coal topping process.
出处 《过程工程学报》 EI CAS CSCD 北大核心 2005年第3期241-245,共5页 The Chinese Journal of Process Engineering
基金 国家高技术研究发展计划资助项目(编号:2001AA529010) 国家重点基础研究资助项目(编号:G1999022103) 国家自然科学基金资助项目(编号:20221603 90210034)
关键词 下行床 循环流化床 煤拔头 快速热解 downer circulating fluidized bed coal topping fast pyrolysis
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参考文献9

  • 1郭慕孙.煤拔头工艺[A]..中国科学院第九次院士大会报告汇编[C].北京:科学出版社,1998.202-204.
  • 2郭慕孙 姚建中 林伟刚.循环流态化碳氢固体燃料的四联产装置[P].中国专利:CN01218480.2.2002-01-30.
  • 3董美玉,朱子彬,何亦华,丁乃立,唐黎华.烟煤快速加氢热解研究 Ⅲ.焦油组成考察[J].燃料化学学报,2000,28(1):55-58. 被引量:4
  • 4Ahthony D B, Howard J B. Coal Devolatilization and Hydrogasification[J]. AIChE J, 1976, 24: 72-77.
  • 5Cui L J, Yao J Z, Lin W G Product Distribution from Flash Pyrolysis of Coal in a Fast Fluidized Bed[A]. Proceedings of the 17th International Conference on Fluidized Bed Combustion[C]. Florida: American Society of Mechanical Engineers, 2003. CD-ROM.
  • 6Xu W C, Tomita A. Effect of Temperature on the Flash Pyrolysis of Various Coals[J]. Fuel, 1987, 66: 632-636.
  • 7Wutti IL Petek J, Staudinger G. Transport Limitations in Pyrolysing Coal Particles[J]. Fuel, 1996, 75(7): 843-850.
  • 8Stubington J F, Sumaryono K. Release of Volatiles from Large Coal Particles in a Hot Fluidized Bed[J]. Fuel, 1984, 63: 1013-1019.
  • 9Bliek A, Van Poelje W M, Van Swaaij W P M, et al. Effects of Intraparticle Heat and Mass Transfer during Devolatilization of a Single Coal Particle[J]. AIChE J, 1985, 31(10): 1666-1681.

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