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车载燃料重整技术的研究与展望 被引量:4

Research and Prospect of Onboard Fuel Reforming Technology
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摘要 总结概述了目前的燃料重整技术,包括传统的重整制氢方法如水蒸汽重整、部分氧化重整、自热重整,以及逐渐成为研究热点的等离子体制氢技术。分析归纳了甲醇、乙醇、天然气、汽油和柴油的重整制氢研究,分析了反应机理和重整催化剂的研究进展,提出了各种燃料车载制氢的应用建议,尤其是汽油和柴油的车载应用。 The current fuel reforming technologies, including the traditional methods of fuel reforming for hydrogen such as steam reforming, partial oxidation and autothermal reforming, and plasma reforming were surveyed. The methanol, ethanol, natural gas, petrol and diesel reforming research was analyzed and summarized. The analysis of the reaction mechanism and reforming catalysts research progress were reviewed in this paper. Then the suggestion for the application of onboard fuel reforming, particularly petrol and diesel reforming was given.
出处 《小型内燃机与摩托车》 CAS 北大核心 2008年第6期87-91,共5页 Small Internal Combustion Engine and Motorcycle
基金 国家自然科学基金资助项目(50522202) 北京市自然科学基金资助项目(3082004)
关键词 车载制氢 燃料重整 等离子体 进展 Onboard fuel reforming for hydrogen, Fuel reforming, Plasma, Research development
作者简介 邓福山(1983-),男,硕士,研究方向为内燃机污染控制、燃烧与节能技术。
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参考文献16

  • 1潘相敏,马建新,周伟,邬敏忠.燃料电池电动车车载甲醇重整器研究进展[J].能源技术,2004,25(1):22-26. 被引量:5
  • 2Chen Jierong Low Temperature Plasma Chemistry and Its Application Beijing : Science Press, 2001 (4) : 1 - 40
  • 3Bai Xiyao, Zhang Zhitao The study state and progress of un -equilibrium plasma chemistry, China Science Bulhein, 2002, 47 (5) : 321-322
  • 4L. Bromberg, D. R. Cohn, A. Rabinovieh, et al [ J ] , Compact plasmatron- boosted hydrogen generation technology for vehicular applications, International Journal of Hydrogen En- ergy, 1999,24(4) :341- 350
  • 5J. Muller, V. Pour and A. Regner. Specific catalytic activity of nickel in hydrogenation of carbon dioxide to methane, Journal of Catalysis, 1968,11 (4) : 326 - 335
  • 6Kobayashi H, Takazawa N, Minochi C. Methanol reforming reaction over coppercontating mixed oxides [ J ] . Chem Lett , 1976 ,1(1) :347-350
  • 7刘鹏翔,刘源,叶季蕾.乙醇水蒸气重整催化剂的研究进展[J].世界科技研究与发展,2005,27(6):69-75. 被引量:10
  • 8Breen J P , Burch R , Coleman H M. Applied Catalysis B : Environmental , 2002 , 36(4) :65 - 74
  • 9S. Freni, S. Cavallaro, N. Mondello, L. et al[J]. Journal of Power Source,2002,108( 1 ) :53 - 57
  • 10严前古,于作龙,远松月.甲烷部分氧化制合成气研究进展[J].石油与天然气化工,1997,26(3):145-151. 被引量:19

二级参考文献58

  • 1孙杰,吴锋,邱新平,王国庆,朱文涛,陈实,陈立泉.燃料电池的氢源技术——乙醇重整制氢研究进展[J].电源技术,2004,28(7):452-457. 被引量:11
  • 2小泽昭弥.现代电化学[M].北京:化学工业出版社,1995.1-7.
  • 3Gray P G,Petch M I.Platinum Metals Rev,2000,44(3):108~11
  • 4Golunski S.Platinum Metals Rev,1998,42(1):2~7.
  • 5Edwards N,Ellis S R,Frost J C,Golunski S E,van Keulen A,Lindewald N G et al.J Power Sources,1998,71:123~8.
  • 6Carpenter I,Edwards N,Ellis S,Frost J,Golunski S,van Keulen N et al.SAE Tech Paper Ser,1999,1:1320
  • 7Gray P G,Frost J C.Energy Fuels,1998,12:1121~9.
  • 8Docter A,Lamm A.J Power Sources,1999,84:194~200.
  • 9Anca Faur Ghenciu.Current Opinion in Solid State and Materials Science,2002,6:389~399
  • 10Maggiog,Frenis,Cavallaros,et al[J].Power Sources,1998,74:17~23

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