期刊文献+

助剂改性镍铈负载橄榄石焦油裂解催化剂的研究 被引量:2

The Effect of Additives on Cracking of Tar over Ni-Ce Supported Olivine
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摘要 以镍为活性组分,二氧化铈为助催化剂,橄榄石为载体研究了橄榄石负载镍催化剂的催化性能,实验还考察了不同助剂(Cu,Fe,Mg)的添加对催化剂活性的影响,结果表明,Cu,Fe,Mg都能提高Ce-Ni/Olivine催化剂焦油裂解活性和燃气质量,其中Cu效果最佳. Ce-Ni/Olivine catalyst was prepared and the activity of cracking catalyst was invesitigated. The effect on the performance of catalysts with different additives (Cu, Fe, Mg) in the corresponding reaction conditions were investigated. The results show that Cu-Ce-Ni/Olivine catalyst possesed the best results on improving tar cracking activity and gas quality.
出处 《河南科学》 2013年第1期101-104,共4页 Henan Science
关键词 生物质气化 催化裂解 橄榄石 镍基催化剂 biomass gasification catalytic cracking olivine nickel-based catalyst
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参考文献7

  • 1Adiaye J D,Bakhski N N.Production of hydrocarbons by catalytic upgrading of a fast pyrolyis bio-oil.PartⅡ:Comarative catalystperformance and reaction pathways[J].Fuel Processing Technology,1995,45:185-202.
  • 2Sato K,Fujimoto K.Development of new nickel based catalyst for tar reforming with superior resistance to sulfur poisoning andcoking in biomass gasification[J].Catalysis Communications,2007,8(11):1697-1701.
  • 3Courson C,Makaga K,Petit C,et al.Development of Ni catalysts for gas production from biomass gasification:Reactivity in steamand dry-reforming[J].Catalysis Today,2000,63:427-437.
  • 4李顺清,雷廷宙,朱金陵,李波,杨延涛.Ru-Cu-Ni-CeO_2/HZSM-5催化剂裂解秸秆气化焦油性能研究[J].河南科学,2012,30(9):1251-1255. 被引量:5
  • 5王铁军,常杰,吴创之,付严,陈勇.生物质焦油裂解催化剂制备及其催化裂解性能[J].煤炭转化,2003,26(1):89-93. 被引量:21
  • 6周劲松,王铁柱,骆仲泱,张晓东,王树荣,岑可法.生物质焦油的催化裂解研究[J].燃料化学学报,2003,31(2):144-148. 被引量:83
  • 7Hanaoka T,Yoshida T,Fujimoto S,et al.Hydrogen production from woody biomass by steam gasification using a CO2sorben[t J].Biomass and Bioenergy,2005,28:63-68.

二级参考文献20

  • 1吕俊复,岳光溪.氧化钙条件下焦油主要组分的催化裂解[J].清华大学学报(自然科学版),1997,37(2):6-10. 被引量:30
  • 2郭新生.生物质热解制气的试验研究[D].杭州:浙江大学,1999.
  • 3[1]Coll R,Salvao J,Farriol X et al. Steam Reforming Model Compounds of Biomass Gasification Tars:Conversion at Different Operating Conditions and Tendency Towards Coke Formation. Fuel Processing Technology, 2001,74:19-31
  • 4[2]Zhao Hongbin, Draelants D J. Baron G V. Preparation and Characterisation of Nickel-modified Ceramic Filters. Catalyis Today, 2000,56: 229-237
  • 5[3]Sutton D,Kellenher B,Ross J R H. Review of Literature on Catalysts for Biomass Gasification. Fuel Processing Technology,2001,73 : 155-173
  • 6[4]Courson C. Makaga E. Petit C et al. Development of Ni Catalysts for Gas Production from Biomass Gasification. Reactivity in Steam-and Dry-reforming. Catalysts Today, 2000,63: 427-437
  • 7[5]Hasler P,Nussbaumer T. Sampling and Analysis of Particles and Tars from Biomass Gasifiers. Biomass and Bioenergy,2000,18:61-66
  • 8Simell P A, Hepola J 0, Krause A 0 L. Effects of gasification gas components on tar and ammonia decomposition over hot gas cleanup catalysts [j]. Fuel, 1997,76(12) : 1117-1127.
  • 9Simell P A, Hakala N A K. Haario H E. Catalytic decomposition of gasification gas tar with benzene as the model compound[J]. Industrial & Engineering Chemistry Research > 1997. 36(1) : 42-51.
  • 10El-Rub Z A, Bramer E A.Brem G. Review of catalysts for tar elimination in biomass gasification processes[J]. Industrial & Engineering Chemistry Research. 2004,43 (22) : 6911-6919.

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