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生物质焦油裂解用催化剂研究进展 被引量:5

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摘要 本文综述了不同类型生物质焦油裂解用催化剂的研究进展,重点评述了各类生物质焦油裂解用催化剂的活性组分和催化活性的优劣,指出引起催化剂失活的主要原因之一是积碳效应,最后指出催化剂进一步的研究与发展方向:如抗积碳甚至抗硫中毒的生物质焦油裂解用催化剂的制备及催化反应机理研究。
出处 《资源节约与环保》 2014年第10期66-67,共2页 Resources Economization & Environmental Protection
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  • 1薛俊,缪冶炼,夏发俊,阴秀丽,吴创之.生物质气化焦油裂解用颗粒催化剂的再生性能[J].工业催化,2009,17(9):71-75. 被引量:4
  • 2周根陶,周双生,刘双怀,郑永飞.配位-沉淀法制备Ni(OH)_2和NiO超微粉[J].无机化学学报,1996,12(1):96-99. 被引量:32
  • 3Corella J, Aznar M P, Gil J, et al. Biomass gasification in fluidized bed: where to locate the dolomite to improve gasification[ J]. Energy & Fuels, 1999, 13 : 1122 - 1127.
  • 4Orio A, Corella J, Narvatez I. Proceedings of conference on developments in thermochemical biomass conversion [ J ]. Banff Canada, 1996 : 1144 - 1146.
  • 5Sato K, Fujimoto K. Development of new nickel based catalyst for tar reforming with superior resistance to sulfur poisoning and coking in biomass gasification [ J ]. Catalysis Communications, 2007, (8) : 1697 - 1701.
  • 6Srinakruang J, Sato K, Vitidsant T, et al. Highly efficient sulfur and eoking resistanee catalysts for tar gasification with steam[ J ]. Fuel, 2006, (85) : 2419 - 2426.
  • 7Li W, Yah Y, Li T, et al. Preparation of hydrogen via catalytic gasification of residues from biomass hydrolysis with a novel high strength catalyst [ J ]. Energy & Fuel, 2008, 22 (2) : 1233 - 1238.
  • 8缪冶炼,夏发俊.一种多孔白云石颗粒催化剂及其制备工艺和应用:中国,CN101081363[P].2007—12—05.
  • 9Perez P, Aznar M P, Caballero A M, et al. Hot gas cleaning and upgrading with a calcined dolomite located downstream a biomass fluidized bed gasifier operating with steam-oxygen mixtures[ J]. Energy & Fuels, 1997, (11) : 1194 - 1203.
  • 10Wang T J, Chang J, Wu C Z, et al. The steam reforming of naphthalene over a nickel-dolomite cracking catalyst [J]. Biomass and Bioenergy, 2005,(28): 508-514.

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  • 1杨修春,韦亚南,李伟捷.焦油裂解用催化剂的研究进展[J].化工进展,2007,26(3):326-330. 被引量:28
  • 2Milne T A, Evans R J, Abatzaglou N. Biomass gasifier "tars": Their nature, formation, and conversion [J]. Biomass Fuels, 1998 (6) : 729 - 738.
  • 3Evans R J, Milne T A. Molecular characterization of the pyrolysis ofbiomass[J]. Energy Fuels, 1987, 1 (2) : 123 - 138.
  • 4Anchan P, Shota N, Masataka K, et al. Performance of tar removal by absorption and adsorption for bio- mass gasification [J]. Fuel Process Technol, 2012, 104 (12) : 144- 154.
  • 5Houben M E Analysis of tar removal in a partial oxida- tion burner [ D ]. Netherlands: Eindhoven University of Technology, 2004.
  • 6Miao Yelian, Xue Jun, Xia Fajun, et al. Utilization of porous dolomite pellets for the catalytic decomposi- tion of acetic acid [J]. Biomass Bioenergy, 2010, 34 (12) : 1855- 1863.
  • 7Georgios T, Michael G K. Kinetic modeling of VOC catalytic steam pyrolysis for tar abatement phenom- ena in gasification/pyrolysis technologies [J]. Fuel, 2004, 83 (10) : 1235- 1245.
  • 8Lieberthal M,Kaplan W D.Processing and properties of Al2O3nanocomposites reinforced with sub-micron Ni and Ni Al2O4[J].Materials Science&Engineering A,2001,302(1):83-91.
  • 9陈桂梅,张香文,米镇涛.压力对USY催化甲苯裂解结焦及其前驱体的影响[J].燃料化学学报,2007,35(2):211-216. 被引量:7
  • 10王新新.介质阻挡放电及其应用[J].高电压技术,2009,35(1):1-11. 被引量:195

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