Solar Energy 1999, 67(1-3): 161-167. [28] Lede J, Elorza-Ricart E, Ferrer M, Solar thermal splitting of Zinc oxide: a review of some of the rate controlling factors [J], Journal of Solar Energy Engineering 2001, 123(2): 91-97. [29] Steinfeld A, Solar hydrogen production via a two-step water-splitting thermochemical cycle based on Zn/ZnO redox reactions [J], International Journal of Hydrogen Energy 2002, 27(6): 611-619. [30] Sakurai, M., Nakajima, H., Amir, R., Onuki, K., Shimizu, S, Experimental study on side-reaction occurrence condition in the iodine-sulfur thermochemical hydrogen production process [J], International Journal of Hydrogen Energy 2000, 25(7): 613-619. [31] Sakurai, M., Gligen, E., Tsutsumi, A., Yoshida K, Solar UT-3 Thermochemical Cycle for hydrogen production [J], Solar Energy 1996, 57(1): 51-58. [32] http://www.pre.ethz.ch/cgi-bin/main.pl?research?project6 [33] http://solar.web.psi.ch/daten/projekt/elprod/elprod.html [34] Babu BV, Chaurasia AS, Parametric Study of Thermal and Thermodynamic Properties on Pyrolysis of Biomass in Thermally Thick Regime [J], Energy Conversion and Management 2004, 45: 53-72. [35] Bridgwater AV, Peacocke GVC. Fast Pyrolysis Processes for biomass [J], Renewable and Sustainable Energy Reviews 2000, 4(1):1-73. [36] Williams.Paul T., Brindle. Alexander J. Catalytic Pyrolysis of Tyres: Influence of Catalyst Temperature [J], Fuel 2002;81(18): 2425-2434. [37] Chen G, Andries J, Spliethoff H. Catalytic Pyrolysis of Biomass for Hydrogen Rich Fuel Gas Production [J], Energy Conversion and Management 2003; 44(14): 2289-2296. [38] Sutton.D, Kelleher B, Ross JRH, Catalytic Conditioning of Organic Volatile Products Produced by Peat Pyrolysis [J], Biomass and Bioenergy 2002; 23(3): 209-216. [39] http://www.eere.energy.gov/hydrogenandfuelcells/hydrogen/pdfs/danz_biomass.pdf [40] Carlo N.H, Andre P.C.F, Future Prospects for Production of Methanol and Hydrogen From Biomass [J], Journal of Power Sources 2002, 111(1): 1-22. [41] Milne TA, Abatzoglou N, Evans RJ. Biomass Gasifier _Tars_: Their Nature, Formation, and Conversion [Z], NREL/TP- 570-25357, 1998, National Renewable Energy Laboratory, USA. [42] Demirbas A, Gaseous products from biomass by pyrolysis and gasification: effects of catalyst on hydrogen yield [J], Energy Conversion and Management 2002, 43: 897-909. [43] Zhang RQ, Brown RC, Suby A, Cummer K, Catalytic destruction of tar in biomass derived producer gas [J], Energy Conversion and Management 2004, article in press. [44] Bowen. D.A, Lau F, Zabransky R, Remick R, Slimane R, Doong S, Techno-Economic Analysis of hydrogen production by gasification of biomass [Z], NREL FY 2003 progress Report, National Renewable Energy Laboratory, USA, 2003. [45] Adschiri T, Hirose S, Malaluan R, Arai K, Noncatalytic Conversion of Cellulose in Supercritical and Subcritical Water [J], J Chem Eng 1993,26: 676–80. [46] Hao Xiaohong, Guo Liejie, A Review on Investigation of Hydrogen Production by Biomass Catalytic Gasification in Supercritical Water [J], Journal of Chemical Industry and Engineering (China) 2002, 53: 221-228. [47] Hao XH, Guo LJ, Mao X, Zhang XM, Chen XJ. Hydrogen Production From Glucose Used as a Model Compound of Biomass Gasified in Supercritical Water [J], International Journal of Hydrogen Energy 2003, 28(1): 55-64. [48] Xiaodong X, Yukihiko M, Jonny S, Michael JA, Jr. Carbon-catalyzed gasification of organic feedstocks in supercritical water [J]. Industrial & Engineering Chemistry Research 1996, 35(8): 2522-2530. [49] Antal MJ, Jr, Xu XD, Hydrogen Production From High Moisture Content Biomass in Supercritical Water [Z], Proceedings of the 1998 U.S.DOE Hydrogen Program Review, NREL/CP-570-25315, 1998, National Renewable Energy Laboratory, USA. [50] Schmieder H, Abeln J, Boukis N, Dinjus E, Kruse A, Kluth M, Petrich G, 上一页 [5] [6] [7] [8] [9] [10] [11] 下一页
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