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Volumn 36, Issue 1, 2011, Pages 466-472

Hydrogen production by sorption enhanced steam reforming of propane: A thermodynamic investigation

Author keywords

Hydrogen; Propane steam reforming; Sorption enhanced; Thermodynamic analysis

Indexed keywords

CARBON FORMATION; CARBON PRODUCTION; CO-PRODUCTION; ENHANCED STEAM REFORMING; EQUILIBRIUM COMPOSITIONS; GIBBS FREE ENERGY MINIMIZATION; OPTIMUM TEMPERATURE; PROPANE STEAM REFORMING; THERMODYNAMIC ANALYSIS; THERMODYNAMIC INVESTIGATION;

EID: 79251603518     PISSN: 03603199     EISSN: None     Source Type: Journal    
DOI: 10.1016/j.ijhydene.2010.09.021     Document Type: Article
Times cited : (45)

References (40)
  • 1
    • 34248637303 scopus 로고    scopus 로고
    • Thermodynamic analysis of aqueous-reforming of polyols for hydrogen generation
    • N.J. Luo, F.H. Cao, X. Zhao, T.C. Xiao, and D.Y. Fang Thermodynamic analysis of aqueous-reforming of polyols for hydrogen generation Fuel 86 2007 1727 1736
    • (2007) Fuel , vol.86 , pp. 1727-1736
    • Luo, N.J.1    Cao, F.H.2    Zhao, X.3    Xiao, T.C.4    Fang, D.Y.5
  • 2
    • 37249035247 scopus 로고    scopus 로고
    • Thermodynamic study on hydrogen generation from different glycerol reforming processes
    • N.J. Luo, X. Zhao, F.H. Cao, T.C. Xiao, and D.Y. Fang Thermodynamic study on hydrogen generation from different glycerol reforming processes Energy Fuels 21 2007 3505 3512
    • (2007) Energy Fuels , vol.21 , pp. 3505-3512
    • Luo, N.J.1    Zhao, X.2    Cao, F.H.3    Xiao, T.C.4    Fang, D.Y.5
  • 3
    • 34548126876 scopus 로고    scopus 로고
    • Hydrogen production from steam reforming of ethanol and glycerol over ceria-supported metal catalysts
    • B.C. Zhang, X.L. Tang, Y. Li, Y.D. Xu, and W.J. Shen Hydrogen production from steam reforming of ethanol and glycerol over ceria-supported metal catalysts Int J Hydrogen Energy 32 2007 2367 2373
    • (2007) Int J Hydrogen Energy , vol.32 , pp. 2367-2373
    • Zhang, B.C.1    Tang, X.L.2    Li, Y.3    Xu, Y.D.4    Shen, W.J.5
  • 4
    • 0025889205 scopus 로고
    • Thermodynamic investigation of hydrogen production by steam-methane reforming
    • M.A. Rosen Thermodynamic investigation of hydrogen production by steam-methane reforming Int J Hydrogen Energy 16 1991 207 217
    • (1991) Int J Hydrogen Energy , vol.16 , pp. 207-217
    • Rosen, M.A.1
  • 5
    • 14644442360 scopus 로고    scopus 로고
    • Production of hydrogen by short contact time partial oxidation and oxidative steam reforming of propane
    • B. Silberova, H.J. Venvik, and A. Holmen Production of hydrogen by short contact time partial oxidation and oxidative steam reforming of propane Catal Today 99 2005 67 76
    • (2005) Catal Today , vol.99 , pp. 67-76
    • Silberova, B.1    Venvik, H.J.2    Holmen, A.3
  • 6
    • 0034429984 scopus 로고    scopus 로고
    • Hydrogen production from steam-methanol reforming: Thermodynamic analysis
    • Y. Lwin, W.R.W. Daud, A.B. Mohamad, and Z. Yaakob Hydrogen production from steam-methanol reforming: thermodynamic analysis Int J Hydrogen Energy 25 2000 47 53
    • (2000) Int J Hydrogen Energy , vol.25 , pp. 47-53
    • Lwin, Y.1    Daud, W.R.W.2    Mohamad, A.B.3    Yaakob, Z.4
  • 7
    • 0029736570 scopus 로고    scopus 로고
    • Steam reforming of ethanol for hydrogen production: Thermodynamic analysis
    • K. Vasudeva, N. Mitra, P. Umasankar, and S.C. Dhingra Steam reforming of ethanol for hydrogen production: thermodynamic analysis Int J Hydrogen Energy 21 1996 13 18
    • (1996) Int J Hydrogen Energy , vol.21 , pp. 13-18
    • Vasudeva, K.1    Mitra, N.2    Umasankar, P.3    Dhingra, S.C.4
  • 8
    • 57849113664 scopus 로고    scopus 로고
    • Thermodynamic analysis of glycerin steam reforming
    • X.D. Wang, S.R. Li, H. Wang, B. Liu, and X.B. Ma Thermodynamic analysis of glycerin steam reforming Energy Fuels 22 2008 4285 4291
    • (2008) Energy Fuels , vol.22 , pp. 4285-4291
    • Wang, X.D.1    Li, S.R.2    Wang, H.3    Liu, B.4    Ma, X.B.5
  • 11
    • 33748115109 scopus 로고    scopus 로고
    • Hydrogen production from steam and autothermal reforming of LPG over high surface area ceria
    • N. Laosiripojana, and S. Assabumrungrat Hydrogen production from steam and autothermal reforming of LPG over high surface area ceria J Power Sources 158 2006 1348 1357
    • (2006) J Power Sources , vol.158 , pp. 1348-1357
    • Laosiripojana, N.1    Assabumrungrat, S.2
  • 12
    • 33846057317 scopus 로고    scopus 로고
    • Hydrogen production by catalytic partial oxidation of methane and propane on Ni and Pt catalysts
    • P. Corbo, and F. Migliardini Hydrogen production by catalytic partial oxidation of methane and propane on Ni and Pt catalysts Int J Hydrogen Energy 32 2007 55 66
    • (2007) Int J Hydrogen Energy , vol.32 , pp. 55-66
    • Corbo, P.1    Migliardini, F.2
  • 14
    • 8144219543 scopus 로고    scopus 로고
    • Propane steam reforming in micro-channels-results from catalyst screening and optimization
    • G. Kolb, R. Zapf, V. Hessel, and H. Lowe Propane steam reforming in micro-channels-results from catalyst screening and optimization Appl Catal A 277 2004 155 166
    • (2004) Appl Catal A , vol.277 , pp. 155-166
    • Kolb, G.1    Zapf, R.2    Hessel, V.3    Lowe, H.4
  • 15
    • 20744446162 scopus 로고    scopus 로고
    • Propene versus propane steam reforming for hydrogen production over Pd-based and Ni-based catalysts
    • C. Resini, M.C.H. Delgado, L. Arrighi, L.J. Alemany, R. Marazza, and G. Busca Propene versus propane steam reforming for hydrogen production over Pd-based and Ni-based catalysts Catal Commun 6 2005 441 445
    • (2005) Catal Commun , vol.6 , pp. 441-445
    • Resini, C.1    Delgado, M.C.H.2    Arrighi, L.3    Alemany, L.J.4    Marazza, R.5    Busca, G.6
  • 19
    • 34248221052 scopus 로고    scopus 로고
    • Thermodynamic analysis and performance of a 1kW bioethanol processor for a PEMFC operation
    • M. Benito, R. Padilla, J.L. Sanz, and L. Daza Thermodynamic analysis and performance of a 1kW bioethanol processor for a PEMFC operation J Power Sources 169 2007 123 130
    • (2007) J Power Sources , vol.169 , pp. 123-130
    • Benito, M.1    Padilla, R.2    Sanz, J.L.3    Daza, L.4
  • 21
    • 0036161536 scopus 로고    scopus 로고
    • Energy production from biomass (part 2): Conversion technologies
    • P. McKendry Energy production from biomass (part 2): conversion technologies Bioresour Technol 83 2002 47 54
    • (2002) Bioresour Technol , vol.83 , pp. 47-54
    • McKendry, P.1
  • 22
    • 0036158804 scopus 로고    scopus 로고
    • Energy production from biomass (part 3): Gasification technologies
    • P. McKendry Energy production from biomass (part 3): gasification technologies Bioresour Technol 83 2002 55 63
    • (2002) Bioresour Technol , vol.83 , pp. 55-63
    • McKendry, P.1
  • 24
    • 0033082355 scopus 로고    scopus 로고
    • Sorption-enhanced reaction process for hydrogen production
    • J.R. Hufton, S. Mayorga, and S. Sircar Sorption-enhanced reaction process for hydrogen production AICHE J 45 1999 248 256
    • (1999) AICHE J , vol.45 , pp. 248-256
    • Hufton, J.R.1    Mayorga, S.2    Sircar, S.3
  • 25
    • 0036747880 scopus 로고    scopus 로고
    • Sorption-enhanced reaction process with reactive regeneration
    • G. Xiu, P. Li, and A.E. Rodrigues Sorption-enhanced reaction process with reactive regeneration Chem Eng Sci 57 2002 3893 3908
    • (2002) Chem Eng Sci , vol.57 , pp. 3893-3908
    • Xiu, G.1    Li, P.2    Rodrigues, A.E.3
  • 26
    • 0041621553 scopus 로고    scopus 로고
    • New generalized strategy for improving sorption-enhanced reaction process
    • G. Xiu, P. Li, and A.E. Rodrigues New generalized strategy for improving sorption-enhanced reaction process Chem Eng Sci 58 2003 3425 3437
    • (2003) Chem Eng Sci , vol.58 , pp. 3425-3437
    • Xiu, G.1    Li, P.2    Rodrigues, A.E.3
  • 27
    • 0036883246 scopus 로고    scopus 로고
    • Simulation of five-step one-bed sorption-enhanced reaction process
    • G. Xiu, J.L. Soares, P. Li, and A.E. Rodrigues Simulation of five-step one-bed sorption-enhanced reaction process AICHE J 48 2002 2817 2832
    • (2002) AICHE J , vol.48 , pp. 2817-2832
    • Xiu, G.1    Soares, J.L.2    Li, P.3    Rodrigues, A.E.4
  • 28
    • 68349130366 scopus 로고    scopus 로고
    • Thermodynamic analyses of adsorption-enhanced steam reforming of glycerol for hydrogen production
    • H.S. Chen, T.F. Zhang, B.L. Dou, V. Dupont, P. Williams, and M. Ghadiri Thermodynamic analyses of adsorption-enhanced steam reforming of glycerol for hydrogen production Int J Hydrogen Energy 34 2009 7208 7222
    • (2009) Int J Hydrogen Energy , vol.34 , pp. 7208-7222
    • Chen, H.S.1    Zhang, T.F.2    Dou, B.L.3    Dupont, V.4    Williams, P.5    Ghadiri, M.6
  • 29
    • 36549075518 scopus 로고    scopus 로고
    • Hydrogen production from biomass coupled with carbon dioxide capture: The implications of thermodynamic equilibrium
    • N.H. Florin, and A.T. Harris Hydrogen production from biomass coupled with carbon dioxide capture: the implications of thermodynamic equilibrium Int J Hydrogen Energy 32 2007 4119 4134
    • (2007) Int J Hydrogen Energy , vol.32 , pp. 4119-4134
    • Florin, N.H.1    Harris, A.T.2
  • 30
    • 32544457684 scopus 로고    scopus 로고
    • Insight into steam reforming of ethanol to produce hydrogen for fuel cells
    • P.D. Vaidya, and A.E. Rodrigues Insight into steam reforming of ethanol to produce hydrogen for fuel cells Chem Eng J 117 2006 39 49
    • (2006) Chem Eng J , vol.117 , pp. 39-49
    • Vaidya, P.D.1    Rodrigues, A.E.2
  • 31
    • 67651114181 scopus 로고    scopus 로고
    • Thermodynamic analysis of glycerol dry reforming for hydrogen and synthesis gas production
    • X.D. Wang, M.S. Li, M.H. Wang, H. Wang, S.R. Li, and S.P. Wang Thermodynamic analysis of glycerol dry reforming for hydrogen and synthesis gas production Fuel 88 2009 2148 2153
    • (2009) Fuel , vol.88 , pp. 2148-2153
    • Wang, X.D.1    Li, M.S.2    Wang, M.H.3    Wang, H.4    Li, S.R.5    Wang, S.P.6
  • 32
    • 67650735224 scopus 로고    scopus 로고
    • Thermodynamic analysis of hydrogen production from autothermal reforming of glycerol
    • H. Wang, X.D. Wang, M.S. Li, S.R. Li, S.P. Wang, and X.B. Ma Thermodynamic analysis of hydrogen production from autothermal reforming of glycerol Int J Hydrogen Energy 34 2009 5683 5690
    • (2009) Int J Hydrogen Energy , vol.34 , pp. 5683-5690
    • Wang, H.1    Wang, X.D.2    Li, M.S.3    Li, S.R.4    Wang, S.P.5    Ma, X.B.6
  • 34
    • 65949106174 scopus 로고    scopus 로고
    • Thermodynamic analysis of ethanol steam reforming using Gibbs energy minimization method: A detailed study of the conditions of carbon deposition
    • A.L. Silva, C.F. Malfatti, and I.L. Müller Thermodynamic analysis of ethanol steam reforming using Gibbs energy minimization method: a detailed study of the conditions of carbon deposition Int J Hydrogen Energy 34 2009 4321 4330
    • (2009) Int J Hydrogen Energy , vol.34 , pp. 4321-4330
    • Silva, A.L.1    Malfatti, C.F.2    Müller, I.L.3
  • 36
    • 0003392010 scopus 로고    scopus 로고
    • Outokumpu Research Oy Finland
    • HSC Chemistry, Version 4.0 1999 Outokumpu Research Oy Finland
    • (1999) HSC Chemistry, Version 4.0
  • 39
    • 77954833585 scopus 로고    scopus 로고
    • Thermodynamic study of hydrogen production from crude glycerol autothermal reforming for fuel cell applications
    • S. Authayanun, A. Arpornwichanop, W. Paengjuntuek, and S. Assabumrungrat Thermodynamic study of hydrogen production from crude glycerol autothermal reforming for fuel cell applications Int J Hydrogen Energy 35 2010 6617 6623
    • (2010) Int J Hydrogen Energy , vol.35 , pp. 6617-6623
    • Authayanun, S.1    Arpornwichanop, A.2    Paengjuntuek, W.3    Assabumrungrat, S.4
  • 40
    • 77954819992 scopus 로고    scopus 로고
    • Hydrogen production from ethanol steam reforming over nickel based catalyst derived from Ni/Mg/Al hydrotalcite-like compounds
    • M.S. Li, X.D. Wang, S.R. Li, S.P. Wang, and X.B. Ma Hydrogen production from ethanol steam reforming over nickel based catalyst derived from Ni/Mg/Al hydrotalcite-like compounds Int J Hydrogen Energy 35 2010 6699 6708
    • (2010) Int J Hydrogen Energy , vol.35 , pp. 6699-6708
    • Li, M.S.1    Wang, X.D.2    Li, S.R.3    Wang, S.P.4    Ma, X.B.5


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