Title of article :
Absorption enhanced reforming of light alcohols (methanol and ethanol) for the production of hydrogen: Thermodynamic modeling
Author/Authors :
Collins-Martinez، نويسنده , , Virginia and Escobedo Bretado، نويسنده , , Miguel and Meléndez Zaragoza، نويسنده , , Miguel and Salinas Gutiérrez، نويسنده , , Jesْs and Ortiz، نويسنده , , Alejandro Lopez، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2013
Pages :
15
From page :
12539
To page :
12553
Abstract :
Thermodynamic modeling of the steam reforming of light alcohols using CaO, CaO*MgO, Na2ZrO3, Li2ZrO3 and Li4SiO4 as CO2 absorbents was carried out to determine promising operating conditions to produce a high hydrogen yield ( Y H 2 ) and concentration (% H2). Ethanol and methanol were studied at 300–800 °C and 1 atm. Steam to alcohol (S/COH) feed molar ratio varied from 1:1 (stoichiometric) to 6:1 for methanol and from 3:1 (stoichiometric) to 6:1 for ethanol. Thermodynamic simulations employed the Gibbs free energy minimization technique. Results indicate no carbon formation at S/COH ≤ stoichiometric. For both alcohols reforming at 600 °C and S/COH = 6, using CaO, CaO*MgO, and Na2ZrO3 produced optimal Y H 2 and hydrogen purity (% H2). In both reforming systems most favorable thermodynamics were obtained with CaO, CaO*MgO and Na2ZrO3 as absorbents. A Thermal efficiency analysis performed in all system confirmed the superiority of the CO2 absorption systems against conventional reforming processes.
Keywords :
Absorption-enhanced-reforming , Thermodynamics , Ethanol , CO2 absorbent , Methanol
Journal title :
International Journal of Hydrogen Energy
Serial Year :
2013
Journal title :
International Journal of Hydrogen Energy
Record number :
1864907
Link To Document :
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