Title of article :
Fabrication and characteristics of planar-type methane reformer using ceria-based oxygen permeable membrane
Author/Authors :
Takamura، نويسنده , , Hitoshi and Ogawa، نويسنده , , Masayuki and Suehiro، نويسنده , , Koichi and Takahashi، نويسنده , , Hiroo and Okada، نويسنده , , Masuo، نويسنده ,
Issue Information :
هفته نامه با شماره پیاپی سال 2008
Abstract :
This paper describes the fabrication of a planar-type methane reformer based on a composite-type oxygen permeable membrane and its reforming properties. The membrane reformer module comprising of (Ce0.85Sm0.15)O2–15 vol.%MnFe2O4 and a ferric stainless steel separator with a same thermal expansion coefficient was successfully developed. For the reformer module, high CH4 conversion, CO and H2 selectivity of 96%, 84%, and 89% were achieved, respectively. Based on an electrical conductivity isotherm, joule heat caused by oxygen permeation in the module was estimated to be approximately 8.4 W. In addition, the effect of ZrO2-doping on the mechanical properties and oxygen permeability of the composite material was investigated. The highest Zr-content sample, (Ce0.85Sm0.15)0.2Zr0.8O2–15 vol.% MnFe2O4, showed a tetragonal structure. As a result of the crystal structural change, superior mechanical properties of Youngʹs modulus of 337 GPa and fracture toughness of 2.8 MPa m1/2 were obtained.
Keywords :
Youngיs modulus , Partial oxidation of methane , electrical conductivity , Porous oxygen sensor , Tape-casting , fracture toughness
Journal title :
Solid State Ionics
Journal title :
Solid State Ionics