Influence of microstructure and architecture on oxygen permeation of La(1-X)SrXFe(1-Y)(Ga, Ni)YO3-δ perovskite catalytic membrane reactor

被引:5
|
作者
Juste, E. [1 ,2 ]
Julian, A. [1 ,2 ]
Geffroy, P. -M. [1 ]
Vivet, A. [1 ,2 ]
Coudert, V. [1 ]
Richet, N. [2 ]
Pirovano, C. [3 ]
Chartier, T. [1 ]
Del Gallo, P. [2 ]
机构
[1] CNRS ENSCI SPCTS, F-87065 Limoges, France
[2] Ctr Rech Claude Delorme, F-78354 Jouy En Josas, France
[3] USTL ENSCL, CNRS, UMR8181, Equipe Chim Solide,UCCS,Unite Catalyse & Chim Sol, F-59652 Villeneuve Dascq, France
关键词
Catalytic membrane reactor; Oxygen semi-permeation; Oxygen surface exchange; Microstructure; Ceramic membrane multilayer; CERAMIC MICROSTRUCTURE; TRANSPORT-PROPERTIES; SYNTHESIS GAS; PERMEABILITY; BA0.5SR0.5CO0.8FE0.2O3-DELTA; EXPANSION; SYNGAS; CR;
D O I
10.1016/j.jeurceramsoc.2009.11.005
中图分类号
TQ174 [陶瓷工业]; TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
Catalytic membrane reactors (CMR) have been an economically attractive process for natural gas reforming to syngas (H-2 + CO) since more than twenty years. The CMR studied in this paper consists of a mixed ionic and electronic conductor dense layer (La(1-X)SrXFe(1-Y)GaYO3-delta). High temperature X-ray diffraction analysis, from room temperature to 900 degrees C under air and nitrogen atmosphere, show a reversible monoclinic to rhombohedral phase transition around 300 degrees C, and good chemical and dimensional stabilities of La0.8Sr0.2Fe0.7Ga0.3O3-delta material. The La0.8Sr0.2Fe0.7Ga0.3O3-delta dense layer elaborated by tape casting has been respectively coated with La0.8Sr0.2Fe0.7Ga0.3O3-delta on the air side and La0.8Sr0.2Fe0.7Ni0.3O3-delta on the inert side using screen printing. The influences of the dense membrane microstructure and of the surface exchange kinetics on the oxygen semi-permeation performances are evaluated. Small grain size, mainly below 1 mu m in the dense membrane significantly increases the oxygen flux. A porous layer of La0.8Sr0.2Fe0.7Ni0.3O3-delta or La0.8Sr0.2Fe0.7Ga0.3O3-delta on the air or inert side of the membrane increased strongly the specific oxygen semi-permeation. The impact of the porous layer is much more important than the reduction of the grain size. In this case, surface exchange kinetics are the limiting steps of oxygen permeation, and Ni-containing formulation leads to the highest flux. (C) 2009 Elsevier Ltd. All rights reserved.
引用
收藏
页码:1409 / 1417
页数:9
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