By Prabhakar Singh, Narottam P. Bansal
The 7th foreign Symposium on reliable Oxide gasoline Cells (SOFC): fabrics, technological know-how, and expertise used to be held throughout the 34th foreign convention and Exposition on complex Ceramics and Composites in
those court cases include contributions on quite a few elements of sturdy oxide gasoline cells that have been mentioned on the symposium. Fifteen papers describing the present prestige of reliable oxide gasoline cells expertise are incorporated during this volume.Content:
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The 7th foreign Symposium on strong Oxide gas Cells (SOFC): fabrics, technological know-how, and expertise used to be held in the course of the thirty fourth foreign convention and Exposition on complex Ceramics and Composites in Daytona seashore, FL, January 24 to 29, 2010. This symposium supplied a global discussion board for scientists, engineers, and technologists to debate and alternate state of the art rules, details, and know-how on quite a few elements of reliable oxide gasoline cells.
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Extra resources for Advances in Solid Oxide Fuel Cells VI: Ceramic Engineering and Science Proceedings, Volume 31
Koh, B. Kang, H. Lim, and Y. , 4, A12-5 (2001). 12 M. Pihlatie, A. Kaiser, P. Larsen, and M. Mogensen, Dimensional Behavior of Ni-YSZ Composites during Redox Cycling, J. Soc, 156, B322-9 (2009). 13 T. Ishihara, S. Ishikawa, K. Hosoi, H. Nishiguchi, and Y. Takita, Oxide Ionic and Electronic Conduction in Ni-doped LaGa03-based Oxide, Solid StateIonics, 175, 319-22 (2004). 14 S. Wang, M. Liu, and J. Winnick, Stabilities and Electrical Conductivities of Electrode Materials for Use in HjS-containing Gases, Journal of Solid StateElectrochemistry,5, 188-95 (2001).
SOî-s (LSGMn) is chosen in this work as an alternative sulfur tolerant anode material for LSGM-based SOFCs. The use of LSGMn as anode materials for LSGM-based SOFCs offers at least two additional advantages. Firstly, it should be compatible both chemically and physically with LSGM electrolytes, minimizing interfacial reactions due to inter-diffusion or chemical reaction. Secondly, it should have thermal expansion coefficients similar to that of LSGM, minimizing thermally induced stresses at the interface during thermal cycling and, thus improving adhesion of the electrode to the electrolyte.
The effect of composition, sintering temperature and density on the mechanical and electrical properties is discussed. The ultimate goal of the work is to (1) characterize material properties of SOFC components (such as electrolyte, anode and cathode), especially composite cathodes with various volume fractions, to (2) perform three-dimensional thermal finite element analysis for a graded SOFC under thermal cycling, and to (3) perform electrochemical characterization of both multi-layered and conventional tri-layered SOFCs.
Advances in Solid Oxide Fuel Cells VI: Ceramic Engineering and Science Proceedings, Volume 31 by Prabhakar Singh, Narottam P. Bansal