By Narottam P. Bansal (ed.), Mihails Kusnezoff (ed.), Soshu Kirihara (ed.), Sujanto Widjaja (ed.)
A suite of thirteen papers from the yank Ceramic Society’s thirty seventh foreign convention on complicated Ceramics and Composites, held in Daytona seashore, Florida, January 27-February 1, 2013. This factor comprises papers provided in Symposium 3-10th foreign Symposium on reliable Oxide gasoline Cells: fabrics, technological know-how, and know-how.
Read Online or Download Advances in Solid Oxide Fuel Cells IX: A Collection of Papers Presented at the 37th International Conference on Advanced Ceramics and Composites January 27-February 1, 2013 Daytona Beach, Florida PDF
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Additional info for Advances in Solid Oxide Fuel Cells IX: A Collection of Papers Presented at the 37th International Conference on Advanced Ceramics and Composites January 27-February 1, 2013 Daytona Beach, Florida
ABSTRACT Due to the advantages such as high thermal shock resistance and mechanical robustness in comparison with anode-supported cells (ASCs), the metal-supported cells (MSCs) attract more and more attention in the stationary and mobile applications. ô-SDC (SSC-SDC) composite layers as a cathode were successfully fabricated by atmospheric plasma spraying (APS) technique at Institute of Nuclear Energy Research (INER). 8 kg/cm2 at 850°C for 4 hrs was applied to the sprayed cells to improve its performances.
Ghezel-Ayagh, S. Jolly, D. Patel, J. Nagar, K. Davis, C. Wilhnan, C. Howard, M. Lukas, E. Tang, M. Pastula, and R. Petri, "SOFC Technology Development for Distributed and Centralized Power Generation", Abstract 291, 2012 Fuel Cell Seminar & Exposition, Uncasville, Cr (November 5-8, 2012) 2. H. Ghezel-Ayagh, R. Way, P. Huang, J. Walzak, S. Jolly, D. Patel, C. Willman, K. Davis, M. Lukas, B. Borglum, E. Tang, M. Pastula, R. Petri, and M. Richards, "Solid Oxide Fuel Cell Stack Module Development for Fuel Flexible Power Generation", ECS Transactions, 2011 Fuel Cell Seminar & Exposition, Orlando, FL, Volume 42, Issue No.
Therefore, the development of LT-SOFCs (400 - 600 °C) is critical for cost reduction, long-term performance stability, and materials selection. To reduce the operating temperature, two approaches are widely applied to lower the resistance of the dense electrolyte membranes, including decreasing the thickness of the traditional YSZ electrolyte or using alternative materials with higher ionic conductivities at low temperatures3. SDC / GDC have attracted much attention in recent years, especially as a possible solid electrolyte substitute for YSZ.