Download e-book for kindle: Advances in Solid Oxide Fuel Cells and Electronic Ceramics by Mihails Kusnezoff, Narottam P. Bansal, Kiyoshi Shimamura

By Mihails Kusnezoff, Narottam P. Bansal, Kiyoshi Shimamura

This factor comprises thirteen papers from the yankee Ceramic Society’s fortieth overseas convention on complicated Ceramics and Composites, held in Daytona seashore, Florida, January 24-29, 2016 provided in Symposium three - thirteenth overseas Symposium on good Oxide gas Cells: fabrics, technology, and expertise and Symposium 14 – unmarried Crystalline fabrics for electric, Optical, and clinical Applications.

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Additional info for Advances in Solid Oxide Fuel Cells and Electronic Ceramics II: Ceramic Engineering and Science Proceedings Volume 37, Issue 3

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Chromium poisoning of perovskite cathodes by the ODS alloy Cr5Fe1Y2O3 and the high chromium ferritic steel Crofer22APU, J. Electrochem. , 153[4], A765-A773 (2006). 5 Pyo, S. , Lee, S. , Lim, T. , Song, R. , Shin, D. , Hyun, S. H. and Yoo, Y. 98MnO3 coating on Crofer22APU uased as metallic interconnects for solid oxide fuel cells, Int. J. Hydrog. Energy, 36, 1868-1881 (2011). , Xia, G. and Stevenson, J. , 8(3) A167-170, (2005). , Xia, G. , Maupin, G. D. and Stevenson, J. , Conductive protection layers on xidation resistant alloys for SOFC interconnect applications, Surf.

Several issues are associated to such goal, the major being the GDC electrolyte sintering at temperature lower than CuO melting point (below 1100°C) without affecting the ionic conductivity. In the present work, GDC10 dense electrolyte is coupled with copper (II) oxide (CuO) containing anode by using Li as sintering aid. EXPERIMENTAL PROCEDURE Sub-micron 10 mol% gadolinia doped-ceria (GDC10) powder was used in this study. Doping was accomplished by dissolving LiNO3 in distilled water and adding the appropriate amount of GDC10.

H. Shiu, Y. N. Y. Lee, Measurements of lateral impedance and local characteristics of solid oxide fuel cells, J. Fuel Cell Science and Technology, Vol. 9 Issue 4, (2012). 30 Y. N. W. Y. Lee, The comparisons of electrical performance and impedance spectrum for two commercial cells, INT. J. Hydrogen Energy, Vol. , (2014). W. H. Tsai, S. H Wu, C. K. Liu, Y. N. Y. Lee, Effects of reduction process on the electrochemical and microstructural properties for electrolyte-supported SOFC, INT. J. Hydrogen Energy, Vol.

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