The 9th foreign Symposium on strong Oxide gas Cells: fabrics, technological know-how, and know-how used to be held in January 2012 as a part of the thirty sixth foreign convention on complex Ceramics and Composites (ICACC). This symposium supplied a world discussion board for scientists, engineers, and technologists from around the globe to give and talk about the newest advances in reliable oxide gasoline cells. This factor gains fourteen papers chosen from the symposium, delivering readers a extensive landscape of the present prestige of strong oxide gas cells expertise, in addition to rising concerns and destiny instructions within the field.
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Additional resources for Advances in Solid Oxide Fuel Cells VIII
The resistance of the PCGO sample was measured using a simple electrochemical cell comprising the PCGO sample with a pair of silver electrodes reversible to the charge carrying species placed on either side. A steady state potential difference was applied between the electrodes and the current response was measured. The conductivity of the material was calculated using the equation given below. / L VA (2) Advances in Solid Oxide Fuel Cells VIII · 37 Mixed Conducting Praseodymium Cerium Gadolinium Oxide (PCGO) Where I is the sample current, V is the voltage drop between the electrodes, A is the cross sectional area and L is the length.
2 High Solid Content Suspensions Powder concentration has a great influence on rheological behavior especially for high solid loading suspensions. The viscosity increases linearly from 70 to 83 wt% suspension as shown in Figure 3 (a). For the 85D slurry the viscosity increases greatly and agglomeration probably takes place. 9 The 85D suspension moves partially away from a shear thinning behavior. In fact the 85D viscosity curve tends to lay to a constant value at higher shear rates. This trend resembles the behavior of non-Newtonian fluids characterized by two plateau of constant viscosity, Newtonian regions, which occurs at very low and very high shear rates.
J. Tseng, Yield behavior of zirconia-wax suspensions, Materials Science and Engineering, A254, (1998), 136. W. Macosko, Rheology Principle, Measurements and Application, Wiley-VCH, 1994. " E. Gregorovä, W. Pabst, Process control and optimized preparation of porous alumina ceramics by starch consolidation casting, Journal of the European Ceramic Society, 31, (2011), 2073. B. F. Lange, Densification of Large Pores: I, Experiments, J. Am. Ceram. Soc, 75, , (1992), 2498. S. , 1995. J. Tseng, D. Liu, C.
Advances in Solid Oxide Fuel Cells VIII