Electrical properties of gadolinia-doped ceria for electrodes for magnetohydrodynamic energy systems

被引:0
|
作者
Michael S. Bowen
Michael Johnson
Ryan McQuade
Bryce Wright
Kyei-Sing Kwong
Peter Y. Hsieh
David P. Cann
C. Rigel Woodside
机构
[1] National Energy Technology Laboratory,US Department of Energy
[2] Oregon State University,Materials Science
来源
SN Applied Sciences | 2020年 / 2卷
关键词
Magnetohydrodynamics; Energy materials; Doped ceria; Energy conversion; Electroceramics;
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摘要
High temperature conducting ceramics are of current interest for use as electrode materials for magnetohydrodynamic (MHD) power generation systems for their high conductivity values and their excellent stability under extreme conditions including operating temperatures above 2000 °C. Ceria doped with Gd (GDC) has been extensively studied for intermediate temperature applications and shows promise as an efficient electrode material. A summary of the current understanding of the electrical properties of GDC is provided with an emphasis on the higher temperature limits. Experiments to further validate the conclusions drawn in the literature review confirm that with electrical conductivities near 10 S/m at 1100 °C make GDC a good candidate electrode material for an MHD power generator.
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