SOFC Cathodes IV

Wednesday, 26 July 2017: 08:20-12:00
Grand Ballroom West (The Diplomat Beach Resort)
Chairs:
Harumi Yokokawa and Julie Mougin
08:20
216
Effect of Gd-Doped Ceria Interlayer Microstructure on the Interdiffusion Behavior Between La0.6Sr0.4Co0.2Fe0.8O3-δ Cathodes and Yttria-Stabilized Zirconia Electrolytes
J. C. De Vero (Natl Inst of Advanced Industrial Science and Technology), K. D. Bagarinao (AIST, Japan), H. Kishimoto, T. Ishiyama (Natl Inst of Advanced Industrial Science and Technology), K. Yamaji (National Institute of AIST), T. Horita (CREST, JST), and H. Yokokawa (The University of Tokyo)
08:40
217
The Role of Interlayer on the Catalytic Activity and Performance Stability of (Pr1-xNdx)2NiO4 as Cathodes for Solid Oxide Fuel Cells
E. Dogdibegovic, N. S. Alabri (University of South Carolina), K. Tenny (University of Kansas), C. J. Wright (University of South Carolina), J. S. Hardy, C. A. Coyle (Pacific Northwest National Laboratory), S. Horlick (University of South Carolina), W. Guan (Ningbo Institute of Materials Technology and Engineering), J. W. Stevenson (Pacific Northwest National Laboratory), and X. D. Zhou (University of South Carolina)
09:00
218
TEM and ETEM Study on SrZrO3 Formation at the LSCF/GDC/YSZ Interfaces
J. Matsuda, S. Kanae (Kyushu University), T. Kawabata (International Research Center for Hydrogen Energy), J. T. Chou (Kurume National College of Technology), Y. Inoue, S. Taniguchi (Next-Generation Fuel Cell Research Center (NEXT-FC)), and K. Sasaki (Department of Hydrogen Energy Systems, Kyushu University)
09:20
219
Long Term Performance Stability Tests of Ba-Fe-O Infiltrated LSM/YSZ Solid Oxide Fuel Cells under High Steam and High Current
Y. Fan (DOE National Energy Technology Laboratory, AECOM), X. Song (DOE National Energy Technology Laboratory, West Virginia University), H. Abernathy (U.S. DOE National Energy Technology Laboratory, AECOM), Y. Chen (National Energy Technology Laboratory), R. Pineault (DOE National Energy Technology Laboratory), J. Liu (U.S. DOE National Energy Technology Laboratory), K. Gerdes (DOE National Energy Technology Laboratory), S. Lee (AECOM/GES, U.S. DOE, National Energy Technology Laboratory), T. Kalapos (DOE National Energy Technology Laboratory, AECOM), and G. A. Hackett (U.S. DOE National Energy Technology Laboratory)
09:40
220
Study of the Mechanisms of O2-Reduction and Degradation Operating on La0.5-XPrxBa0.5CoO3-δ Cathodes for SOFCs
D. A. Garcés (Comision Nacional de Energia Atomica), H. Wang, S. A. Barnett (Northwestern University), A. G. Leyva (Comision Nacional de Energia Atomica), and L. V. Mogni (CONICET-Centro Atómico Bariloche-CNEA, Argentina)
10:00
Break
10:20
221
Thermodynamic Stability of La0.6Sr0.4Co0.2Fe0.8O3-δ in Carbon Dioxide Impurity: A Comprehensive Experimental and Computational Assessment
S. Darvish, Y. Zhong (Florida International University), and S. Gopalan (Boston University)
10:40
222
Chrome Poisoning of Non-Manganiferous Cathode Materials in Solid Oxide Fuel Cells (SOFCs)
K. Schiemann, V. Vibhu, S. Yildiz, I. C. Vinke (Forschungszentrum Jülich), R. A. Eichel (RWTH Aachen University, Forschungszentrum Jülich), and L. G. J. de Haart (Forschungszentrum Jülich)
11:00
223
Suppression of Chromium Poisoning in SOFC Cathode Using Chromium Trapping Materials
J. H. Lee (Korea Institute of Science and Technology (KIST)), H. Kim (KIST), K. J. Yoon (Korea Institute of Science and Technology (KIST)), M. Park (KIST), H. Kim, J. W. Son, B. K. Kim, and H. W. Lee (Korea Institute of Science and Technology (KIST))
11:20
224
In-Cell Chromium Getters to Mitigate Cathode Poisoning in SOFC Stack
M. A. Uddin (Center for Clean Energy Engineering, Univ. of Connecticut, Dept. of Mechanical Engineering, Univ. of Connecticut), A. N. Aphale (Center for Clean Energy Engineering, UConn, Materials Science and Engineering, Univ of Connecticut), B. Hu (Center for Clean Energy Engineering, Univ. of Connecticut, Materials Science and Engineering, Univ. of Connecticut), U. Pasaogullari (Dept. of Mechanical Engineering, Univ. of Connecticut, Center for Clean Energy Engineering, Univ. of Connecticut), and P. Singh (Center for Clean Energy Engineering, Univ. of Connecticut, Materials Science and Engineering, Univ. of Connecticut)
11:40
225
Performance and Microstructure of a Novel Cr-Getter Material with LSCF-Based Cells in a Generic Stack Test Fixture
Y. S. Chou, J. P. Choi, J. W. Stevenson (Pacific Northwest National Laboratory), C. Liang (Materials Science and Engineering, UConn), B. Hu (Center for Clean Energy Engineering, UConn), W. Rodriguez (Materials Science and Engineering, UConn), A. N. Aphale, and P. Singh (Center for Clean Energy Engineering, UConn)