Multi-physics modeling assisted design of non-coking anode for planar solid oxide fuel cell fueled by low steam methane
Author:
Affiliation:
1. Hefei National Laboratory for Physical Sciences at the Microscale & CAS Key Laboratory of Strongly-Coupled Quantum Matter Physics, Department of Physics, University of Science and Technology of China, Hefei 230026, China
Publisher
AIP Publishing
Subject
Physical and Theoretical Chemistry
Link
http://cps.scitation.org/doi/pdf/10.1063/1674-0068/31/cjcp1805102
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1. Highly efficient conversion of oxygen-bearing low concentration coal-bed methane into power via solid oxide fuel cell integrated with an activated catalyst-modified anode microchannel;Applied Energy;2022-12
2. Partial oxidation of methane enabling complete coking resistance of Ni-YSZ anode supported solid oxide fuel cells;Materials Letters;2022-12
3. Enhanced conversion efficiency and coking resistance of solid oxide fuel cells with vertical-microchannel anode fueled in CO2 assisted low-concentration coal-bed methane;Separation and Purification Technology;2022-05
4. Clean and stable conversion of oxygen-bearing low-concentration coal mine gas by solid oxide fuel cells with an additional reforming layer;Journal of Power Sources;2021-09
5. Fault-tolerant control for steam fluctuation in SOFC system with reforming units;International Journal of Hydrogen Energy;2019-08
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