Long-term performance prediction of solid oxide electrolysis cell (SOEC) for CO2/H2O co-electrolysis considering structural degradation through modelling and simulation
Author:
Funder
University of Sheffield
EPSRC
Publisher
Elsevier BV
Subject
Industrial and Manufacturing Engineering,General Chemical Engineering,Environmental Chemistry,General Chemistry
Reference59 articles.
1. Oxy-fuel combustion of a single fuel particle in a fluidized bed: Char combustion characteristics, an experimental study;Bu;Chem. Eng. J.,2016
2. Intergovernmental Panel on Climate Change, Special report - Global Warming of 1.5 oC, (2018) 300. https://www.ipcc.ch/sr15 (accessed in January 5, 2021).
3. Physical principles for the calculation of equilibrium potential for co-electrolysis of steam and carbon dioxide in a Solid Oxide Electrolyzer Cell (SOEC);Stempien;Electrochim. Acta.,2014
4. Co-electrolysis of CO2 and H2O in solid oxide cells: Performance and durability;Graves;Solid State Ionics.,2011
5. A review of high temperature co-electrolysis of H2O and CO2 to produce sustainable fuels using solid oxide electrolysis cells (SOECs): Advanced materials and technology;Zheng;Chem. Soc. Rev.,2017
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