Hydrogen production through steam electrolysis: Control strategies for a cathode-supported intermediate temperature solid oxide electrolysis cell
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- Type
- article
- Published
- 2008-05-15
- Cited by
- 113
- References
- 27
- OpenAlex
- https://openalex.org/W1973406932
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:93406625
Keywords
Electrolysis, Exothermic reaction, Stack (abstract data type), High-temperature electrolysis, Hydrogen production
References
- Computational Fluid Dynamics Model of a Planar Solid-Oxide Electrolysis Cell for Hydrogen Production from Nuclear Energy
- Anode-supported intermediate-temperature direct internal reforming solid oxide fuel cell. II. Model-based dynamic performance and control
- Fuel Cell Systems Explained
- Technology assessment of advanced electrolytic hydrogen production
- 38. R&D on hydrogen production by high-temperature electrolysis of steam
- Efficiency of hydrogen production systems using alternative nuclear energy technologies
- Can high temperature steam electrolysis function with geothermal heat
- Extraction and production of hydrogen using high-temperature proton conductor
- Heat management for hydrogen production by high temperature steam electrolysis
- Parametric study of solid oxide steam electrolyzer for hydrogen production
- Advantages of integration with industry for electrolytic hydrogen production.
- Heat transfer problems for the production of hydrogen from geothermal energy
- High-temperature electrolysis of water vapor—status of development and perspectives for application
- Hydrogen generation from water electrolysis—possibilities of energy saving
- A complete polarization model of a solid oxide fuel cell and its sensitivity to the change of cell component thickness
- Tubular high-temperature proton conductors: transport numbers and hydrogen injection
- High Temperature Corrosion of Engineering Alloys
- Hydrogen production through steam electrolysis: Model-based steady state performance of a cathode-supported intermediate temperature solid oxide electrolysis cell
- Concepts and design for scaling up high temperature water vapour electrolysis
- Comparison of two IT DIR-SOFC models: Impact of variable thermodynamic, physical, and flow properties. Steady-state and dynamic analysis
Cited by
- Stack performances in high temperature steam electrolysis and co-electrolysis
- Effect of pressure on high temperature steam electrolysis: Model and experimental tests
- Apport de la pression sur les performances d'une cellule d'électrolyse de la vapeur d'eau à haute température
- Conception et conduite de systèmes d'électrolyse à haute température alimentés par des énergies renouvelables
- Thermal Management of High Temperature Solid Oxide Electrolyser Cell/Fuel Cell Systems
- Performance of solid oxide electrolysis cell having bi-layered electrolyte during steam electrolysis and carbon dioxide electrolysis
- Performance of solid oxide electrolysis cells based on composite La0.8Sr0.2MnO3−δ – yttria stabilized zirconia and Ba0.5Sr0.5Co0.8Fe0.2O3−δ oxygen electrodes
- Recent advances in high temperature electrolysis using solid oxide fuel cells: A review
- Failure mechanism of (La,Sr)MnO 3 oxygen electrodes of solid oxide electrolysis cells
- Influence of Cell Support and Operating Parameters on the Competitiveness of High-Temperature Electrolysis Process
- The Effects of Operating Conditions on the Performance of a Solid Oxide Steam Electrolyser: A Model‐Based Study
- An electrochemical model for syngas production by co-electrolysis of H2O and CO2
- Electrochemical performance of solid oxide electrolysis cell electrodes under high-temperature coele
- A mathematical model to analyze solid oxide electrolyzer cells (SOECs) for hydrogen production
- Modeling of mass and energy transfers in a high temperature membrane electrolyser
- Model-based behaviour of a high temperature electrolyser system operated at various loads
- Development of ( Gd , Ce ) O2-Impregnated ( La , Sr ) MnO3 Anodes of High Temperature Solid Oxide Electrolysis Cells
- Computational fluid dynamics modeling of a solid oxide electrolyzer cell for hydrogen production
- Recent progress in alkaline water electrolysis for hydrogen production and applications
- Optimal control strategies for hydrogen production when coupling solid oxide electrolysers with intermittent renewable energies
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