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Modeling 3D hybrid battery-electrolyzer nickel electrodes
Robin Möller-Gulland
*
,
J. Ruud van Ommen
,
Fokko M. Mulder
*
*
Corresponding author for this work
ChemE/Materials for Energy Conversion and Storage
ChemE/Product and Process Engineering
Research output
:
Contribution to journal
›
Article
›
Scientific
›
peer-review
18
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INIS
nickel
100%
hybrids
100%
modeling
100%
electrodes
100%
oxygen
33%
geometry
33%
ionic conductivity
33%
void fraction
33%
electrolysis
33%
battery charging
33%
increasing
16%
electricity
16%
operation
16%
surface area
16%
bubbles
16%
applications
16%
distribution
16%
efficiency
16%
porous materials
16%
hydrogen
16%
removal
16%
Engineering
Hybrid
100%
Mathematical Model
100%
Battery (Electrochemical Energy Engineering)
100%
Electrolyzer
100%
Porosity
75%
Battery Charging
50%
Application
25%
Bubble
25%
Material Utilization
25%
Current Distribution
25%
1D Model
25%
Potential Distribution
25%
Surface
25%
Efficiency
25%
Renewables
25%
Produce Hydrogen
25%
Chemical Engineering
Nickel
100%
Oxygen
66%
Bubble
33%
Hydrogen
33%
Keyphrases
3D Structured Electrode
25%