Analytical study of over‐voltages in alkaline electrolysis and their parametric dependencies through a multi‐physical model
Gregory De Dominici, Bertrand Gabriel
Abstract
Gregory De Dominici, Bertrand Gabriel
Abstract
This work is an attempt to develop a model of alkaline electrolysis to compare AEM and conventional electrolysis cells performances over several operating conditions, including a change in electrolytes' composition for hydrogen production. It shows that over-potential behaves differently with whether an AEM/conventional electrolyser is used, or NaOH/KOH electrolyte is used. This model of the electrolytic cell will be a benchmark for developing a further complete representation for alkaline electrolysis which can be used for simulation as well for developing control algorithms-controlled hydrogen production.
OpenAlex reports 17 citations for this work. Citation counts describe recorded attention and do not establish research quality.
A contribution statement is not available in the OpenAlex record.
Method details are not available in the OpenAlex metadata.
Findings are not separately available in the OpenAlex metadata.
Limitations are not available in the OpenAlex metadata.
Application details are not available in the OpenAlex metadata.
This work is an attempt to develop a model of alkaline electrolysis to compare AEM and conventional electrolysis cells performances over several operating conditions, including a change in electrolytes' composition for hydrogen production. It shows that over-potential behaves differently with whether an AEM/conventional electrolyser is used, or NaOH/KOH electrolyte is used. This model of the electrolytic cell will be a benchmark for developing a further complete representation for alkaline electrolysis which can be used for simulation as well for developing control algorithms-controlled hydrogen production.
Key concepts: Electrolysis, Electrolyte, Alkaline water electrolysis, Hydrogen production, Polymer electrolyte membrane electrolysis, Electrolytic cell, High-temperature electrolysis, Cell voltage