Under alkaline conditions, hydroxide ions can deplete at the anode of a water electrolyser for hydrogen production, resulting in a limiting current density. We found experimentally that in a micro-porous separator, an electro-osmotic flow from anode to cathode lowers this limiting current density. Using the Nernst-Planck equation, a useful expression for the potential drop in the presence of diffusion, migration, and advection is derived. A quasi-stationary, one-dimensional model is used to successfully describe the transient dynamics. Electro-osmotic flow-driven cross-over of dissolved oxygen is argued to impact the hydrogen purity.</p
In electrochemical systems, an understanding of the underlying transport processes is required to ai...
Hydrogen produced by water electrolysis can be used as an energy carrier storing electricity generat...
Enhancing the efficiency of industrial water electrolysis for hydrogen production is important for t...
Combined diffusion, migration, and advection of ions in a binary electrolyte plays a role in various...
Reducing the gap between the electrodes and diaphragm to zero is an often adopted strategy to reduce...
Advanced chlor‐alkali electrolysis with oxygen depolarized cathodes (ODC) requires 30 % less electri...
Electrolysis of water is the decomposition of water compounds (H2O) into oxygen (O2) and hydrogen ga...
Water electrolysis has been a simple method of hydrogen production for over two centuries, but the e...
The effect of bubbles between electrodes on efficiency of hydrogen production by water electrolysis ...
Gerald Pollack has proven that osmosis is powered by the movement of protons, along the electrical g...
In this study, the effect of pulse potential on alkaline water electrolysis energy consumption is in...
Water electrolysis is a promising technology for enabling the storage of surplus electricity produce...
Hydrogen is a promising and well‐accepted energy vector to store electricity produced by intermitten...
For hydrogen to be used as an energy vector in the transition to renewable energy, the water electro...
Most electrochemical processes, such as electrodialysis, are limited by diffusion, but in porous med...
In electrochemical systems, an understanding of the underlying transport processes is required to ai...
Hydrogen produced by water electrolysis can be used as an energy carrier storing electricity generat...
Enhancing the efficiency of industrial water electrolysis for hydrogen production is important for t...
Combined diffusion, migration, and advection of ions in a binary electrolyte plays a role in various...
Reducing the gap between the electrodes and diaphragm to zero is an often adopted strategy to reduce...
Advanced chlor‐alkali electrolysis with oxygen depolarized cathodes (ODC) requires 30 % less electri...
Electrolysis of water is the decomposition of water compounds (H2O) into oxygen (O2) and hydrogen ga...
Water electrolysis has been a simple method of hydrogen production for over two centuries, but the e...
The effect of bubbles between electrodes on efficiency of hydrogen production by water electrolysis ...
Gerald Pollack has proven that osmosis is powered by the movement of protons, along the electrical g...
In this study, the effect of pulse potential on alkaline water electrolysis energy consumption is in...
Water electrolysis is a promising technology for enabling the storage of surplus electricity produce...
Hydrogen is a promising and well‐accepted energy vector to store electricity produced by intermitten...
For hydrogen to be used as an energy vector in the transition to renewable energy, the water electro...
Most electrochemical processes, such as electrodialysis, are limited by diffusion, but in porous med...
In electrochemical systems, an understanding of the underlying transport processes is required to ai...
Hydrogen produced by water electrolysis can be used as an energy carrier storing electricity generat...
Enhancing the efficiency of industrial water electrolysis for hydrogen production is important for t...