To further reduce the capital expenditure of alkaline water electrolyzers, an improvement in power density can still be achieved through process intensification. The change from traditional gap-cells to zero-gap cells has already been proven to be very promising in this respect. In the zero-gap design, macro-porous 3D structures are typically being used as electrodes. Here, pure nickel foams with different pore sizes in the range 450 – 3000 µm have been studied under well-controlled electrolyte flow conditions. To this end, a dedicated flow cell has first been constructed that allows for imposing the same relatively high flow rates on the order of 1 L/min that are typically encountered under industrial conditions. Our specific cell design w...
Three dimensional electrodes have been widely used until now for environmental applications such as ...
Using electrodes or catalytic layers that are porous increases the reactive surface area but also th...
Water electrolysis from renewable electricity may enable the widespread use of hydrogen as a high en...
A zero-gap cell with porous electrodes is a promising configuration for alkaline water electrolysis....
As shown in the Figure below, the alkaline water electrolysis performance obtained in this work sign...
Porous materials are frequently used as e.g. electrodes or porous transport layers in various types ...
Green hydrogen production by water electrolysis gains more and more traction as a promising solution...
Hydrogen is a promising and well-accepted energy vector to store electricity produced by intermitten...
To maximize performance in starved, multiplate cells, the cell design should rely on techniques whic...
Hydrogen has become now a well-accepted energy vector to store electricity produced by intermittent ...
Hydrogen is a promising and well‐accepted energy vector to store electricity produced by intermitten...
Provision of large electrode surface areas is key to achieve process intensification in electrochemi...
Three dimensional electrodes have been widely used until now for environmental applications such as ...
The practical application of electrochemical water splitting has been plagued by the sluggish kineti...
Low power density (operated current density) is one critical obstacle to the development of single f...
Three dimensional electrodes have been widely used until now for environmental applications such as ...
Using electrodes or catalytic layers that are porous increases the reactive surface area but also th...
Water electrolysis from renewable electricity may enable the widespread use of hydrogen as a high en...
A zero-gap cell with porous electrodes is a promising configuration for alkaline water electrolysis....
As shown in the Figure below, the alkaline water electrolysis performance obtained in this work sign...
Porous materials are frequently used as e.g. electrodes or porous transport layers in various types ...
Green hydrogen production by water electrolysis gains more and more traction as a promising solution...
Hydrogen is a promising and well-accepted energy vector to store electricity produced by intermitten...
To maximize performance in starved, multiplate cells, the cell design should rely on techniques whic...
Hydrogen has become now a well-accepted energy vector to store electricity produced by intermittent ...
Hydrogen is a promising and well‐accepted energy vector to store electricity produced by intermitten...
Provision of large electrode surface areas is key to achieve process intensification in electrochemi...
Three dimensional electrodes have been widely used until now for environmental applications such as ...
The practical application of electrochemical water splitting has been plagued by the sluggish kineti...
Low power density (operated current density) is one critical obstacle to the development of single f...
Three dimensional electrodes have been widely used until now for environmental applications such as ...
Using electrodes or catalytic layers that are porous increases the reactive surface area but also th...
Water electrolysis from renewable electricity may enable the widespread use of hydrogen as a high en...