The influence of process parameters on the H2O2 yield of gas diffusion electrodes (GDE) are investigated. The investigated GDEs consist of Vulcan XC72 carbon black and PTFE on gold‐plated nickel wire cloth. An electrolysis cell is used to evaluate the influence of various process parameters, such as temperature, pH value, oxygen pressure and stoichiometric factor, electrolyte flow regime, current density and separator material at steady‐state conditions. It is found that the investigated GDE enables current efficiencies greater than 90 % at up to 2 kA m−2, whereby lower electrolyte temperatures and higher pH values contribute to higher H2O2 yields above 90 % current efficiency
Managing the gas–liquid interface within gas-diffusion electrodes (GDEs) is key to maintaining high ...
Managing the gas–liquid interface within gas-diffusion electrodes (GDEs) is key to maintaining high ...
This paper presents some results that may be used as previous considerations to a hydrogen peroxide ...
The influence of process parameters on the H2O2 yield of gas diffusion electrodes (GDE) are investig...
The influence of process parameters on the H2O2 yield of gas diffusion electrodes (GDE) are investig...
The influence of process parameters on the H2O2 yield of gas diffusion electrodes (GDE) are investig...
The in-situ electrosynthesis of hydrogen peroxide (H2O2) from reduction of oxygen is a promising met...
Gas diffusion electrodes (GDEs) allow electrochemical reactions to occur at higher rates by enhancin...
Hydrogen peroxide is a powerful oxidant that finds application in several areas, but most particular...
Hydrogen peroxide is a powerful oxidant that finds application in several areas, but most particular...
In a bioelectrochemical system, the energy content in dissolved organic matter can be used to power ...
Hydrogen peroxide is a powerful oxidant that finds application in several areas, but most particular...
This study reports the performance of a flow-through reactor to promote the sustainable production o...
Managing the gas–liquid interface within gas-diffusion electrodes (GDEs) is key to maintaining high ...
On-site H2O2 electrosynthesis via two-electron oxygen reduction reaction (ORR) is attracting great i...
Managing the gas–liquid interface within gas-diffusion electrodes (GDEs) is key to maintaining high ...
Managing the gas–liquid interface within gas-diffusion electrodes (GDEs) is key to maintaining high ...
This paper presents some results that may be used as previous considerations to a hydrogen peroxide ...
The influence of process parameters on the H2O2 yield of gas diffusion electrodes (GDE) are investig...
The influence of process parameters on the H2O2 yield of gas diffusion electrodes (GDE) are investig...
The influence of process parameters on the H2O2 yield of gas diffusion electrodes (GDE) are investig...
The in-situ electrosynthesis of hydrogen peroxide (H2O2) from reduction of oxygen is a promising met...
Gas diffusion electrodes (GDEs) allow electrochemical reactions to occur at higher rates by enhancin...
Hydrogen peroxide is a powerful oxidant that finds application in several areas, but most particular...
Hydrogen peroxide is a powerful oxidant that finds application in several areas, but most particular...
In a bioelectrochemical system, the energy content in dissolved organic matter can be used to power ...
Hydrogen peroxide is a powerful oxidant that finds application in several areas, but most particular...
This study reports the performance of a flow-through reactor to promote the sustainable production o...
Managing the gas–liquid interface within gas-diffusion electrodes (GDEs) is key to maintaining high ...
On-site H2O2 electrosynthesis via two-electron oxygen reduction reaction (ORR) is attracting great i...
Managing the gas–liquid interface within gas-diffusion electrodes (GDEs) is key to maintaining high ...
Managing the gas–liquid interface within gas-diffusion electrodes (GDEs) is key to maintaining high ...
This paper presents some results that may be used as previous considerations to a hydrogen peroxide ...