Anode gas bubble behavior and anode effect on graphite and industrial carbon rod-shaped anode in a cryolite melt have been studied using a see-through furnace. The different carbon materials have different properties which can affect bubble behavior and electrochemical properties. Industrial carbon is more inhomogeneous with respect to structure, pore, aggregates and impurities in comparison to the graphite. More bubbles were nucleated on the industrial carbon than on the graphite for the same current density. The time related to the coalescence process for both anodes was found to be in interval 16 to 24 ms and independent of the current densities. Bubbles detached from the horizontal surface of the anode have similar average diameter valu...
One of the major downsides of the current aluminium production process is the high CO2 emission. One...
The carbon anode, used in aluminum electrolysis (Hall–Héroult process), is over-consumed by air oxid...
Recent progress in material science might soon allow the replacement of the consumable carbon anode ...
Anode gas bubble behavior and anode effect on graphite and industrial carbon rod-shaped anode in a c...
Gas bubble behavior on a carbon anode in a cryolite melt has been studied using a see-through cell. ...
Gas bubble behavior on a carbon anode in a cryolite melt has been studied using a see-through cell. ...
In the Hall-Héroult process for extracting aluminum, the evolution and dynamics of anodic bub...
The anode potential has been shown to be highly dependent on anode geometry and orientation in the H...
During production of aluminum in Hall-Héroult cells, carbon anodes electrochemically oxidize to form...
Anode gas evolution, growth and flow behaviour during aluminium electrolysis have been investigated ...
One significant contribution to the anodic potential during aluminum electrolysis is the formation o...
The anodic reaction of aluminium electrolysis cells leads to the formation of CO2 bubbles, which par...
The mechanism of the anodic reaction in cryolite melt is studied in presence and in absence of a lay...
Improvements in the Hall Héroult process for aluminium electrolysis has lead to a reduction in energ...
The electrochemical oxidation of graphite is investigated to determine the relative influence of the...
One of the major downsides of the current aluminium production process is the high CO2 emission. One...
The carbon anode, used in aluminum electrolysis (Hall–Héroult process), is over-consumed by air oxid...
Recent progress in material science might soon allow the replacement of the consumable carbon anode ...
Anode gas bubble behavior and anode effect on graphite and industrial carbon rod-shaped anode in a c...
Gas bubble behavior on a carbon anode in a cryolite melt has been studied using a see-through cell. ...
Gas bubble behavior on a carbon anode in a cryolite melt has been studied using a see-through cell. ...
In the Hall-Héroult process for extracting aluminum, the evolution and dynamics of anodic bub...
The anode potential has been shown to be highly dependent on anode geometry and orientation in the H...
During production of aluminum in Hall-Héroult cells, carbon anodes electrochemically oxidize to form...
Anode gas evolution, growth and flow behaviour during aluminium electrolysis have been investigated ...
One significant contribution to the anodic potential during aluminum electrolysis is the formation o...
The anodic reaction of aluminium electrolysis cells leads to the formation of CO2 bubbles, which par...
The mechanism of the anodic reaction in cryolite melt is studied in presence and in absence of a lay...
Improvements in the Hall Héroult process for aluminium electrolysis has lead to a reduction in energ...
The electrochemical oxidation of graphite is investigated to determine the relative influence of the...
One of the major downsides of the current aluminium production process is the high CO2 emission. One...
The carbon anode, used in aluminum electrolysis (Hall–Héroult process), is over-consumed by air oxid...
Recent progress in material science might soon allow the replacement of the consumable carbon anode ...