Gas bubble behavior on a carbon anode in a cryolite melt has been studied using a see-through cell. The phenomena studied have been growth, coalescence, detachment, and wetting during electrolysis. The surface orientation affects bubble behavior. Therefore, two different anode designs were tested, an anode with a horizontal downward-facing surface and an anode with a vertical surface. At the horizontal anode, it was found that one large bubble was formed by the growth and coalescence of smaller bubbles, and finally, the large bubble detached periodically. For the vertical anode surface, the detaching bubbles were smaller, and most of them had been going through a coalescence process prior to detachment. The bubbles detached randomly. The co...
In the aluminum reduction cells, gas bubbles are generated at the bottom of the anode which eventual...
Anode gas evolution, growth and flow behaviour during aluminium electrolysis have been investigated ...
This thesis describes a study of the bubble evolution mechanisms of four systems; H2/HC1O4Au, H2/H...
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. ...
The anode potential has been shown to be highly dependent on anode geometry and orientation in the H...
Anode gas bubble behavior and anode effect on graphite and industrial carbon rod-shaped anode in a c...
In the Hall-Héroult process for extracting aluminum, the evolution and dynamics of anodic bub...
During production of aluminum in Hall-Héroult cells, carbon anodes electrochemically oxidize to form...
One significant contribution to the anodic potential during aluminum electrolysis is the formation o...
The gas bubble laden layer under the anodes during the electrolysis of alumina plays an important ro...
Improvements in the Hall Héroult process for aluminium electrolysis has lead to a reduction in energ...
The results of physical simulation of the behavior of bubbles formed due to the electrochemical evol...
A novel one-fourth scale low temperature electrolytic model of the Hall-Heroult cell was constructed...
The anodic reaction of aluminium electrolysis cells leads to the formation of CO2 bubbles, which par...
In the aluminum reduction cells, gas bubbles are generated at the bottom of the anode which eventual...
Anode gas evolution, growth and flow behaviour during aluminium electrolysis have been investigated ...
This thesis describes a study of the bubble evolution mechanisms of four systems; H2/HC1O4Au, H2/H...
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. ...
The anode potential has been shown to be highly dependent on anode geometry and orientation in the H...
Anode gas bubble behavior and anode effect on graphite and industrial carbon rod-shaped anode in a c...
In the Hall-Héroult process for extracting aluminum, the evolution and dynamics of anodic bub...
During production of aluminum in Hall-Héroult cells, carbon anodes electrochemically oxidize to form...
One significant contribution to the anodic potential during aluminum electrolysis is the formation o...
The gas bubble laden layer under the anodes during the electrolysis of alumina plays an important ro...
Improvements in the Hall Héroult process for aluminium electrolysis has lead to a reduction in energ...
The results of physical simulation of the behavior of bubbles formed due to the electrochemical evol...
A novel one-fourth scale low temperature electrolytic model of the Hall-Heroult cell was constructed...
The anodic reaction of aluminium electrolysis cells leads to the formation of CO2 bubbles, which par...
In the aluminum reduction cells, gas bubbles are generated at the bottom of the anode which eventual...
Anode gas evolution, growth and flow behaviour during aluminium electrolysis have been investigated ...
This thesis describes a study of the bubble evolution mechanisms of four systems; H2/HC1O4Au, H2/H...