SnO2-based porous anodes were prepared and the behavior of gas bubbles on the porous anodes with different original coarse grain size, immersed in ethanol to simulate molten chlorides, was primarily investigated. SnO2-based porous anodes were used as gas anodes for the electrowinning of silver in CaCl2-NaCl-CaO-AgCl melts at 680°C. Hydrogen was introduced to the anode/electrolyte interface through the gas anode. Carbon was used as the cathode. Obvious depolarization of the anode potential was observed after the introduction of hydrogen comparing with no reducing gas introduced, indicating the involvement of hydrogen in the anode reaction. Metallic silver was deposited on the cathode
The aim of this thesis was to enable the direct utilization of solid carbonaceous fuels like coal an...
The performance of carbon anodes in aluminium production will depend on both the coke quality (impur...
During production of aluminum in Hall-Héroult cells, carbon anodes electrochemically oxidize to form...
SnO2-based porous anodes were prepared and the behavior of gas bubbles on the porous anodes with dif...
Industrial primary production of aluminium has been developed and improved over more than 100 years....
A novel helium-stirred solid oxide fuel cell (SOFC) with a molten metal anode for electricity ...
Aluminium is the second metal produced in the world in terms of quantity. It is produced in a multis...
Anode gas bubble behavior and anode effect on graphite and industrial carbon rod-shaped anode in a c...
Liquid metal anode (LMA) solid oxide fuel cells (SOFCs) are a promising type of high temperature fue...
One of the major downsides of the current aluminium production process is the high CO2 emission. One...
This study deals with the optimization of best working conditions in molten melt for the production ...
Conventional power plants for the conversion of fossil fuels to electricity have low efficiencies an...
One of the major downsides of the current aluminium production process is the high amount of CO2 e m...
Anode gas evolution, growth and flow behaviour during aluminium electrolysis have been investigated ...
Greenhouse gases including carbon dioxide are formed by the consumption of carbon anodes during alum...
The aim of this thesis was to enable the direct utilization of solid carbonaceous fuels like coal an...
The performance of carbon anodes in aluminium production will depend on both the coke quality (impur...
During production of aluminum in Hall-Héroult cells, carbon anodes electrochemically oxidize to form...
SnO2-based porous anodes were prepared and the behavior of gas bubbles on the porous anodes with dif...
Industrial primary production of aluminium has been developed and improved over more than 100 years....
A novel helium-stirred solid oxide fuel cell (SOFC) with a molten metal anode for electricity ...
Aluminium is the second metal produced in the world in terms of quantity. It is produced in a multis...
Anode gas bubble behavior and anode effect on graphite and industrial carbon rod-shaped anode in a c...
Liquid metal anode (LMA) solid oxide fuel cells (SOFCs) are a promising type of high temperature fue...
One of the major downsides of the current aluminium production process is the high CO2 emission. One...
This study deals with the optimization of best working conditions in molten melt for the production ...
Conventional power plants for the conversion of fossil fuels to electricity have low efficiencies an...
One of the major downsides of the current aluminium production process is the high amount of CO2 e m...
Anode gas evolution, growth and flow behaviour during aluminium electrolysis have been investigated ...
Greenhouse gases including carbon dioxide are formed by the consumption of carbon anodes during alum...
The aim of this thesis was to enable the direct utilization of solid carbonaceous fuels like coal an...
The performance of carbon anodes in aluminium production will depend on both the coke quality (impur...
During production of aluminum in Hall-Héroult cells, carbon anodes electrochemically oxidize to form...