Dual-phase membranes for high-temperature carbon dioxide separation have emerged as promising technology to mitigate anthropogenic greenhouse gases emissions, especially as a pre- and post-combustion separation technique in coal burning power plants. To implement these membranes industrially, the carbon dioxide permeability must be improved. In this study, Ce0.8Sm0.2O2−δ (SDC) and Ce0.8Sm0.19Fe0.01O2−δ (FSDC) ceramic powders were used to form the skeleton in dual-phase membranes. The use of MgO as an environmentally friendly pore generator allows control over the membrane porosity and microstructure in order to compare the effect of the membrane’s ceramic phase. The ceramic powders and the resulting membranes were characterized using ICP-OE...
Ceramic oxide membranes are widely being researched for Carbon Capture and Storage/Utilization secto...
A nano-structure tubular hybrid inorganic membrane capable of stripping carbon dioxide from flue gas...
Membranes for CO2 capture should offer high permeant fluxes to keep membrane surface area small and ...
abstract: Of the potential technologies for pre-combustion capture, membranes offer the advantages o...
Carbon dioxide emission mitigation arises as one of the critical challenges for sustainable developm...
AbstractThis work reports on the investigation of CO2 selective membranes for pre-combustion and pos...
abstract: High temperature CO2 perm-selective membranes offer potential for uses in various processe...
This project is intended to expand upon the previous year's research en route to the development of ...
Dual-phase membranes consisting of stainless steel supports infiltrated with molten carbonate have b...
abstract: Emission of CO2 into the atmosphere has become an increasingly concerning issue as we prog...
Fabricating dual-phase hollow-fiber membranes via a one-step thermal processing (OSTP) approach is c...
Gas separation is one of the key technologies to improve the efficiency of combustion process, and t...
By cobalt-doping of the mixed conducting phase PSFC, a good combination of high CO2 stability and hi...
Ph. D. ThesisSolid metal and metal oxide supports for high-temperature dual-phase molten salt membra...
Composite molten salt-ceramic membranes are promising devices for high-temperature CO2 separation. I...
Ceramic oxide membranes are widely being researched for Carbon Capture and Storage/Utilization secto...
A nano-structure tubular hybrid inorganic membrane capable of stripping carbon dioxide from flue gas...
Membranes for CO2 capture should offer high permeant fluxes to keep membrane surface area small and ...
abstract: Of the potential technologies for pre-combustion capture, membranes offer the advantages o...
Carbon dioxide emission mitigation arises as one of the critical challenges for sustainable developm...
AbstractThis work reports on the investigation of CO2 selective membranes for pre-combustion and pos...
abstract: High temperature CO2 perm-selective membranes offer potential for uses in various processe...
This project is intended to expand upon the previous year's research en route to the development of ...
Dual-phase membranes consisting of stainless steel supports infiltrated with molten carbonate have b...
abstract: Emission of CO2 into the atmosphere has become an increasingly concerning issue as we prog...
Fabricating dual-phase hollow-fiber membranes via a one-step thermal processing (OSTP) approach is c...
Gas separation is one of the key technologies to improve the efficiency of combustion process, and t...
By cobalt-doping of the mixed conducting phase PSFC, a good combination of high CO2 stability and hi...
Ph. D. ThesisSolid metal and metal oxide supports for high-temperature dual-phase molten salt membra...
Composite molten salt-ceramic membranes are promising devices for high-temperature CO2 separation. I...
Ceramic oxide membranes are widely being researched for Carbon Capture and Storage/Utilization secto...
A nano-structure tubular hybrid inorganic membrane capable of stripping carbon dioxide from flue gas...
Membranes for CO2 capture should offer high permeant fluxes to keep membrane surface area small and ...