Solid oxide electrolysis cells (SOECs) based on oxygen ion-conducting electrolytes driven at high temperatures have been considered promising candidates for CO2 utilization and energy storage to mitigate environmental problems because of their high current density and efficiency. Additionally, SOECs have potential to integrate with processes that require high-temperature pure oxygen produced at anode and CO2 utilization at cathode. Despite this advantage, CO2 utilization via SOEC has been extensively studied only for the practical use and development of CO2 electrolysis electrodes. In this study, we propose novel strategy that synergistically integrates both CO2 electrolysis and OCM in single apparatus. A previous study on OCM using SOEC re...
This study reports a concept of coupling two Solid Oxide Electrolysers (SOE) directly and indirectly...
The effort on electrochemical reduction of CO2 to useful chemicals using the renewable energy to dri...
This paper presents a novel system for production of pure oxygen based on the integration of a solid...
Solid oxide electrolysis cells (SOECs) based on oxygen ion-conducting electrolytes driven at high te...
High-temperature CO2 electrolysis in solid-oxide electrolysis cells (SOECs) could greatly assist in ...
Co-electrolysis of CO2 and H2O using high-temperature solid oxide electrolysis cells (SOECs) into va...
High temperature electrolysis using solid oxide electrolysis cell (SOEC) is a promising method for c...
© 2019 The Authors CH4-assisted solid oxide electrolyzer cells (SOECs) can co-electrolyze H2O and CO...
The conversion of waste CO2into energy carrier fuels (“electrofuels”) using renewable energy (RE) in...
High temperature co-electrolysis of H2O and CO2 offers a promising route for syngas (H2, CO) product...
This research was supported by a grant of SFC/RGC Joint Research Scheme (X-PolyU/501/14) from Resear...
Reliable and economical energy storage technologies are urgently required to ensure sustainable ener...
Direct electrochemical reduction of CO2 to C2 products such as ethylene is more efficient in alkalin...
Environmental issues related to global warming are constantly pushing the fossil fuel-based energy s...
Summary Solid oxide electrolyzer (SOE) can operate in co-electrolysis mode of H2O and CO2 because of...
This study reports a concept of coupling two Solid Oxide Electrolysers (SOE) directly and indirectly...
The effort on electrochemical reduction of CO2 to useful chemicals using the renewable energy to dri...
This paper presents a novel system for production of pure oxygen based on the integration of a solid...
Solid oxide electrolysis cells (SOECs) based on oxygen ion-conducting electrolytes driven at high te...
High-temperature CO2 electrolysis in solid-oxide electrolysis cells (SOECs) could greatly assist in ...
Co-electrolysis of CO2 and H2O using high-temperature solid oxide electrolysis cells (SOECs) into va...
High temperature electrolysis using solid oxide electrolysis cell (SOEC) is a promising method for c...
© 2019 The Authors CH4-assisted solid oxide electrolyzer cells (SOECs) can co-electrolyze H2O and CO...
The conversion of waste CO2into energy carrier fuels (“electrofuels”) using renewable energy (RE) in...
High temperature co-electrolysis of H2O and CO2 offers a promising route for syngas (H2, CO) product...
This research was supported by a grant of SFC/RGC Joint Research Scheme (X-PolyU/501/14) from Resear...
Reliable and economical energy storage technologies are urgently required to ensure sustainable ener...
Direct electrochemical reduction of CO2 to C2 products such as ethylene is more efficient in alkalin...
Environmental issues related to global warming are constantly pushing the fossil fuel-based energy s...
Summary Solid oxide electrolyzer (SOE) can operate in co-electrolysis mode of H2O and CO2 because of...
This study reports a concept of coupling two Solid Oxide Electrolysers (SOE) directly and indirectly...
The effort on electrochemical reduction of CO2 to useful chemicals using the renewable energy to dri...
This paper presents a novel system for production of pure oxygen based on the integration of a solid...