The direct activation of undiluted CO2 is carried out in a co-axial dielectric barrier discharge (DBD) reactor. The variation of the electrical discharge parameters and their influence on CO2 decomposition is investigated with the integration of 15 % MO/γ-Al2O3 (M = Ni, Cu) catalyst in the discharge zone. The electrical discharge is found to shift from the filamentary to a combination of surface and micro filamentary discharge on catalyst integration to NTP and also leads to the higher conversion of CO2 than DBD alone. The highest conversion of CO2 (15.7 %) with the energy efficiency of 1.597 mmol/kJ is achieved under CuO/γ-Al2O3 integrated NTP system, whereas the maximum of carbon balance (94.4 %) reaches with 4% CeO2 addition to CuO/Al2O3...
Abstract The choice of electrode configuration and dielectric material is critical to th...
The choice of electrode configuration and dielectric material is critical to the discharge process a...
The choice of electrode configuration and dielectric material is critical to the discharge process a...
Direct conversion of CO2 into CO and O2 is performed in a packed-bed dielectric barrier discharge (D...
Carbon dioxide (CO2) partial reduction to carbon monoxide (CO) and oxygen has been conducted in a di...
Carbon dioxide (CO2) partial reduction to carbon monoxide (CO) and oxygen has been conducted in a di...
Carbon dioxide (CO2) decomposition has drawn significant interest over the years due to its global w...
Carbon monoxide oxidation by nitrous oxide was carried out in a dielectric barrier discharge reactor...
Carbon monoxide oxidation by nitrous oxide was carried out in a dielectric barrier discharge reactor...
We present an innovative approach for reacting carbon dioxide and water to give syngas by combining ...
We present an innovative approach for reacting carbon dioxide and water to give syngas by combining ...
We present an innovative approach for reacting carbon dioxide and water to give syngas by combining ...
\u3cp\u3eWe present an innovative approach for reacting carbon dioxide and water to give syngas by c...
Plasma catalysis is gaining increasing interest for CO2 conversion, but the interaction between the ...
arbon dioxide (CO2) partial reduction to carbon monoxide (CO) and oxygen has been conducted in a die...
Abstract The choice of electrode configuration and dielectric material is critical to th...
The choice of electrode configuration and dielectric material is critical to the discharge process a...
The choice of electrode configuration and dielectric material is critical to the discharge process a...
Direct conversion of CO2 into CO and O2 is performed in a packed-bed dielectric barrier discharge (D...
Carbon dioxide (CO2) partial reduction to carbon monoxide (CO) and oxygen has been conducted in a di...
Carbon dioxide (CO2) partial reduction to carbon monoxide (CO) and oxygen has been conducted in a di...
Carbon dioxide (CO2) decomposition has drawn significant interest over the years due to its global w...
Carbon monoxide oxidation by nitrous oxide was carried out in a dielectric barrier discharge reactor...
Carbon monoxide oxidation by nitrous oxide was carried out in a dielectric barrier discharge reactor...
We present an innovative approach for reacting carbon dioxide and water to give syngas by combining ...
We present an innovative approach for reacting carbon dioxide and water to give syngas by combining ...
We present an innovative approach for reacting carbon dioxide and water to give syngas by combining ...
\u3cp\u3eWe present an innovative approach for reacting carbon dioxide and water to give syngas by c...
Plasma catalysis is gaining increasing interest for CO2 conversion, but the interaction between the ...
arbon dioxide (CO2) partial reduction to carbon monoxide (CO) and oxygen has been conducted in a die...
Abstract The choice of electrode configuration and dielectric material is critical to th...
The choice of electrode configuration and dielectric material is critical to the discharge process a...
The choice of electrode configuration and dielectric material is critical to the discharge process a...