Integrated carbon capture and utilization (ICCU) presents an ideal solution to address anthropogenic carbon dioxide (CO2) emissions from industry and energy sectors, facilitating CO2 capture and subsequent utilization through conversion into high-value chemicals, as opposed to current release into the atmosphere. Herein, we report the synergistic coupling of porous CaO, as a sorbent for CO2 capture, and Ni doped CeO2 nanorods, as catalytic sites for CO2 reduction. It is found that ceria is shown to possess the capacity for CO2 utilization, however, critically it only results in the generation of CO due to the weak CO-ceria bonding. The addition of Ni active sites gives rise to CH4 being the predominant product, via the strong interaction be...
In this work, the WGS performance of a conventional Ni/CeO2 bulk catalyst is compared to that of a c...
The role of different active sites on Ni/CeO2 catalysts in the CO2 methanation has been studied. Two...
The combination of multiwalled carbon nanotubes (MWCNTs) with undoped CeO2 nanoparticles (NPs) is ef...
Integrated CO2 capture and utilisation (ICCU) is a promising strategy for restricting carbon emissio...
The distance between catalytic sites (Ni) and sorbents (CaO) on the performance of integrated CO2 ca...
The role of metal-support interaction in determining CO2 activation and conversion for methane produ...
CO2 is one of the most important greenhouse gases leading to severe environmental issues. The increa...
Achieving carbon neutrality is one of the most important tasks to meet the environmental challenges ...
Herein, the production of synthetic natural gas is proposed as an effective route for CO2 conversion...
Reducing greenhouse emissions is of vital importance to tackle the climate changes and to decrease t...
Summarization: The structure sensitivity of CO2 methanation was explored over nickel particles (10–2...
A series of CeO2 supported Cu, Co, and Ni catalysts have been synthesized by the wetimpregnation met...
Carbon dioxide (CO2) utilization is indispensable to reduce high atmospheric CO2 concentration, attr...
Integrated CO2 capture and methanation (ICCM) is attracting more attention to promote the reduction ...
The direct catalytic conversion of atmospheric CO2 to valuable chemicals is a promising solution to ...
In this work, the WGS performance of a conventional Ni/CeO2 bulk catalyst is compared to that of a c...
The role of different active sites on Ni/CeO2 catalysts in the CO2 methanation has been studied. Two...
The combination of multiwalled carbon nanotubes (MWCNTs) with undoped CeO2 nanoparticles (NPs) is ef...
Integrated CO2 capture and utilisation (ICCU) is a promising strategy for restricting carbon emissio...
The distance between catalytic sites (Ni) and sorbents (CaO) on the performance of integrated CO2 ca...
The role of metal-support interaction in determining CO2 activation and conversion for methane produ...
CO2 is one of the most important greenhouse gases leading to severe environmental issues. The increa...
Achieving carbon neutrality is one of the most important tasks to meet the environmental challenges ...
Herein, the production of synthetic natural gas is proposed as an effective route for CO2 conversion...
Reducing greenhouse emissions is of vital importance to tackle the climate changes and to decrease t...
Summarization: The structure sensitivity of CO2 methanation was explored over nickel particles (10–2...
A series of CeO2 supported Cu, Co, and Ni catalysts have been synthesized by the wetimpregnation met...
Carbon dioxide (CO2) utilization is indispensable to reduce high atmospheric CO2 concentration, attr...
Integrated CO2 capture and methanation (ICCM) is attracting more attention to promote the reduction ...
The direct catalytic conversion of atmospheric CO2 to valuable chemicals is a promising solution to ...
In this work, the WGS performance of a conventional Ni/CeO2 bulk catalyst is compared to that of a c...
The role of different active sites on Ni/CeO2 catalysts in the CO2 methanation has been studied. Two...
The combination of multiwalled carbon nanotubes (MWCNTs) with undoped CeO2 nanoparticles (NPs) is ef...