In this study, a systematic investigation on Dual Functioning Materials (DFMs) for the capture and methanation of CO2 is carried out. The attention is focused on the nature of the CO2 adsorbent component (storage material, SM) varying between alkaline (Li, Na, K) and alkaline-earth (Mg, Ca, Ba) metal oxides in combination with Ru, both supported on an Al2O3 support. Combining gas phase reactivity analysis and FT-IR characterization, the samples are characterized in terms of CO2 storage capacity. It is found that all the SM-containing samples adsorb significant amounts of CO2 as carbonate species, with the higher amounts being adsorbed when the more thermally stable species are formed, i.e., when Ca, Ba, or K are employed as SMs. In all case...
The reactivity of Ru/Al2O3 catalysts in the hydrogenation of CO/CO2 gas stream is investigated in th...
The accumulation of CO₂ emissions in the atmosphere due to industrialization is being held responsib...
In this study a holistic approach to studying novel materials for carbon capture and storage is pres...
In this study, a systematic investigation on Dual Functioning Materials (DFMs) for the capture and m...
In this study, a systematic investigation on Dual Functioning Materials (DFMs) for the capture and m...
In this work, we discuss the role of different atmospheres and process conditions on the catalytic p...
Mechanistic aspects involved in cyclic CO2 capture and methanation were analyzed by comparing the ca...
The rise of anthropogenic CO₂ emissions and the associated increasing levels of CO₂ in the atmospher...
Development of sustainable energy technologies and reduction of carbon dioxide in the atmosphere are...
The accumulation of CO₂ emissions in the atmosphere due to industrialization is being held responsib...
Dual function materials (DFMs) for CO₂ capture and conversion couple the endothermic CO₂ desorption ...
This work addresses the stability of different Ru-based dual function materials (DFM, x% Ru, 6.1% “N...
Summarization: CO2 methanation has great potential for the better utilization of existing carbon res...
The reactivity of Ru/Al2O3 catalysts in the hydrogenation of CO/CO2 gas stream is investigated in th...
The accumulation of CO₂ emissions in the atmosphere due to industrialization is being held responsib...
In this study a holistic approach to studying novel materials for carbon capture and storage is pres...
In this study, a systematic investigation on Dual Functioning Materials (DFMs) for the capture and m...
In this study, a systematic investigation on Dual Functioning Materials (DFMs) for the capture and m...
In this work, we discuss the role of different atmospheres and process conditions on the catalytic p...
Mechanistic aspects involved in cyclic CO2 capture and methanation were analyzed by comparing the ca...
The rise of anthropogenic CO₂ emissions and the associated increasing levels of CO₂ in the atmospher...
Development of sustainable energy technologies and reduction of carbon dioxide in the atmosphere are...
The accumulation of CO₂ emissions in the atmosphere due to industrialization is being held responsib...
Dual function materials (DFMs) for CO₂ capture and conversion couple the endothermic CO₂ desorption ...
This work addresses the stability of different Ru-based dual function materials (DFM, x% Ru, 6.1% “N...
Summarization: CO2 methanation has great potential for the better utilization of existing carbon res...
The reactivity of Ru/Al2O3 catalysts in the hydrogenation of CO/CO2 gas stream is investigated in th...
The accumulation of CO₂ emissions in the atmosphere due to industrialization is being held responsib...
In this study a holistic approach to studying novel materials for carbon capture and storage is pres...