Summarization: The effect of alkali promotion of TiO2 on the CO2 hydrogenation activity and selectivity has been investigated over 0.5%Ru/TiO2 and 5%Ru/TiO2 catalysts of different promoter type (Li, Na, K, Cs) and variable promoter loading (0.0–0.40 wt.%). The effect of alkali promotion was found to be more pronounced over catalysts of low Ru loading (or small Ru crystallites). In the case of 0.5%Ru/TiO2 catalysts, both catalytic activity and methane selectivity are strongly enhanced with the addition of small amounts (0.2 wt.%) of alkalis following the order of TiO2 (unpromoted) < Li ∼ K < Cs < Na. The intrinsic reaction rate exhibits a volcano-type dependence on the sodium content. Optimal results were obtained for 0.5%Ru/TiO2 catalyst co...
Aiming at a detailed understanding of the role of metal–support interactions in the selective methan...
The methanation of carbon dioxide has been studied over 3% Ru/Al2O3 and 20% Ni/Al2O3 commercial cata...
International audienceThe catalytic performances of TiO2-supported Ni catalysts for the methanation ...
Summarization: The effect of alkali (Li, Na, K, Cs) promotion of TiO2 on the CO2 hydrogenation pathw...
Summarization: The catalytic performance of supported ruthenium catalysts for the selective methanat...
The high CO2 methanation activity of Ru/TiO2 catalysts prepared by mixing both anatase and rutile Ti...
Summarization: The catalytic activity of supported noble metal catalysts for the CO2 methanation rea...
Summarization: The effect of metal crystallite size on the reaction mechanism of competitive methana...
Summarization: The mechanism of selective methanation of CO/CO2 over 5%Ru/TiO2 catalyst is investiga...
Summarization: Selective methanation of CO can be used as the final purification step of re-formate ...
Summarization: The catalytic performance of Al2O3-supported noble metal catalysts for the methanatio...
Summarization: The catalytic activity of supported Ni and Ru catalysts has been investigated for the...
The catalytic hydrogenation of CO2 is a relevant strategy for mitigating CO2 emissions and its appli...
International audienceThe catalytic hydrogenation of CO2 is a relevant strategy for mitigating CO2 e...
Summarization: The effects of alkali promotion of TiO2 on the chemisorptive properties and water–gas...
Aiming at a detailed understanding of the role of metal–support interactions in the selective methan...
The methanation of carbon dioxide has been studied over 3% Ru/Al2O3 and 20% Ni/Al2O3 commercial cata...
International audienceThe catalytic performances of TiO2-supported Ni catalysts for the methanation ...
Summarization: The effect of alkali (Li, Na, K, Cs) promotion of TiO2 on the CO2 hydrogenation pathw...
Summarization: The catalytic performance of supported ruthenium catalysts for the selective methanat...
The high CO2 methanation activity of Ru/TiO2 catalysts prepared by mixing both anatase and rutile Ti...
Summarization: The catalytic activity of supported noble metal catalysts for the CO2 methanation rea...
Summarization: The effect of metal crystallite size on the reaction mechanism of competitive methana...
Summarization: The mechanism of selective methanation of CO/CO2 over 5%Ru/TiO2 catalyst is investiga...
Summarization: Selective methanation of CO can be used as the final purification step of re-formate ...
Summarization: The catalytic performance of Al2O3-supported noble metal catalysts for the methanatio...
Summarization: The catalytic activity of supported Ni and Ru catalysts has been investigated for the...
The catalytic hydrogenation of CO2 is a relevant strategy for mitigating CO2 emissions and its appli...
International audienceThe catalytic hydrogenation of CO2 is a relevant strategy for mitigating CO2 e...
Summarization: The effects of alkali promotion of TiO2 on the chemisorptive properties and water–gas...
Aiming at a detailed understanding of the role of metal–support interactions in the selective methan...
The methanation of carbon dioxide has been studied over 3% Ru/Al2O3 and 20% Ni/Al2O3 commercial cata...
International audienceThe catalytic performances of TiO2-supported Ni catalysts for the methanation ...