Carbon dioxide and methane emissions are major greenhouse gases contributing to global warming, thus calling for rapid techniques of sequestration. For instance, dry reforming of methane transforms CO2 and CH4 into syngas, a mixture of H2 and CO, yet the reaction catalyst becomes inactivated by carbon formation and metal sintering. Here, we review catalytic systems used for dry reforming of methane. Improved catalysts of high catalytic performance and stability are obtained by selecting the active metal, supporting materials, promoters and preparation techniques. We found a strong correlation between the support morphology, physicochemical properties and catalytic performances. In particular, fibrous structures show optimal metal–support in...
The mitigation of CO2 and CH4 emissions is feasible by transforming them into valuable syngas via th...
The effect of using different supports, additives and changing residence time on conversion of carbo...
The activity and stability of catalysts for methane-carbon dioxide reforming depend subtly upon the ...
A steady increase in atmospheric carbon dioxide (CO2) and methane concentrations in recent decades h...
CO2 reforming of methane is attractive, because it can convert two greenhouse gases into synthesis g...
In order to produce valuable syngas, industrial processes of dry reforming of methane and steam refo...
Carbon dioxide reforming of methane produces synthesis gas with a low hydrogen to carbon monoxide ra...
Dry reforming of methane is a technique to produce syngas from biogas or CO2-rich natural gas at hig...
Carbon dioxide reforming of methane produces synthesis gas with a low hydrogen to carbon monoxide ra...
Dry reforming of methane is a technique to produce syngas from biogas or CO2-rich natural gas at hig...
The activity and stability of catalysts for methane-carbon dioxide reforming depend subtly upon the ...
In order to produce valuable syngas, industrial processes of dry reforming of methane and steam refo...
Carbon dioxide reforming of methane produces synthesis gas with a low hydrogen to carbon monoxide ra...
Transition to low carbon societies requires advanced catalysis and reaction engineering to pursue gr...
The mitigation of CO2 and CH4 emissions is feasible by transforming them into valuable syngas via th...
The mitigation of CO2 and CH4 emissions is feasible by transforming them into valuable syngas via th...
The effect of using different supports, additives and changing residence time on conversion of carbo...
The activity and stability of catalysts for methane-carbon dioxide reforming depend subtly upon the ...
A steady increase in atmospheric carbon dioxide (CO2) and methane concentrations in recent decades h...
CO2 reforming of methane is attractive, because it can convert two greenhouse gases into synthesis g...
In order to produce valuable syngas, industrial processes of dry reforming of methane and steam refo...
Carbon dioxide reforming of methane produces synthesis gas with a low hydrogen to carbon monoxide ra...
Dry reforming of methane is a technique to produce syngas from biogas or CO2-rich natural gas at hig...
Carbon dioxide reforming of methane produces synthesis gas with a low hydrogen to carbon monoxide ra...
Dry reforming of methane is a technique to produce syngas from biogas or CO2-rich natural gas at hig...
The activity and stability of catalysts for methane-carbon dioxide reforming depend subtly upon the ...
In order to produce valuable syngas, industrial processes of dry reforming of methane and steam refo...
Carbon dioxide reforming of methane produces synthesis gas with a low hydrogen to carbon monoxide ra...
Transition to low carbon societies requires advanced catalysis and reaction engineering to pursue gr...
The mitigation of CO2 and CH4 emissions is feasible by transforming them into valuable syngas via th...
The mitigation of CO2 and CH4 emissions is feasible by transforming them into valuable syngas via th...
The effect of using different supports, additives and changing residence time on conversion of carbo...
The activity and stability of catalysts for methane-carbon dioxide reforming depend subtly upon the ...