The feasibility of the reduction of CO2 to CH4 employing MgH2 in the presence and absence of cobalt as a catalyst was investigated for the first time, exploring different non-independent reaction conditions such as the grade of microstructural refinement, the molar ratio MgH2 : CO2, reaction time and temperature. For the un-catalyzed process a methane yield of 44.6% was obtained after 24 h of thermal treatment at 400 °C employing a molar ratio of 2 : 1, through a methanation mechanism that involves the direct reduction of CO2 and the generation of CH4via C as an intermediary. For the MgH2 catalyzed process a methane yield of 78% was achieved by heating at 350 °C for 48 h, 4 : 1 being the optimal molar ratio. The global mechanism corresponds...
The utilization of the captured CO2 as a carbon source for the production of energy storage media of...
The methanation of CO2 was performed on Rh/γ-Al2O3 catalyst at temperatures between 50 and 150 °C at...
This review summarizes the statu quo and the perspectives of chemical methanation. CO2 methanation, ...
The feasibility of the reduction of CO2 to CH4 employing MgH2 in the presence and absence of cobalt ...
Catalytic approaches for CO2 fixation can play an important role, because CO2 can be artificially co...
The reutilization of CO2 to produce valuable chemical fuels is an attractive approach to reduce the ...
CO2 emissions have been continuously increasing during the last half of the century with a relevant ...
CO2 capture and conversion is a key research field for the transition towards an economy only based ...
Recently, various efforts have been put forward on the development of technologies for the synthesis...
In this work, thermal catalytic systems were used for CO2 reduction in the presence of H2S. The ther...
Nowadays, the control of CO2 emissions is still a challenge. A few alternatives exist but nothing co...
CO2 methanation is a well-known reaction that is of interest as a capture and storage (CCS) process ...
Experimental evidences show that it is possible to produce methane from an exclusively inorganic way...
The work in this paper evidences the viability of producing synthetic natural gas (SNG) via the meth...
Great attention has been paid to develop non-fossil fuel energy sources to reduce carbon emissions a...
The utilization of the captured CO2 as a carbon source for the production of energy storage media of...
The methanation of CO2 was performed on Rh/γ-Al2O3 catalyst at temperatures between 50 and 150 °C at...
This review summarizes the statu quo and the perspectives of chemical methanation. CO2 methanation, ...
The feasibility of the reduction of CO2 to CH4 employing MgH2 in the presence and absence of cobalt ...
Catalytic approaches for CO2 fixation can play an important role, because CO2 can be artificially co...
The reutilization of CO2 to produce valuable chemical fuels is an attractive approach to reduce the ...
CO2 emissions have been continuously increasing during the last half of the century with a relevant ...
CO2 capture and conversion is a key research field for the transition towards an economy only based ...
Recently, various efforts have been put forward on the development of technologies for the synthesis...
In this work, thermal catalytic systems were used for CO2 reduction in the presence of H2S. The ther...
Nowadays, the control of CO2 emissions is still a challenge. A few alternatives exist but nothing co...
CO2 methanation is a well-known reaction that is of interest as a capture and storage (CCS) process ...
Experimental evidences show that it is possible to produce methane from an exclusively inorganic way...
The work in this paper evidences the viability of producing synthetic natural gas (SNG) via the meth...
Great attention has been paid to develop non-fossil fuel energy sources to reduce carbon emissions a...
The utilization of the captured CO2 as a carbon source for the production of energy storage media of...
The methanation of CO2 was performed on Rh/γ-Al2O3 catalyst at temperatures between 50 and 150 °C at...
This review summarizes the statu quo and the perspectives of chemical methanation. CO2 methanation, ...