The reutilization of CO2 to produce valuable chemical fuels is an attractive approach to reduce the greenhouse effect and global warming. In this work, the room temperature production of CH4/H2 fuel mixtures via mechanochemical activation of Li2CO3-MgH2 system was explored. The CH4/H2 fuel mixtures were obtained by a free-catalyst reaction, with high selectivity and using Li2CO3 and MgH2 as solid portable sources of CO2 and H2, respectively. The effect of processing parameters on both the evolution of the solid phases and the production of CH4/H2 fuel mixtures was studied using X-ray diffraction, spectroscopic techniques, electron scanning microscopy and gas chromatography. Thermodynamic calculations predict the complete CO2 reduction to CH...
A high-temperature thermochernical process using a redox system of metal oxide is proposed for conve...
Metal hydrides have been studied as a promising solution for the hydrogen recovery from gas mixtures...
Due to the explosive nature of H2,O2and CH4mixtures, the concept of couplingin situsynthesis of H2O2...
The feasibility of the reduction of CO2 to CH4 employing MgH2 in the presence and absence of cobalt ...
CO2 capture and conversion is a key research field for the transition towards an economy only based ...
CO2 emissions have been continuously increasing during the last half of the century with a relevant ...
Experimental evidences show that it is possible to produce methane from an exclusively inorganic way...
Catalytic approaches for CO2 fixation can play an important role, because CO2 can be artificially co...
The synergistic effect of the nickel and carbon nanotubes addition on thermochemical processes for C...
Leveraging on the experience gained by designing and assembling a prototype experimental apparatus r...
Wet mechanochemical processing of olivine under a CO2 atmosphere promotes the CO2 sequestration in t...
In this work the direct conversion of methane to C\(_2\) hydrocarbons through the catalytic oxidativ...
A study on the mechanochemical activation of the olivine in presence of H2O and under CO2 atmosphere...
Mg2CoH5 was synthesized by reactive mechanical milling (RMM) under hydrogen atmosphere (0.5 MPa) fro...
The utilization of the captured CO2 as a carbon source for the production of energy storage media of...
A high-temperature thermochernical process using a redox system of metal oxide is proposed for conve...
Metal hydrides have been studied as a promising solution for the hydrogen recovery from gas mixtures...
Due to the explosive nature of H2,O2and CH4mixtures, the concept of couplingin situsynthesis of H2O2...
The feasibility of the reduction of CO2 to CH4 employing MgH2 in the presence and absence of cobalt ...
CO2 capture and conversion is a key research field for the transition towards an economy only based ...
CO2 emissions have been continuously increasing during the last half of the century with a relevant ...
Experimental evidences show that it is possible to produce methane from an exclusively inorganic way...
Catalytic approaches for CO2 fixation can play an important role, because CO2 can be artificially co...
The synergistic effect of the nickel and carbon nanotubes addition on thermochemical processes for C...
Leveraging on the experience gained by designing and assembling a prototype experimental apparatus r...
Wet mechanochemical processing of olivine under a CO2 atmosphere promotes the CO2 sequestration in t...
In this work the direct conversion of methane to C\(_2\) hydrocarbons through the catalytic oxidativ...
A study on the mechanochemical activation of the olivine in presence of H2O and under CO2 atmosphere...
Mg2CoH5 was synthesized by reactive mechanical milling (RMM) under hydrogen atmosphere (0.5 MPa) fro...
The utilization of the captured CO2 as a carbon source for the production of energy storage media of...
A high-temperature thermochernical process using a redox system of metal oxide is proposed for conve...
Metal hydrides have been studied as a promising solution for the hydrogen recovery from gas mixtures...
Due to the explosive nature of H2,O2and CH4mixtures, the concept of couplingin situsynthesis of H2O2...