Two-step CO2 and H2O splitting using perovskite-coated ceria foam for enhanced green fuel production in a porous volumetric solar reactor

A Haeussler, S Abanades, A Julbe, J Jouannaux… - Journal of CO2 …, 2020 - Elsevier
Solar thermochemical cycles offer a viable option for the production of green synthetic fuels
from CO 2 and H 2 O. Two-step cycles using redox materials consist of a high-temperature …

Two-step CO2 and H2O splitting using perovskite-coated ceria foam for enhanced green fuel production in a porous volumetric solar reactor

A Haeussler, S Abanades, A Julbe… - Journal of CO2 …, 2020 - ui.adsabs.harvard.edu
Solar thermochemical two-step CO 2 and H 2 O splitting for CO and H 2 production. A
volumetric solar reactor integrating reticulated porous redox reactant was operated …

[引用][C] Two-step CO2 and H2O splitting using perovskite-coated ceria foam for enhanced green fuel production in a porous volumetric solar reactor

A Haeussler, S Abanades, A Julbe… - Journal of CO2 …, 2020 - hero.epa.gov
Two-step CO2 and H2O splitting using perovskite-coated ceria foam for enhanced green fuel
production in a porous volumetric solar reactor | Health & Environmental Research Online (HERO) …

Two-step CO2 and H2O splitting using perovskite-coated ceria foam for enhanced green fuel production in a porous volumetric solar reactor

A Haeussler, S Abanades, A Julbe… - Journal of CO2 …, 2020 - hal.science
Solar thermochemical cycles offer a viable option for the production of green synthetic fuels
from CO 2 and H 2 O. Two-step cycles using redox materials consist of a high-temperature …

[PDF][PDF] Two-step CO2 and H2O splitting using perovskite-coated ceria foam for enhanced green fuel production in a porous volumetric solar reactor

A HAEUSSLER, S ABANADES, A JULBE… - hal.science
Solar thermochemical cycles offer a viable option for the production of green synthetic fuels
from CO2 and H2O. Two-step cycles using redox materials consist of a high-temperature …