CO2 and H2O can be energy-upgraded through solar thermochemical cycles. Suitable redox materials are reduced in a solar reactor at high temperature (above 1300-1400°C) and afterwards re-oxidised by CO2 and/or H2O flow, thus producing CO and/or H2. Ceria was recognised as one of the most interesting materials for this process. However, high reduction temperature, low re-oxidation kinetics as well as low stability hindered its practical application. In this work, the redox properties of Ce0.75Zr0.25O2 system prepared by hydrothermal synthesis were compared with those of a co-precipitated sample with the same nominal composition used as reference. Samples were characterised by XRD and N2 physisorption; their self-reducibility and CO2 splitting...
The Helmholtz Virtual Institute (VI) SolarSynGas brings together expertise from solar energy researc...
The Helmholtz Virtual Institute (VI) SolarSynGas brings together expertise from solar energy researc...
International audienceThe solar thermochemical two-step splitting of H2O and CO2 based on metal oxid...
CO2 and H2O can be energy-upgraded through solar thermochemical cycles. Suitable redox materials are...
Since 2006, ceria is used as a redox reactive material for production of H2, CO, and syngas via a tw...
According to the recent studies, it is expected that the global energy requirement will increase fro...
Thermochemical cycles received renewed interest as CO2 and H2O energy-upgrading processes using sola...
The ease of transportation and high power density create the basis for hydrocarbon fuels’ privileged...
The ease of transportation and high power density create the basis for hydrocarbon fuels’ privileged...
In this paper we report the co-precipitation synthesis of Ce0.75Zr0.125Hf0.125O2 redox material for ...
This thesis reports on the development, optimization and experimental testing of a solar receiver-re...
International audienceThe chemical looping reforming of methane through the nonstoichiometric ceria ...
A thermodynamic analysis was conducted on a solar thermochemical plant for syngas generation via H2O...
This study investigates the catalytic properties of K+ and Cu2 + /Fe3 + co-doped ceria-zirconia (CeZ...
Solar CO2/H2O splitting via two-step thermochemical cycles of metal oxides is a promising path for s...
The Helmholtz Virtual Institute (VI) SolarSynGas brings together expertise from solar energy researc...
The Helmholtz Virtual Institute (VI) SolarSynGas brings together expertise from solar energy researc...
International audienceThe solar thermochemical two-step splitting of H2O and CO2 based on metal oxid...
CO2 and H2O can be energy-upgraded through solar thermochemical cycles. Suitable redox materials are...
Since 2006, ceria is used as a redox reactive material for production of H2, CO, and syngas via a tw...
According to the recent studies, it is expected that the global energy requirement will increase fro...
Thermochemical cycles received renewed interest as CO2 and H2O energy-upgrading processes using sola...
The ease of transportation and high power density create the basis for hydrocarbon fuels’ privileged...
The ease of transportation and high power density create the basis for hydrocarbon fuels’ privileged...
In this paper we report the co-precipitation synthesis of Ce0.75Zr0.125Hf0.125O2 redox material for ...
This thesis reports on the development, optimization and experimental testing of a solar receiver-re...
International audienceThe chemical looping reforming of methane through the nonstoichiometric ceria ...
A thermodynamic analysis was conducted on a solar thermochemical plant for syngas generation via H2O...
This study investigates the catalytic properties of K+ and Cu2 + /Fe3 + co-doped ceria-zirconia (CeZ...
Solar CO2/H2O splitting via two-step thermochemical cycles of metal oxides is a promising path for s...
The Helmholtz Virtual Institute (VI) SolarSynGas brings together expertise from solar energy researc...
The Helmholtz Virtual Institute (VI) SolarSynGas brings together expertise from solar energy researc...
International audienceThe solar thermochemical two-step splitting of H2O and CO2 based on metal oxid...