International audienceThe solar thermochemical two-step splitting of H2O and CO2 based on metal oxide compounds is a promising path for clean and efficient generation of hydrogen and renewable synthetic fuels. The two-step process is based on the endothermic solar thermal reduction of a metal oxide releasing O2 using a high-temperature concentrated solar heat source, followed by the exothermic oxidation of the reduced oxide with H2O and/or CO2 to generate pure H2 and/or CO. This pathway relates to one of the emerging and most promising processes for solar thermochemical fuel production encompassing green H2 and the recycling/valorization of anthropogenic greenhouse gas emissions. It represents an efficient route for solar energy conversion ...
The interest in and need for carbon-free fuels that do not rely on fossil fuels are constantly growi...
The ease of transportation and high power density create the basis for hydrocarbon fuels’ privileged...
CO2 and water can be reduced to CO and hydrogen by solar-powered thermo-chemical cycles. Concentrate...
Solar CO2/H2O splitting via two-step thermochemical cycles of metal oxides is a promising path for s...
Solar CO2/H2O splitting via two-step thermochemical cycles of metal oxides is a promising path for s...
Solar CO2/H2O splitting via two-step thermochemical cycles of metal oxides is a promising path for s...
The development of carbon-neutral, environmentally-sustainable energy carrier is a technological imp...
The ease of transportation and high power density create the basis for hydrocarbon fuels’ privileged...
Two step metal oxide thermochemical redox cycles have seen growing interest in the research communit...
ABSTRACT: Metal oxides are used in concentrated solar energy plants (CSP) to store heat, which can b...
Redox chemistries operating on the transition between the oxidized and the reduced state of an oxide...
A two-step thermo-chemical cycle process has been developed. It is based on metal oxide redox pair s...
This article provides a comprehensive overview of the work to date on the two‑step solar H2O and/or ...
This article provides a comprehensive overview of the work to date on the two‑step solar H2O and/or ...
With the advent of green technologies, solar fuel has gained particular interest that helps in produ...
The interest in and need for carbon-free fuels that do not rely on fossil fuels are constantly growi...
The ease of transportation and high power density create the basis for hydrocarbon fuels’ privileged...
CO2 and water can be reduced to CO and hydrogen by solar-powered thermo-chemical cycles. Concentrate...
Solar CO2/H2O splitting via two-step thermochemical cycles of metal oxides is a promising path for s...
Solar CO2/H2O splitting via two-step thermochemical cycles of metal oxides is a promising path for s...
Solar CO2/H2O splitting via two-step thermochemical cycles of metal oxides is a promising path for s...
The development of carbon-neutral, environmentally-sustainable energy carrier is a technological imp...
The ease of transportation and high power density create the basis for hydrocarbon fuels’ privileged...
Two step metal oxide thermochemical redox cycles have seen growing interest in the research communit...
ABSTRACT: Metal oxides are used in concentrated solar energy plants (CSP) to store heat, which can b...
Redox chemistries operating on the transition between the oxidized and the reduced state of an oxide...
A two-step thermo-chemical cycle process has been developed. It is based on metal oxide redox pair s...
This article provides a comprehensive overview of the work to date on the two‑step solar H2O and/or ...
This article provides a comprehensive overview of the work to date on the two‑step solar H2O and/or ...
With the advent of green technologies, solar fuel has gained particular interest that helps in produ...
The interest in and need for carbon-free fuels that do not rely on fossil fuels are constantly growi...
The ease of transportation and high power density create the basis for hydrocarbon fuels’ privileged...
CO2 and water can be reduced to CO and hydrogen by solar-powered thermo-chemical cycles. Concentrate...