AbstractThermal reduction of metal oxides is of primary interest within the R&D field of solar driven thermochemistry, because it is frequently involved in processes such as thermochemical cycles for hydrogen production or in thermochemical energy storage systems for solar thermal power plants. A lab-scale solar reactor has been designed to test and analyze solar-driven reduction of non-volatile metal oxides arranged in a packed bed. The test bed allows monitoring of oxygen evolution to determine the reaction rate. Experimental tests with Mn2O3, Mn3O4 and CeO2 have been carried out and the performance of each reaction has been analyzed. Total conversion is obtained for Mn2O3 reduction. However, only some zones of the Mn3O4 and CeO2 samples ...
The reduction of iron–manganese oxide particles in a high-temperature packed-bed solar thermochemica...
Two step metal oxide thermochemical redox cycles have seen growing interest in the research communit...
Thermochemical Storage of solar heat exploits the heat effects of reversible chemical reactions for ...
The direct absorption of concentrated solar radiation in a powder cloud is a promising reactor conce...
AbstractA lab-scale thermochemical reactor is designed and fabricated for the solar-driven thermal r...
AbstractA lab-scale thermochemical reactor is designed and fabricated for the solar-driven thermal r...
The application of thermal energy storage (TES) technologies enables dispatchable generation of sola...
A solar thermal reactor has been designed to experimentally investigate promising paths for reducing...
Energy storage is a key enabling technology for the deployment of solar energy to produce electricit...
Air-operated Solar Tower Power Plants store the excess solar energy during on-sun operation as sensi...
Air-operated Solar Tower Power Plants store the excess solar energy during on-sun operation as sensi...
Redox chemistries operating on the transition between the oxidized and the reduced state of an oxide...
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 reduction of iron–manganese oxide particles in a high-temperature packed-bed solar thermochemica...
Two step metal oxide thermochemical redox cycles have seen growing interest in the research communit...
Thermochemical Storage of solar heat exploits the heat effects of reversible chemical reactions for ...
The direct absorption of concentrated solar radiation in a powder cloud is a promising reactor conce...
AbstractA lab-scale thermochemical reactor is designed and fabricated for the solar-driven thermal r...
AbstractA lab-scale thermochemical reactor is designed and fabricated for the solar-driven thermal r...
The application of thermal energy storage (TES) technologies enables dispatchable generation of sola...
A solar thermal reactor has been designed to experimentally investigate promising paths for reducing...
Energy storage is a key enabling technology for the deployment of solar energy to produce electricit...
Air-operated Solar Tower Power Plants store the excess solar energy during on-sun operation as sensi...
Air-operated Solar Tower Power Plants store the excess solar energy during on-sun operation as sensi...
Redox chemistries operating on the transition between the oxidized and the reduced state of an oxide...
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 reduction of iron–manganese oxide particles in a high-temperature packed-bed solar thermochemica...
Two step metal oxide thermochemical redox cycles have seen growing interest in the research communit...
Thermochemical Storage of solar heat exploits the heat effects of reversible chemical reactions for ...