A critical step of sulfur based thermochemical cycles for hydrogen production from water is the endothermic recomposition of sulfuric acid. The necessary heat can be provided by concentrated solar radiation. A solar receiver-reactor has been developed and built to investigate this process. Experiments with the test reactor were carried out in the DLR solar furnace in Cologne and confirmed the technical feasibility of a receiver-reactor containing porous ceramics for the decomposition of sulfuric acid. The receiver-reactor and strategy of operation were iteratively optimized with respect to chemical conversion and reactor efficiency. Parametric studies were conducted with varying partial pressure of SO3, residence time, absorber temperature...
Hydrogen, being an environmentally friendly energy carrier is considered a future solution of the cu...
The sulfur-iodine (S-I) thermochemical water splitting cycle is one of the most studied cycles for h...
Westinghouse is currently under contract to DOE for technology development of the Sulfur Cycle, a hy...
Fossil energy carriers may be replaced in the future by hydrogen to save fossil resources and to avo...
Fossil energy carriers may be replaced in the future by hydrogen to save fossil resources and to avo...
Solar energy underlies significant diurnal and seasonal fluctuations and hence requires qualified st...
Decomposition of sulphuric acid is a key step of sulphur based thermochemical cycles for hydrogen pr...
A basic concept for a receiver-reactor for solar sulfuric acid decomposition as the key step of ther...
Solar thermal hydrogen production with sulphur based thermochemical cycles can reach significantly h...
Process conditions for the direct solar decomposition of sulfur trioxide have been investigated and ...
The sulfuric acid dissociation reaction, via which the production of SO2 and O2 is achieved, is the ...
Decomposition of sulphuric acid is a key step of sulphur based thermochemical cycles for hydrogen pr...
The hybrid sulfur (HyS) cycle, coupled with concentrated solar power, is a high-potential candidate ...
Process conditions for the direct solar decomposition of sulfur trioxide have been investigated and ...
Sulfuric acid splitting is a key step of the hybrid sulfur cycle (HyS) for solar thermochemical hyd...
Hydrogen, being an environmentally friendly energy carrier is considered a future solution of the cu...
The sulfur-iodine (S-I) thermochemical water splitting cycle is one of the most studied cycles for h...
Westinghouse is currently under contract to DOE for technology development of the Sulfur Cycle, a hy...
Fossil energy carriers may be replaced in the future by hydrogen to save fossil resources and to avo...
Fossil energy carriers may be replaced in the future by hydrogen to save fossil resources and to avo...
Solar energy underlies significant diurnal and seasonal fluctuations and hence requires qualified st...
Decomposition of sulphuric acid is a key step of sulphur based thermochemical cycles for hydrogen pr...
A basic concept for a receiver-reactor for solar sulfuric acid decomposition as the key step of ther...
Solar thermal hydrogen production with sulphur based thermochemical cycles can reach significantly h...
Process conditions for the direct solar decomposition of sulfur trioxide have been investigated and ...
The sulfuric acid dissociation reaction, via which the production of SO2 and O2 is achieved, is the ...
Decomposition of sulphuric acid is a key step of sulphur based thermochemical cycles for hydrogen pr...
The hybrid sulfur (HyS) cycle, coupled with concentrated solar power, is a high-potential candidate ...
Process conditions for the direct solar decomposition of sulfur trioxide have been investigated and ...
Sulfuric acid splitting is a key step of the hybrid sulfur cycle (HyS) for solar thermochemical hyd...
Hydrogen, being an environmentally friendly energy carrier is considered a future solution of the cu...
The sulfur-iodine (S-I) thermochemical water splitting cycle is one of the most studied cycles for h...
Westinghouse is currently under contract to DOE for technology development of the Sulfur Cycle, a hy...