Progress beyond state of the art:
• High-strength, hybrid catalytic/solar-irradiation-absorbing particles, with SO3 conversion > 60 % over >1000 h on stream.
• High catalyst-content, low pressure-drop, iron oxide catalytic foams with near-equilibrium SO3 conversion 89 % over 360 h on-stream.
• Prototype 500 kWth centrifugal receiver operated with inert particles on solar tower achieving particle outlet temperature of 925 °C.
• Development, construction and experimental demonstration of first-of-its-kind, particles-heated sulphuric acid splitting reactor.
• Prototype 300 kWth centrifugal receiver in solar simulator successfully demonstrating coupled operation potential with particles moving bed heat exchanger new prototype for thermal operation with water/steam through transportation of 500 kg of hot particles.
• New, improved, quantum mechanics-based chemical kinetics mechanisms for sulphur combustion, operated at power densities > 5 MW/m³
• Development, construction and experimental demonstration of first-of-its-kind, high power density sulphur burner compatible with gas turbine operation.
Expected results
• Construction and lab testing of sulphuric acid splitting particles-heated reactor and demonstration of its potential for coupled operation with centrifugal receiver.
• Experimental operation of prototype sulphur burner; relevant design model validation.
• Over-all plant process simulation and techno-economic analysis.
Potential impacts
• Higher process efficiency of solar thermal power plants operating with particle streams as heat transfer fluids due to higher operating temperatures.
• Significant costs reduction due to use of cheap solid sulphur as storage material, bypassing need of loss-intensive heat exchangers.
• Practically indefinite seasonal storage of solar thermal energy.
• Integration of power generation via “solar” sulphur into traditional chemical industries (e.g. sulphuric acid production, refineries), reduction of their dependency on fossil fuels.
• Technology transfer to solar energy-driven implementation of other endothermal reactions.