Daniel Marxer
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View article: Solar thermochemical reactor technology for splitting CO2
Solar thermochemical reactor technology for splitting CO2 Open
The solar-driven thermochemical splitting of CO2 into separate streams of CO and O2 is experimentally demonstrated with total selectivity, long-term stability, high mass conversion, and promising solar-to-fuel energy efficiency. This bench…
View article: Solar thermochemical splitting of CO<sub>2</sub> into separate streams of CO and O<sub>2</sub> with high selectivity, stability, conversion, and efficiency
Solar thermochemical splitting of CO<sub>2</sub> into separate streams of CO and O<sub>2</sub> with high selectivity, stability, conversion, and efficiency Open
Solar reactor technology for splitting CO2via a 2-step thermochemical redox cycle using concentrated solar radiation.
View article: Solar kerosene from H2O and CO2
Solar kerosene from H2O and CO2 Open
The entire production chain for renewable kerosene obtained directly from sunlight, H2O, and CO2 is experimentally demonstrated. The key component of the production process is a high-temperature solar reactor containing a reticulated porou…