Integrated capture and solar-driven utilization of CO2 from flue gas and air

Roy, Souvik, Kar, Sayan, Rahaman, Motiar , Andrei, Virgil, Bhattacharjee, Subhajit and Reisner, Erwin (2023) Integrated capture and solar-driven utilization of CO2 from flue gas and air. Joule, 7 (7). ISSN 2542-4785

Full content URL: https://doi.org/10.1016/j.joule.2023.05.022

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Integrated capture and solar-driven utilization of CO2 from flue gas and air
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Abstract

Integration of carbon capture with utilization technologies can lead the way to a net-zero carbon economy. Nevertheless, direct chemical conversion of chemically captured CO2 remains challenging due to its thermodynamic stability. Here, we demonstrate CO2 capture from flue gas/air and its direct conversion into syngas under solar irradiation without any externally applied voltage. The system captures CO2 with an amine/hydroxide solution and photoelectrochemically converts it into syngas (CO:H2 1:2 (concentrated CO2), 1:4 (simulated flue gas), and 1:30 (air)) using a perovskite-based photocathode with an immobilized molecular Co-phthalocyanine catalyst. At the anode, plastic-derived ethylene glycol is oxidized into glycolic acid over a Cu26Pd74 alloy catalyst. The overall process uses flue gas/air as carbon source and discarded plastic waste as electron donor, opening avenues for integrated carbon-neutral/negative solar fuel and waste upcycling technologies.

Keywords:Direct Air Carbon Capture and Storage, CO2 reduction, Circular Economy
Subjects:F Physical Sciences > F200 Materials Science
J Technologies > J910 Energy Technologies
F Physical Sciences > F100 Chemistry
Divisions:College of Science > School of Chemistry
ID Code:54954
Deposited On:19 Jul 2023 14:45

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