Electrical Reverse Shift: Sustainable CO 2 Valorization for Industrial Scale

Utilization of CO is a requirement for a sustainable production of carbon-based chemicals. The reverse water-gas-shift (RWGS) can valorize CO by reaction with hydrogen to produce a synthesis gas compatible with existing industrial infrastructure. Fully electrified reverse water-gas-shift (eRWGS™) wa...

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Veröffentlicht in:Angewandte Chemie International Edition 2022-02, Vol.61 (8), p.e202109696
Hauptverfasser: Thor Wismann, Sebastian, Larsen, Kasper-Emil, Mølgaard Mortensen, Peter
Format: Artikel
Sprache:eng
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Zusammenfassung:Utilization of CO is a requirement for a sustainable production of carbon-based chemicals. The reverse water-gas-shift (RWGS) can valorize CO by reaction with hydrogen to produce a synthesis gas compatible with existing industrial infrastructure. Fully electrified reverse water-gas-shift (eRWGS™) was achieved using integrated ohmic heating and a nickel-type catalyst at industrially relevant conditions. Using a feed of H  : CO in a ratio of 2.25 at 10 barg, utilizing high temperature operation at 1050 °C allowed for production of a synthesis gas with a H /CO ratio of 2.0 and no detectable methane, ideal for production of sustainable fuel by e.g. the Fischer-Tropsch synthesis. Facilitating RWGS through CH as intermediate was found superior to the selective RWGS route, due to higher activity and suppression of carbon formation. The eRWGS™ catalyst is found to provide a preferential emissions-free route for production of synthesis gas for any relevant H /CO ratio, enabling production of sustainable carbon-based chemicals from CO and renewable electricity with high hydrogen and carbon efficiency.
ISSN:1433-7851
1521-3773
DOI:10.1002/anie.202109696