Uncovering the reaction mechanism behind CoO as active phase for CO2 hydrogenation

Publication date

2022-01-14

Authors

Have, Iris C.ten
Kromwijk, Josepha J.G.ISNI 0000000506789775
Monai, M.ORCID 0000-0001-6945-4391ISNI 0000000492914765
Ferri, Davide
Sterk, Ellen B.ISNI 0000000492495740
Meirer, FlorianISNI 0000000137317800
Weckhuysen, B. M.ORCID 0000-0001-5245-1426ISNI 0000000110540180

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Document Type

Article
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cc_by

Abstract

Transforming carbon dioxide into valuable chemicals and fuels, is a promising tool for environmental and industrial purposes. Here, we present catalysts comprising of cobalt (oxide) nanoparticles stabilized on various support oxides for hydrocarbon production from carbon dioxide. We demonstrate that the activity and selectivity can be tuned by selection of the support oxide and cobalt oxidation state. Modulated excitation (ME) diffuse reflectance infrared Fourier transform spectroscopy (DRIFTS) reveals that cobalt oxide catalysts follows the hydrogen-assisted pathway, whereas metallic cobalt catalysts mainly follows the direct dissociation pathway. Contrary to the commonly considered metallic active phase of cobalt-based catalysts, cobalt oxide on titania support is the most active catalyst in this study and produces 11% C2+ hydrocarbons. The C2+ selectivity increases to 39% (yielding 104 mmol h−1 gcat−1 C2+ hydrocarbons) upon co-feeding CO and CO2 at a ratio of 1:2 at 250 °C and 20 bar, thus outperforming the majority of typical cobalt-based catalysts.

Keywords

General Chemistry, General Biochemistry,Genetics and Molecular Biology, General Physics and Astronomy

Citation

Have, I C T, Kromwijk, J J G, Monai, M, Ferri, D, Sterk, E B, Meirer, F & Weckhuysen, B M 2022, 'Uncovering the reaction mechanism behind CoO as active phase for CO 2 hydrogenation', Nature Communications, vol. 13, no. 1, 324, pp. 1-11. https://doi.org/10.1038/s41467-022-27981-x