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Properties of In Situ Obtained NiWS Nanocatalysts in Hydrogenation of Bicyclic Aromatics
A NiWS sulfide catalyst was generated in situ by decomposition of [(Met)3S]2Ni(WS4)2 as a precursor, and characterized by transmission electron microscopy and X-ray photoelectron spectroscopy. The obtained catalyst is active in hydrogenation of bicyclic aromatics. Heating and extending the reaction time were found to enhance the substrate conversion; the catalyst activity was further increased by adding a sulfiding agent. At a substrate/W molar ratio of 250/1, the conversion was 25% without the addition of the sulfiding agent. With the sulfiding agent it reached 65%.
Properties of In Situ Obtained NiWS Nanocatalysts in Hydrogenation of Bicyclic Aromatics
A NiWS sulfide catalyst was generated in situ by decomposition of [(Met)3S]2Ni(WS4)2 as a precursor, and characterized by transmission electron microscopy and X-ray photoelectron spectroscopy. The obtained catalyst is active in hydrogenation of bicyclic aromatics. Heating and extending the reaction time were found to enhance the substrate conversion; the catalyst activity was further increased by adding a sulfiding agent. At a substrate/W molar ratio of 250/1, the conversion was 25% without the addition of the sulfiding agent. With the sulfiding agent it reached 65%.
Properties of In Situ Obtained NiWS Nanocatalysts in Hydrogenation of Bicyclic Aromatics
Pet. Chem.
Kuchinskaya, T. S. (author) / Kniazeva, M. I. (author) / Mamian, L. G. (author) / Ziniatullina, A. F. (author) / Panyukova, D. I. (author) / Maximov, A. L. (author)
Petroleum Chemistry ; 62 ; 1285-1290
2022-11-01
6 pages
Article (Journal)
Electronic Resource
English
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