4.8 Article

Reaction kinetics study of ethylene oligomerization into linear olefins over carbon-supported cobalt catalysts

期刊

JOURNAL OF CATALYSIS
卷 404, 期 -, 页码 954-963

出版社

ACADEMIC PRESS INC ELSEVIER SCIENCE
DOI: 10.1016/j.jcat.2021.05.035

关键词

Ethylene oligomerization; Linear olefin; Cobalt on carbon catalyst; Polyethylene; Cossee-Arlman

资金

  1. ExxonMobil

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Ethylene oligomerization over carbon-supported cobalt catalysts at 200 degrees C selectively produces linear olefins and linear alpha olefins, with increasing the catalyst pretreatment temperature enhancing catalytic activity. However, cobalt metal supported on carbon deactivates during the reaction, likely due to higher rate of polyethylene formation, and the product distribution follows a Schulz-Flory distribution. The reaction is first order with respect to ethylene partial pressure, suggesting a mechanism involving the reaction of ethylene with adsorbed olefins on a highly covered surface.
Ethylene oligomerization over carbon-supported cobalt catalysts at 200 degrees C selectively produces linear olefins (>80% linearity up to C-12 olefins at < 48% conversion) and linear alpha olefins (LAOS) (>30% LAO isomer distribution up to C-8 olefins at < 10% conversion). Increasing the catalyst pretreatment temperature from 230 to 560 degrees C in argon prior to a reaction reduces cobalt oxide to cobalt metal and increases the catalytic activity. Cobalt metal supported on carbon deactivates during the reaction, likely due to higher rate of polyethylene formation which decreases the catalytic activity. The product distribution follows a Schulz-Flory distribution. The reaction is first order with respect to ethylene partial pressure, suggesting a mechanism where ethylene reacts with adsorbed olefins on a surface that is highly covered with olefins. (C) 2021 Elsevier Inc. All rights reserved.

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