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      The formation and degradation of active species during methanol conversion over protonated zeotype catalysts.

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          Abstract

          The methanol to hydrocarbon (MTH) process provides an efficient route for the conversion of carbon-based feedstocks into olefins, aromatics and gasoline. Still, there is room for improvements in product selectivity and catalytic stability. This task calls for a fundamental understanding of the formation, catalytic mechanism and degradation of active sites. The autocatalytic feature of the MTH process implies that hydrocarbons are active species on the one hand and deactivating species on the other hand. The steady-state performance of such species has been thoroughly studied and reviewed. However, the mechanism of formation of the initial hydrocarbon species (i.e.; the first C-C bond) and the evolution of active species into deactivating coke species have received less attention. Therefore, this review focuses on the significant progress recently achieved in these two stages by a combination of theoretical calculations, model studies, operando spectroscopy and catalytic tests.

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          Author and article information

          Journal
          Chem Soc Rev
          Chemical Society reviews
          1460-4744
          0306-0012
          Oct 21 2015
          : 44
          : 20
          Affiliations
          [1 ] Department of Chemistry, inGAP Centre of Research-based Innovation, University of Oslo, P.O. Box 1033 Blindern, 0315 Oslo, Norway. unni.olsbye@kjemi.uio.no.
          Article
          10.1039/c5cs00304k
          26185806
          e6e526d4-2d6f-4d8b-92fd-137288f1357e
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