Determination of the Pore Topology of Zeolite IM-5 by Means of Catalytic Test Reactions and Hydrocarbon Adsorption Measurements

The pore topology of a recently synthesized zeolite IM-5 has been determined by means of catalytic test reactions, i.e., n-decane hydroisomerization–cracking, m-xylene isomerization–disproportionation, n-hexadecane isodewaxing, and adsorption–microcalorimetry of molecules with different sizes and sh...

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Veröffentlicht in:Journal of catalysis 2000-01, Vol.189 (2), p.382-394
Hauptverfasser: Corma, A., Chica, A., Guil, J.M., Llopis, F.J., Mabilon, G., Perdigón-Melón, J.A., Valencia, S.
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Sprache:eng
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Zusammenfassung:The pore topology of a recently synthesized zeolite IM-5 has been determined by means of catalytic test reactions, i.e., n-decane hydroisomerization–cracking, m-xylene isomerization–disproportionation, n-hexadecane isodewaxing, and adsorption–microcalorimetry of molecules with different sizes and shapes (n-hexane, toluene, m-xylene, and 1,3,5 trimethylbenzene). It has been found that the channel network consists of a system of unidirectional 10 MR with lobes or side pockets, or crossing 10 membered ring pores with a pore diameter somewhat smaller than those in ZSM-5. This structure offers interesting shape selectivity features for catalytic reactions.
ISSN:0021-9517
1090-2694
DOI:10.1006/jcat.1999.2718