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Shape Selective Chemistries with Modified Mordenite Zeolites
Authors:Juan M. Garcés  Michael M. Olken  G. John Lee  Garry R. Meima  Pierre A. Jacobs  Johan A. Martens
Affiliation:(1) The Dow Chemical Company, Midland, MI 48640, USA;(2) JMG LLC, 1106 W. Sugnet Rd, Midland, MI 48640, USA;(3) Dow Chemical, Chemistry & Catalysis R&D, 1776 bldg, Midland, MI 48674, USA;(4) Dow Benelux N.V., Chemistry & Catalysis R&D, P.O. Box 48, 4530 Terneuzen, The Netherlands;(5) Laboratorium voor Oppervlaktechemie, Katholieke Universitat Leuven, Kardinaal Mercierlaan 92, 3030 Leuven, Belgium
Abstract:This is a review of work carried at Dow Chemical on the design and characterization of novel mordenite catalysts with a unique micro and meso-porous structure characterized by a variety of methods including, TEM, BET surface area and pore size distribution, and n-decane hydro-conversion. The catalytic performance of these catalysts in shape selective reactions is illustrated with results from n-decane hydro-conversion and applications to alkylation and trans-alkylation reactions of mono and polynuclear aromatic hydrocarbons and other chemistries. Juan M. Garcés and G. John Lee both retired from The Dow Chemical Company.
Keywords:Mordenite  3 DDM catalyst  Mesoporosity  Bifunctional hydro-conversion of n-decane  Alkylation   Trans-alkylation mono  Polynuclear aromatics
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