Dehydrocyclization Controlling Site in Bifunctional Reforming Catalysts
Author:
Publisher
Elsevier BV
Subject
General Engineering
Reference12 articles.
1. The dehydrocyclization-controlling site in bifunctional reforming catalysts
2. The effects of rhenium and sulfur on the activity maintenance and selectivity of platinum/alumina hydrocarbon conversion catalysts
3. The effects of rhenium and sulfur on the maintenance of activity and selectivity of platinum/alumina hydrocarbon conversion catalysts II. Experiments at elevated pressure
4. (Houdriforming Reactions) Catalytic Mechanism
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1. Reforming-Heterogeneous;Encyclopedia of Catalysis;2010-09-15
2. Alumina-Supported Trirhenium Clusters: Stable High-Temperature Catalysts for Methylcyclohexane Conversion;The Journal of Physical Chemistry C;2008-02-13
3. Some Aspects of the Mechanisms of Catalytic Reforming Reactions;Industrial & Engineering Chemistry Research;1997-08-01
4. Hydrocarbons reforming on PtReS/Al2O3Cl coked in a commercial reactor;Applied Catalysis;1989-08
5. Reforming-type catalysis with zeolite-supported platinum-rhenium;Energy & Fuels;1989-07-01
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