2008Handbook of Heterogeneous CatalysisRequires access

Dehydrogenation of Ethylbenzene

K. Kochloefl, Martin Muhler

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Abstract

Abstract The sections in this article are Introduction Thermodynamics By‐Products Effects of Diluents, Especially Steam Catalysts Development ofEDBHCatalysts Role of Potassium Dehydrogenation of Ethylbenzene on Well‐Defined Iron Oxide Model Catalysts Deactivation ofKFeCatalysts Promoters ofKFeCatalysts Kinetics Application of Membrane Reactors Dehydrogenation of Ethylbenzene‐Related Hydrocarbons Alternative Routes for the Production of Styrene Industrial Processes and Commercial Catalysts AdiabaticEBDH IsothermalEBDH SMARTEBDHProcess

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Abstract The sections in this article are Introduction Thermodynamics By‐Products Effects of Diluents, Especially Steam Catalysts Development ofEDBHCatalysts Role of Potassium Dehydrogenation of Ethylbenzene on Well‐Defined Iron Oxide Model Catalysts Deactivation ofKFeCatalysts Promoters ofKFeCatalysts Kinetics Application of Membrane Reactors Dehydrogenation of Ethylbenzene‐Related Hydrocarbons Alternative Routes for the Production of Styrene Industrial Processes and Commercial Catalysts AdiabaticEBDH IsothermalEBDH SMARTEBDHProcess

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Available abstract

Abstract The sections in this article are Introduction Thermodynamics By‐Products Effects of Diluents, Especially Steam Catalysts Development ofEDBHCatalysts Role of Potassium Dehydrogenation of Ethylbenzene on Well‐Defined Iron Oxide Model Catalysts Deactivation ofKFeCatalysts Promoters ofKFeCatalysts Kinetics Application of Membrane Reactors Dehydrogenation of Ethylbenzene‐Related Hydrocarbons Alternative Routes for the Production of Styrene Industrial Processes and Commercial Catalysts AdiabaticEBDH IsothermalEBDH SMARTEBDHProcess

Key concepts: Dehydrogenation, Ethylbenzene, Catalysis, Isothermal process, Styrene, Chemistry, Chemical engineering, Inorganic chemistry

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