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Structured Catalysts and Reactors
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Table of contents:The present and the future of structured catalysts - an overview. Reactors with structured catalysts where no convective mass transfer over a cross section of the reactor occurs (monolithic catalysts = honeycomb catalysts): ceramic catalyst supports for casoline fuel; metal and coated-metal catalysts; autocatalysts - past, present and future; monolithic catalysts for the selective reduction of NOx with NH3 from stationary monolith reactors; unconventional utilization of monolithicOffering discussions of structured catalysts and up-to-date approaches to catalytic processes, th...
Table of contents:
The present and the future of structured catalysts - an overview. Reactors with structured catalysts where no convective mass transfer over a cross section of the reactor occurs (monolithic catalysts = honeycomb catalysts): ceramic catalyst supports for casoline fuel; metal and coated-metal catalysts; autocatalysts - past, present and future; monolithic catalysts for the selective reduction of NOx with NH3 from stationary monolith reactors; unconventional utilization of monolithic
Offering discussions of structured catalysts and up-to-date approaches to catalytic processes, this work describes monolithic, membrane and arranged catalysts for use in two- and three-phase processes. It examines catalyst preparation, characterization, process development, modelling and optimization, as well as reactor design and operation.
The present and the future of structured catalysts - an overview. Reactors with structured catalysts where no convective mass transfer over a cross section of the reactor occurs (monolithic catalysts = honeycomb catalysts): ceramic catalyst supports for casoline fuel; metal and coated-metal catalysts; autocatalysts - past, present and future; monolithic catalysts for the selective reduction of NOx with NH3 from stationary monolith reactors; unconventional utilization of monolithic
Offering discussions of structured catalysts and up-to-date approaches to catalytic processes, this work describes monolithic, membrane and arranged catalysts for use in two- and three-phase processes. It examines catalyst preparation, characterization, process development, modelling and optimization, as well as reactor design and operation.