Description
By (author) Levenspiel Octave
Short /annotation:
Chemical reaction engineering is concerned with the exploitation of chemical reactions on a commercial scale. Ita s goal is the successful design and operation of chemical reactors. This text emphasizes qualitative arguments, simple design methods, graphical procedures, and frequent comparison of capabilities of the major reactor types.
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Chemical Reaction Engineering, Third Edition helps students learn how to answer reactor design questions reliably and effectively. To accomplish this, the text emphasizes qualitative arguments, simple design methods, graphical procedures, and frequent comparison of capabilities of major reactor types.This approach helps students develop a strong intuitive sense for good design.
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Die 3. überarbeitete Auflage ist ein zuverlässiger und effektiver Fragenkatalog für Studenten. Mit dem Schwerpunkt auf qualitativen Argumenten, einfachen Designmethoden, graphischen Verfahren und der Leistungsstärke der wichtigsten Reaktortypen wird dem Lernenden ein Gefühl für gutes Design vermittelt. Mit über 400 Problemstellungen – 75% sind neues Material – und mehr als 80 anschaulichen Beispielen. Die Vermittlung des Stoffes erfolgt fortschreitend vom Einfachen zum Komplexen. Wo erforderlich, wird erklärt, warum bestimmte Annahmen getroffen wruden, warum ein alternativer Ansatz nicht angewandt wurde und welche Grenzen in echten Situationen bestehen. Ebenso wird eine Reihe neuer Themen behandelt, wie z.B. biochemische Systeme, Reaktoren mit quasi-flüssigen Brennstoffen, Gas-/Flüssigreaktoren etc. (09/98)
Table of contents:
Partial table of contents:
Overview of Chemical Reaction Engineering.
HOMOGENEOUS REACTIONS IN IDEAL REACTORS.
Introduction to Reactor Design.
Design for Single Reactions.
Design for Parallel Reactions.
Potpourri of Multiple Reactions.
NON IDEAL FLOW.
Compartment Models.
The Dispersion Model.
The Tank-in-Series Model.
REACTIONS CATALYZED BY SOLIDS.
Solid Catalyzed Reactions.
The Packed Bed Catalytic Reactor.
Deactivating Catalysts.
HETEROGENEOUS REACTIONS.
Fluid-Fluid Reactions: Kinetics.
Fluid-Particle Reactions: Design.
BIOCHEMICAL REACTIONS.
Enzyme Fermentation.
Substrate Limiting Microbial Fermentation.
Product Limiting Microbial Fermentation.
Appendix.
Index.
Biographical note:
Octave Levenspiel was a professor of chemical engineering at Oregon State University. His principal interest was chemical reaction engineering, and he was the author of a major textbook Chemical Reaction Engineering as well as numerous research publications.
Feature:
Overview of Chemical Reaction EngineeringKinetics of Homogeneous ReactionsInterpretation of Batch Reactor DataIntroduction to Reactor DesignIdeal Reactors for a Single ReactionDesign for Single ReactionsDesign for Parallel ReactionsPotpourri of Multiple ReactionsTemperature and Pressure EffectsChoosing the Right Kind of ReactorIntroduction to Non-Ideal FlowCompartment ModelsThe Dispersion ModelThe Tanks-in-Series ModelThe Convection Model for Laminar FlowEarliness of Mixing, Segregation and RTDHeterogeneous Reactions – IntroductionSolid Catalyzed ReactionsThe Packed Bed Catalytic ReactorReactors with Suspended Solid Catalyst: Fluidized of VariousTypesDeactivation CatalystG/L Reactions on Solid Catalyst: Trickle Beds, Slurry Reactors,Three Phase Fluidized BedsFluid-Fluid Reactions: KineticsFluid-Fluid Reactions: DesignFluid-Particle Reactions: KineticsFluid-Particle Reactions: DesignEnzyme Fermentati






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