Chemical reactor analysis and design / Gilbert F. Froment, Kenneth B. Bischoff Froment, Gilbert F · View online · Borrow · Buy. Chemical reactor analysis and design. Front Cover. Gilbert F. Froment, Kenneth B. Bischoff. Wiley, – Science – pages. Chemical reactor analysis and design. Front Cover. Gilbert F. Froment, Kenneth B. Bischoff. Wiley, – Technology & Engineering – pages.

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Archived from the original on 10 December February Learn how and when to remove this template message. BischoffJuray De Wilde Limited preview – Edward StevensIan D. Vanrolleghem Limited preview – Please remove or replace such wording and instead of making proclamations about a subject’s importance, use facts and attribution to demonstrate that importance.

Wiley- Science – pages. Chemical Reactor Analysis and Design, 2nd Edition”. He studied this phenomenon on the three levels: A difficult problem relates to the transport inside the particle, and this has actively been fromdnt by Froment since the s when the catalyst particle was still dealt with as a single pore or at best as a pseudocontinuum.

Chemical reactor analysis and design. Another major area where Froment has been active is thermal cracking for olefins production, an operation of tremendous industrial importance, providing the key building blocks for the petrochemical and chemical industries. Contents Kinetics of Heterogeneous Catalytic Reactions. His research concentrated on the application of the Single Event concept, which he had developed in Belgium, to the complex refining processes such as FCC, hydrocracking, alkylation and petrochemical processes such as MTO methanol-to-olefins and oligomerization.


Chemical reactor analysis and design / Gilbert F. Froment, Kenneth B. Bischoff – Details – Trove

Chemical Reactor Analysis and Design, 3rd Edition”. Since he concentrated on the kinetics and design of the Fisher-Tropsch process. Gilbert Froment achieved his chemical engineering degree in from the University of Gent. FromentKenneth B.

Edward StevensIan D. This page was last edited on 5 Marchat Continuing this work through the decades led to more advanced and detailed reaction kinetics integrated within reactor models with transport phenomena.

This is the Second Edition of the standard text on chemical reaction engineering, beginning with basic definitions and fundamental principles and continuing all the way to practical applications, emphasizing real-world aspects of industrial practice.

Views Read Edit View history. Gilbert Froment has been active in professional organizations and supportive of the chemical reaction engineering community. Frmoent 28 December Kenneth Bischoff, Froment published his highly influential textbook entitled, “Chemical Reactor Analysis and Design,” in InFroment was awarded the Neal R. Chemical reactor analysis and design. Includes updated coverage of computer modeling methods and many new worked examples.


Gilbert Froment’s career and influence bridges the gap between academic kinetic and chemical reaction engineering studies, and application of that fundamental science to problems fromen industrial relevance. Froment has established a record of excellence for instruction of chemical engineering and reaction engineering.

D students and a number of postdocs from all over the world. Froment started research in this area already instressing the derivation of accurate kinetic data from experimentation in tubular flow reactors and developing the equivalent reactor volume concept introduced by Hougen and Watson.

Gilbert Froment

Most of the examples use real kinetic data from processes of industrial importance. Account Options Sign in. From inside the book.

From Wikipedia, the free encyclopedia. The impact of the textbook has been attributed to the extensive background of Froment and Bischoff, which provides context into the connections between the macro- and micro-scale phenomena of transport and reaction engineering.

Chemical reactor analysis and design Gilbert F. The two main sections cover applied or engineering kinetics, reactor analysis and design.

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