An approximate method for predicting the product distribution of fast reactions in stirred-tank reactors

The product distribution of two sets of multiple reactions were observed to depend upon the impeller speed and the feed location in a semibatch stirred-tank reactor as well as upon the viscosity. A new method to predict the product distribution of one reaction set based upon measurements for the oth...

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Published inThe Chemical engineering journal and the biochemical engineering journal Vol. 59; no. 3; pp. 293 - 296
Main Authors Bourne, J.R., Gholap, R.V.
Format Journal Article
LanguageEnglish
Published Lausanne Elsevier B.V 01.11.1995
Elsevier Sequoia
Subjects
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ISSN0923-0467
1873-3220
DOI10.1016/0923-0467(95)02963-X

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Abstract The product distribution of two sets of multiple reactions were observed to depend upon the impeller speed and the feed location in a semibatch stirred-tank reactor as well as upon the viscosity. A new method to predict the product distribution of one reaction set based upon measurements for the other and a micromixing model is developed, subject to approximations which are explained. Examples of how to apply the new method are given.
AbstractList The product distribution of two sets of multiple reactions were observed to depend upon the impeller speed and the feed location in a semibatch stirred-tank reactor as well as upon the viscosity. A new method to predict the product distribution of one reaction set based upon measurements for the other and a micromixing model is developed, subject to approximations which are explained. Examples of how to apply the new method are given.
Author Bourne, J.R.
Gholap, R.V.
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10.1016/0300-9467(89)85002-6
10.1021/ie00025a007
10.1002/ceat.270170206
10.1002/aic.690100618
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Issue 3
Keywords Fast reactions
Stirred-tank reactors
Product distribution
Fast reaction
Approximate method
Modeling
Semicontinuous
Stirred tank reactor
Concentration distribution
Language English
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Bourne, Kut, Lenzner, Maire (BIB6) 1990; 29
Corrsin (BIB8) 1964; 10
Gholap, Petrozzi, Bourne (BIB1) 1994; 17
Bourne, Yu (BIB7) 1994; 33
J.R. Bourne, R.V. Gholap and V.B. Rewatkar, Chem. Eng. J., in press.
Bourne, dell'Ava (BIB5) 1987; 65
Baldyga, Bourne, Baldyga, Bourne (BIB3) 1989; 42
Corrsin (10.1016/0923-0467(95)02963-X_BIB8) 1964; 10
Bourne (10.1016/0923-0467(95)02963-X_BIB6) 1990; 29
Baldyga (10.1016/0923-0467(95)02963-X_BIB3_2) 1989; 42
Bourne (10.1016/0923-0467(95)02963-X_BIB5) 1987; 65
Gholap (10.1016/0923-0467(95)02963-X_BIB1) 1994; 17
Baldyga (10.1016/0923-0467(95)02963-X_BIB4) 1988; 66
Bourne (10.1016/0923-0467(95)02963-X_BIB7) 1994; 33
Baldyga (10.1016/0923-0467(95)02963-X_BIB3_1) 1989; 42
10.1016/0923-0467(95)02963-X_BIB2
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SubjectTerms Applied sciences
Chemical engineering
Exact sciences and technology
Fast reactions
Product distribution
Reactors
Stirred-tank reactors
Title An approximate method for predicting the product distribution of fast reactions in stirred-tank reactors
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