JOURNAL OF CHEMICAL ENGINEERING OF JAPAN
Online ISSN : 1881-1299
Print ISSN : 0021-9592
Chemical Reaction Engineering
Analysis and Optimization of a CSTR by Direct Entropy Minimization
Joao ManziEd Carrazzoni
Author information
JOURNAL RESTRICTED ACCESS

2008 Volume 41 Issue 3 Pages 194-199

Details
Abstract

Determination of optimal operating conditions of chemical processes is difficult. Minimization of entropy generation is a simpler option for standard, either numerical or analytical, optimization techniques. This paper illustrates how entropy generation minimization can simplify the analysis and optimization of the operation of a CSTR. A typical irreversible, exothermic, first order chemical reaction taken from the literature has been considered. For this system, the entropy generation rate has been derived based on mass, energy and entropy balances. Using analytical derivatives it was found that entropy generation can be minimized if the inlet stream temperature is the same as the operating temperature of the reactor. Additionally, it was easy to draw from the analysis the operating temperature that achieved maximum conversion. Finally, the procedure proposed was compared with an indirect entropy minimization method, and shown to be simpler and clearer.

Content from these authors
© 2008 The Society of Chemical Engineers, Japan
Previous article Next article
feedback
Top