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  4. Trajectory Following for the Optimization of a Batch Polymerization Reactor
 
conference paper

Trajectory Following for the Optimization of a Batch Polymerization Reactor

Welz, Carsten
•
François, Grégory  
•
Srinivasan, Balasubrahmanya  
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2004
BatchPro Symposium
BatchPro Symposium

This paper considers the minimization of batch time for an industrial inverse-emulsion polymerization reactor in the presence of uncertainty. A first optimization study resulted in the current industrial practice of a semi-adiabatic profile (isothermal operation followed by an adiabatic one), where the switching time between the two modes of operation is updated to meet the terminal constraint on reactor temperature, as well as a constraint on residual raw material levels. However, such a procedure requires several batches for convergence and, in addition, cannot compensate the effect of the within-run disturbances. As an alternative, we propose following a temperature trajectory with respect to conversion, for which the conversion is estimated on-line based on temperature measurements. Simulation results show an improved performance compared to the run-to-run strategy, with the additional advantage that this reduction is obtained immediately, i.e. without having to wait for run-to-run convergence.

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Type
conference paper
Author(s)
Welz, Carsten
François, Grégory  
Srinivasan, Balasubrahmanya  
Bonvin, Dominique  
Hunkeler, David
Date Issued

2004

Published in
BatchPro Symposium
Start page

153

End page

159

Subjects

Dynamic optimization

•

Measurement-based optimization

•

Batch reactor

•

Inverse-emulsion polymerization

•

Polyacrylamide

URL

URL

http://batchpro.cperi.certh.gr/
Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
LA  
Event nameEvent placeEvent date
BatchPro Symposium

Greece

2004

Available on Infoscience
November 26, 2004
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/176787
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