Integrated process design and control of divided‐wall distillation columns using molecular tracking

Author:

Ramírez‐Márquez César1,Sánchez‐Ramírez Eduardo2ORCID,Nazemzadeh Nima3ORCID,Bisgaard Thomas4,Segovia‐Hernández Juan Gabriel2,Abildskov Jens4ORCID,Mansouri Seyed Soheil4ORCID

Affiliation:

1. Chemical Engineering Department Universidad Michoacana de San Nicolás de Hidalgo Morelia Michoacan Mexico

2. Departamento de Ingeniería Química, División de Ciencias Naturales y Exactas Universidad de Guanajuato Guanajuato Mexico

3. Knowledge Hub Zealand Kalundborg Denmark

4. Department of Chemical and Biochemical Engineering Technical University of Denmark Kgs. Lyngby Denmark

Abstract

AbstractThis work explores the dynamic and control behavior of dividing wall distillation columns from two different steady‐state design approaches (molecular tracking and optimization method) for three different mixtures. The controllability of the six design cases was evaluated using singular value decomposition and the closed‐loop performance was evaluated using integral absolute error in Aspen Dynamics. The results demonstrate that the side‐draw location obtained by molecular tracking (MT) provides optimal controllability. As a result, there is a slight advantage in control properties while obtaining designs by reducing the time to find the optimal solution through the MT method.

Publisher

Wiley

Subject

General Chemical Engineering,Environmental Engineering,Biotechnology

Reference45 articles.

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2. Thermodynamically optimal method for separating multicomponent mixtures;Petlyuk FB;Int Chem Eng,1965

3. Complex distillation arrangements: Extending the petlyuk ideas

4. Dividing Wall Columns in the Chemical Industry

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