Modelling and Simulation of Multi-vessel Batch Distillation Column

Market demand of specialty chemicals, biochemical and pharmaceuticals are increasing. Batch distillation is considered as the most suitable distillation operation to separate all those chemicals due to its flexibility, operability and lower capital cost. Multi-vessel batch distillation is an improve...

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Main Authors: S.N. Hazwani, A. Hisyam, B.A. Aziz
Format: Article
Language:English
Published: AIDIC Servizi S.r.l. 2017-03-01
Series:Chemical Engineering Transactions
Online Access:https://www.cetjournal.it/index.php/cet/article/view/1601
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spelling doaj-ce3d43bf45244eddbc49c4ee0841c41f2021-02-18T21:10:32ZengAIDIC Servizi S.r.l.Chemical Engineering Transactions2283-92162017-03-015610.3303/CET1756190Modelling and Simulation of Multi-vessel Batch Distillation ColumnS.N. HazwaniA. HisyamB.A. AzizMarket demand of specialty chemicals, biochemical and pharmaceuticals are increasing. Batch distillation is considered as the most suitable distillation operation to separate all those chemicals due to its flexibility, operability and lower capital cost. Multi-vessel batch distillation is an improvement of less energy efficient batch distillation. This paper focuses on modelling and simulation of multi vessel batch distillation column under total reflux operation for separating a ternary mixture. Total reflux operation leads to production of high purity product. In industry, the modelling and simulation play a very important role. It can help with the description of the system and the choice of the optimal control strategy. The main objective of this paper is to determine the mathematical model of multi-vessel batch distillation which usually precedes the design of the controller. Mathematical model is firstly developed based on the first principles and ordinary differential equations (ODE). MATLAB Simulink is employed to perform the simulation. The vessel holdup is set based on product purity. The model is expected to produce stable response with the changing inputs variables and produce high purity product. The control strategy is determined.https://www.cetjournal.it/index.php/cet/article/view/1601
collection DOAJ
language English
format Article
sources DOAJ
author S.N. Hazwani
A. Hisyam
B.A. Aziz
spellingShingle S.N. Hazwani
A. Hisyam
B.A. Aziz
Modelling and Simulation of Multi-vessel Batch Distillation Column
Chemical Engineering Transactions
author_facet S.N. Hazwani
A. Hisyam
B.A. Aziz
author_sort S.N. Hazwani
title Modelling and Simulation of Multi-vessel Batch Distillation Column
title_short Modelling and Simulation of Multi-vessel Batch Distillation Column
title_full Modelling and Simulation of Multi-vessel Batch Distillation Column
title_fullStr Modelling and Simulation of Multi-vessel Batch Distillation Column
title_full_unstemmed Modelling and Simulation of Multi-vessel Batch Distillation Column
title_sort modelling and simulation of multi-vessel batch distillation column
publisher AIDIC Servizi S.r.l.
series Chemical Engineering Transactions
issn 2283-9216
publishDate 2017-03-01
description Market demand of specialty chemicals, biochemical and pharmaceuticals are increasing. Batch distillation is considered as the most suitable distillation operation to separate all those chemicals due to its flexibility, operability and lower capital cost. Multi-vessel batch distillation is an improvement of less energy efficient batch distillation. This paper focuses on modelling and simulation of multi vessel batch distillation column under total reflux operation for separating a ternary mixture. Total reflux operation leads to production of high purity product. In industry, the modelling and simulation play a very important role. It can help with the description of the system and the choice of the optimal control strategy. The main objective of this paper is to determine the mathematical model of multi-vessel batch distillation which usually precedes the design of the controller. Mathematical model is firstly developed based on the first principles and ordinary differential equations (ODE). MATLAB Simulink is employed to perform the simulation. The vessel holdup is set based on product purity. The model is expected to produce stable response with the changing inputs variables and produce high purity product. The control strategy is determined.
url https://www.cetjournal.it/index.php/cet/article/view/1601
work_keys_str_mv AT snhazwani modellingandsimulationofmultivesselbatchdistillationcolumn
AT ahisyam modellingandsimulationofmultivesselbatchdistillationcolumn
AT baaziz modellingandsimulationofmultivesselbatchdistillationcolumn
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