Optimal design and operation of multivessel batch distillation with fixed product demand. Modelling, simulation and optimisation of design and operation parameters in multivessel batch distillation under fixed product demand scenario and strict product specifications using simple dynamic model in gPROMS.

Increased interest in unconventional batch distillation column configurations offers new opportunities for increasing the flexibility and energy efficiency of batch distillation. One configuration of particular interest is multivessel batch distillation column, which can be viewed as a generalizatio...

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Main Author: Mahmud, Mohamed Taher Mustafa
Other Authors: Mujtaba, Iqbal M.
Language:en
Published: University of Bradford 2010
Subjects:
Online Access:http://hdl.handle.net/10454/4435
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spelling ndltd-BRADFORD-oai-bradscholars.brad.ac.uk-10454-44352019-09-21T03:01:53Z Optimal design and operation of multivessel batch distillation with fixed product demand. Modelling, simulation and optimisation of design and operation parameters in multivessel batch distillation under fixed product demand scenario and strict product specifications using simple dynamic model in gPROMS. Mahmud, Mohamed Taher Mustafa Mujtaba, Iqbal M. Conventional batch distillation Multivessel batch distillation Design Operation Product sequence Profitability Modelling Optimisation Increased interest in unconventional batch distillation column configurations offers new opportunities for increasing the flexibility and energy efficiency of batch distillation. One configuration of particular interest is multivessel batch distillation column, which can be viewed as a generalization of all previously studied batch column configuration. In this work, for the first time the optimal design and operation tasks are developed for multivessel batch distillation with strict product specifications under fixed product demand. Also, in this work, two different operation schemes defined as STN (State Task Network) in terms of the option and numbers of off-cuts were considered for binary and ternary separation. Both the vapour load and number of stages in each column section together with the production sequence are optimised to achieve maximum profit function. The performance of the multivessel batch distillation column is evaluated against the performance of conventional batch column with a simple dynamic model using binary and ternary mixtures. It has been found that profitability improves with the multivessel system in both separations. gPROMS, a user-friendly, software is used for the modeling, simulation, and optimisation. 2010-09-28T15:01:09Z 2010-09-28T15:01:09Z 2010-09-28T15:01:09Z 2010 Thesis doctoral MPhil http://hdl.handle.net/10454/4435 en <a rel="license" href="http://creativecommons.org/licenses/by-nc-nd/3.0/"><img alt="Creative Commons License" style="border-width:0" src="http://i.creativecommons.org/l/by-nc-nd/3.0/88x31.png" /></a><br />The University of Bradford theses are licenced under a <a rel="license" href="http://creativecommons.org/licenses/by-nc-nd/3.0/">Creative Commons Licence</a>. University of Bradford School of Engineering, Design and Technology
collection NDLTD
language en
sources NDLTD
topic Conventional batch distillation
Multivessel batch distillation
Design
Operation
Product sequence
Profitability
Modelling
Optimisation
spellingShingle Conventional batch distillation
Multivessel batch distillation
Design
Operation
Product sequence
Profitability
Modelling
Optimisation
Mahmud, Mohamed Taher Mustafa
Optimal design and operation of multivessel batch distillation with fixed product demand. Modelling, simulation and optimisation of design and operation parameters in multivessel batch distillation under fixed product demand scenario and strict product specifications using simple dynamic model in gPROMS.
description Increased interest in unconventional batch distillation column configurations offers new opportunities for increasing the flexibility and energy efficiency of batch distillation. One configuration of particular interest is multivessel batch distillation column, which can be viewed as a generalization of all previously studied batch column configuration. In this work, for the first time the optimal design and operation tasks are developed for multivessel batch distillation with strict product specifications under fixed product demand. Also, in this work, two different operation schemes defined as STN (State Task Network) in terms of the option and numbers of off-cuts were considered for binary and ternary separation. Both the vapour load and number of stages in each column section together with the production sequence are optimised to achieve maximum profit function. The performance of the multivessel batch distillation column is evaluated against the performance of conventional batch column with a simple dynamic model using binary and ternary mixtures. It has been found that profitability improves with the multivessel system in both separations. gPROMS, a user-friendly, software is used for the modeling, simulation, and optimisation.
author2 Mujtaba, Iqbal M.
author_facet Mujtaba, Iqbal M.
Mahmud, Mohamed Taher Mustafa
author Mahmud, Mohamed Taher Mustafa
author_sort Mahmud, Mohamed Taher Mustafa
title Optimal design and operation of multivessel batch distillation with fixed product demand. Modelling, simulation and optimisation of design and operation parameters in multivessel batch distillation under fixed product demand scenario and strict product specifications using simple dynamic model in gPROMS.
title_short Optimal design and operation of multivessel batch distillation with fixed product demand. Modelling, simulation and optimisation of design and operation parameters in multivessel batch distillation under fixed product demand scenario and strict product specifications using simple dynamic model in gPROMS.
title_full Optimal design and operation of multivessel batch distillation with fixed product demand. Modelling, simulation and optimisation of design and operation parameters in multivessel batch distillation under fixed product demand scenario and strict product specifications using simple dynamic model in gPROMS.
title_fullStr Optimal design and operation of multivessel batch distillation with fixed product demand. Modelling, simulation and optimisation of design and operation parameters in multivessel batch distillation under fixed product demand scenario and strict product specifications using simple dynamic model in gPROMS.
title_full_unstemmed Optimal design and operation of multivessel batch distillation with fixed product demand. Modelling, simulation and optimisation of design and operation parameters in multivessel batch distillation under fixed product demand scenario and strict product specifications using simple dynamic model in gPROMS.
title_sort optimal design and operation of multivessel batch distillation with fixed product demand. modelling, simulation and optimisation of design and operation parameters in multivessel batch distillation under fixed product demand scenario and strict product specifications using simple dynamic model in gproms.
publisher University of Bradford
publishDate 2010
url http://hdl.handle.net/10454/4435
work_keys_str_mv AT mahmudmohamedtahermustafa optimaldesignandoperationofmultivesselbatchdistillationwithfixedproductdemandmodellingsimulationandoptimisationofdesignandoperationparametersinmultivesselbatchdistillationunderfixedproductdemandscenarioandstrictproductspecificationsusingsimpledynamicmodel
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