Embedding Aspen Custom Modeller for Bioethanol Fermentation Into the Aspen Plus Flowsheet Simulator

Commercial processes used to produce first generation biofuels are mature. In this study, a kinetic model using the equation-oriented process modelling tool Aspen Custom Modeller (ACM) was embedded into the process simulation environment of Aspen Plus and used to simulate industrial bioreactors with...

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Main Authors: Nosaibeh Nosrati-Ghods, Muven Naidoo, Susan T. L. Harrison, Adeniyi J. Isafiade, Siew Leng Tai
Format: Article
Language:English
Published: AIDIC Servizi S.r.l. 2020-06-01
Series:Chemical Engineering Transactions
Online Access:https://www.cetjournal.it/index.php/cet/article/view/10928
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spelling doaj-b5fcf58a5e584966aef4d13855be6c382021-02-16T11:29:57ZengAIDIC Servizi S.r.l.Chemical Engineering Transactions2283-92162020-06-018010.3303/CET2080049Embedding Aspen Custom Modeller for Bioethanol Fermentation Into the Aspen Plus Flowsheet SimulatorNosaibeh Nosrati-GhodsMuven NaidooSusan T. L. HarrisonAdeniyi J. IsafiadeSiew Leng TaiCommercial processes used to produce first generation biofuels are mature. In this study, a kinetic model using the equation-oriented process modelling tool Aspen Custom Modeller (ACM) was embedded into the process simulation environment of Aspen Plus and used to simulate industrial bioreactors with cell recycle for bioethanol production. To embed a native module in a process simulation environment, the legacy codes written in ACM were treated as a black box and integrated into the component-based framework. The compliance of ACM to Aspen Plus allows for proper integration of the reactor simulator developed for the fermentation process for bioethanol production using kinetic models. The aim of this research is to improve the ability to use custom kinetic models of fermentation processes, developed in equation-oriented modelling tools, within a sequential modular flowsheet simulator. The results obtained showed the accuracy of the selected kinetic model in ACM with less than 1% difference to industrial data, while a stoichiometric model showed approximately 9% difference to the industrial data. The simulation shows that ACM integrated into Aspen Plus allows for complex biological processes to be predicted accurately in terms of biomass growth, ethanol production and sugar consumption.https://www.cetjournal.it/index.php/cet/article/view/10928
collection DOAJ
language English
format Article
sources DOAJ
author Nosaibeh Nosrati-Ghods
Muven Naidoo
Susan T. L. Harrison
Adeniyi J. Isafiade
Siew Leng Tai
spellingShingle Nosaibeh Nosrati-Ghods
Muven Naidoo
Susan T. L. Harrison
Adeniyi J. Isafiade
Siew Leng Tai
Embedding Aspen Custom Modeller for Bioethanol Fermentation Into the Aspen Plus Flowsheet Simulator
Chemical Engineering Transactions
author_facet Nosaibeh Nosrati-Ghods
Muven Naidoo
Susan T. L. Harrison
Adeniyi J. Isafiade
Siew Leng Tai
author_sort Nosaibeh Nosrati-Ghods
title Embedding Aspen Custom Modeller for Bioethanol Fermentation Into the Aspen Plus Flowsheet Simulator
title_short Embedding Aspen Custom Modeller for Bioethanol Fermentation Into the Aspen Plus Flowsheet Simulator
title_full Embedding Aspen Custom Modeller for Bioethanol Fermentation Into the Aspen Plus Flowsheet Simulator
title_fullStr Embedding Aspen Custom Modeller for Bioethanol Fermentation Into the Aspen Plus Flowsheet Simulator
title_full_unstemmed Embedding Aspen Custom Modeller for Bioethanol Fermentation Into the Aspen Plus Flowsheet Simulator
title_sort embedding aspen custom modeller for bioethanol fermentation into the aspen plus flowsheet simulator
publisher AIDIC Servizi S.r.l.
series Chemical Engineering Transactions
issn 2283-9216
publishDate 2020-06-01
description Commercial processes used to produce first generation biofuels are mature. In this study, a kinetic model using the equation-oriented process modelling tool Aspen Custom Modeller (ACM) was embedded into the process simulation environment of Aspen Plus and used to simulate industrial bioreactors with cell recycle for bioethanol production. To embed a native module in a process simulation environment, the legacy codes written in ACM were treated as a black box and integrated into the component-based framework. The compliance of ACM to Aspen Plus allows for proper integration of the reactor simulator developed for the fermentation process for bioethanol production using kinetic models. The aim of this research is to improve the ability to use custom kinetic models of fermentation processes, developed in equation-oriented modelling tools, within a sequential modular flowsheet simulator. The results obtained showed the accuracy of the selected kinetic model in ACM with less than 1% difference to industrial data, while a stoichiometric model showed approximately 9% difference to the industrial data. The simulation shows that ACM integrated into Aspen Plus allows for complex biological processes to be predicted accurately in terms of biomass growth, ethanol production and sugar consumption.
url https://www.cetjournal.it/index.php/cet/article/view/10928
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