Sustainable integrated process design and control for a continuous-stirred tank reactor system

The objective of this paper is to highlight the use of a two-dimensional (2D) sustainability index in performing a sustainable integrated process design and control (Sustain-IPDC) for a continuous-stirred tank reactor (CSTR) system. Sustain-IPDC for a CSTR system is formulated as a mathematical prog...

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Main Authors: Zakaria, Siti Aminah, Zakaria, Mohd. Jufri, Abdul Hamid, Mohd. Kamaruddin
Format: Article
Published: Trans Tech Publication 2014
Subjects:
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author Zakaria, Siti Aminah
Zakaria, Mohd. Jufri
Abdul Hamid, Mohd. Kamaruddin
author_facet Zakaria, Siti Aminah
Zakaria, Mohd. Jufri
Abdul Hamid, Mohd. Kamaruddin
author_sort Zakaria, Siti Aminah
collection ePrints
description The objective of this paper is to highlight the use of a two-dimensional (2D) sustainability index in performing a sustainable integrated process design and control (Sustain-IPDC) for a continuous-stirred tank reactor (CSTR) system. Sustain-IPDC for a CSTR system is formulated as a mathematical programming problem and solved by decomposing it into six sequential hierarchical sub-problems: (i) pre-analysis, (ii) design analysis, (iii) controller design analysis, (iv) sustainability analysis, (v) detailed economic analysis, and (vi) final selection and verification. The proposed methodology is applied to the production of cyclohexanone using a CSTR. The results show that the proposed methodology is capable in finding an optimal solution for a CSTR design problem that satisfy design, control, sustainability and economic criteria in an easy and systematic manner.
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spelling utm.eprints-627522017-06-06T06:15:43Z http://eprints.utm.my/62752/ Sustainable integrated process design and control for a continuous-stirred tank reactor system Zakaria, Siti Aminah Zakaria, Mohd. Jufri Abdul Hamid, Mohd. Kamaruddin TP Chemical technology The objective of this paper is to highlight the use of a two-dimensional (2D) sustainability index in performing a sustainable integrated process design and control (Sustain-IPDC) for a continuous-stirred tank reactor (CSTR) system. Sustain-IPDC for a CSTR system is formulated as a mathematical programming problem and solved by decomposing it into six sequential hierarchical sub-problems: (i) pre-analysis, (ii) design analysis, (iii) controller design analysis, (iv) sustainability analysis, (v) detailed economic analysis, and (vi) final selection and verification. The proposed methodology is applied to the production of cyclohexanone using a CSTR. The results show that the proposed methodology is capable in finding an optimal solution for a CSTR design problem that satisfy design, control, sustainability and economic criteria in an easy and systematic manner. Trans Tech Publication 2014 Article PeerReviewed Zakaria, Siti Aminah and Zakaria, Mohd. Jufri and Abdul Hamid, Mohd. Kamaruddin (2014) Sustainable integrated process design and control for a continuous-stirred tank reactor system. Applied Mechanics and Materials, 625 . pp. 466-469. ISSN 1660-9336 http://dx.doi.org/10.4028/www.scientific.net/AMM.625.466 DOI:10.4028/www.scientific.net/AMM.625.466
spellingShingle TP Chemical technology
Zakaria, Siti Aminah
Zakaria, Mohd. Jufri
Abdul Hamid, Mohd. Kamaruddin
Sustainable integrated process design and control for a continuous-stirred tank reactor system
title Sustainable integrated process design and control for a continuous-stirred tank reactor system
title_full Sustainable integrated process design and control for a continuous-stirred tank reactor system
title_fullStr Sustainable integrated process design and control for a continuous-stirred tank reactor system
title_full_unstemmed Sustainable integrated process design and control for a continuous-stirred tank reactor system
title_short Sustainable integrated process design and control for a continuous-stirred tank reactor system
title_sort sustainable integrated process design and control for a continuous stirred tank reactor system
topic TP Chemical technology
work_keys_str_mv AT zakariasitiaminah sustainableintegratedprocessdesignandcontrolforacontinuousstirredtankreactorsystem
AT zakariamohdjufri sustainableintegratedprocessdesignandcontrolforacontinuousstirredtankreactorsystem
AT abdulhamidmohdkamaruddin sustainableintegratedprocessdesignandcontrolforacontinuousstirredtankreactorsystem