A new algebraic tool for simultaneous targeting and design of a mass exchange network with stream splitting for sustainable environment

Process effluent recovery can be a potential source of revenue and an effective way to reduce environmental footprints of industrial processes. Use of resource conservation technologies, resource-efficient processes and measures to reduce, recycle and reuse of various raw materials and waste are amo...

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Main Authors: Oladosu, W. A., Wan Alwi, S. R., Manan, Z. A.
Format: Article
Published: Elsevier Ltd. 2020
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Online Access:http://eprints.utm.my/id/eprint/86419/
https://dx.doi.org/10.1016/j.jclepro.2019.119361
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spelling my.utm.864192020-09-09T06:59:48Z http://eprints.utm.my/id/eprint/86419/ A new algebraic tool for simultaneous targeting and design of a mass exchange network with stream splitting for sustainable environment Oladosu, W. A. Wan Alwi, S. R. Manan, Z. A. TP Chemical technology Process effluent recovery can be a potential source of revenue and an effective way to reduce environmental footprints of industrial processes. Use of resource conservation technologies, resource-efficient processes and measures to reduce, recycle and reuse of various raw materials and waste are among sustainable manufacturing and cleaner production options to consider. Mass integration, taking place in mass exchange networks (MEN) is an established concept for more efficient use of raw materials. The integration can help to reduce both waste disposal flows and external mass separating agents. This work presents a novel algebraic tool for simultaneous targeting and design of mass exchange networks to overcome the limitations of previously developed mass integration algebraic targeting approach such as the Composition Interval Table (CIT). The newly developed Segregated Composition Interval Table (SECIT) shows mass cascade profiles across composition ranges for individual rich and lean streams. The tool can simultaneously target and design MEN, locate mass Pinch Point and to visualise mass exchange network. The SECIT method is demonstrated for a multiple Pinch and threshold problem, as well as stream splitting scenarios. Three literature case studies are presented to illustrate the applicability of the new approach. Elsevier Ltd. 2020-03 Article PeerReviewed Oladosu, W. A. and Wan Alwi, S. R. and Manan, Z. A. (2020) A new algebraic tool for simultaneous targeting and design of a mass exchange network with stream splitting for sustainable environment. Journal of Cleaner Production, 249 . ISSN 0959-6526 https://dx.doi.org/10.1016/j.jclepro.2019.119361 DOI:10.1016/j.jclepro.2019.119361
institution Universiti Teknologi Malaysia
building UTM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Malaysia
content_source UTM Institutional Repository
url_provider http://eprints.utm.my/
topic TP Chemical technology
spellingShingle TP Chemical technology
Oladosu, W. A.
Wan Alwi, S. R.
Manan, Z. A.
A new algebraic tool for simultaneous targeting and design of a mass exchange network with stream splitting for sustainable environment
description Process effluent recovery can be a potential source of revenue and an effective way to reduce environmental footprints of industrial processes. Use of resource conservation technologies, resource-efficient processes and measures to reduce, recycle and reuse of various raw materials and waste are among sustainable manufacturing and cleaner production options to consider. Mass integration, taking place in mass exchange networks (MEN) is an established concept for more efficient use of raw materials. The integration can help to reduce both waste disposal flows and external mass separating agents. This work presents a novel algebraic tool for simultaneous targeting and design of mass exchange networks to overcome the limitations of previously developed mass integration algebraic targeting approach such as the Composition Interval Table (CIT). The newly developed Segregated Composition Interval Table (SECIT) shows mass cascade profiles across composition ranges for individual rich and lean streams. The tool can simultaneously target and design MEN, locate mass Pinch Point and to visualise mass exchange network. The SECIT method is demonstrated for a multiple Pinch and threshold problem, as well as stream splitting scenarios. Three literature case studies are presented to illustrate the applicability of the new approach.
format Article
author Oladosu, W. A.
Wan Alwi, S. R.
Manan, Z. A.
author_facet Oladosu, W. A.
Wan Alwi, S. R.
Manan, Z. A.
author_sort Oladosu, W. A.
title A new algebraic tool for simultaneous targeting and design of a mass exchange network with stream splitting for sustainable environment
title_short A new algebraic tool for simultaneous targeting and design of a mass exchange network with stream splitting for sustainable environment
title_full A new algebraic tool for simultaneous targeting and design of a mass exchange network with stream splitting for sustainable environment
title_fullStr A new algebraic tool for simultaneous targeting and design of a mass exchange network with stream splitting for sustainable environment
title_full_unstemmed A new algebraic tool for simultaneous targeting and design of a mass exchange network with stream splitting for sustainable environment
title_sort new algebraic tool for simultaneous targeting and design of a mass exchange network with stream splitting for sustainable environment
publisher Elsevier Ltd.
publishDate 2020
url http://eprints.utm.my/id/eprint/86419/
https://dx.doi.org/10.1016/j.jclepro.2019.119361
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score 13.18916