Pinch-based targeting methodology for multi-contaminant material recycle/reuse
This work presents a systematic resource targeting procedure in the domain of multiple contaminants water recycling/reuse network. A resource-allocation model was developed and modified to determine the model characteristics, to obtain the optimal solution. By inferring from the formulations, it is...
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my.utm.945962022-03-31T15:48:19Z http://eprints.utm.my/id/eprint/94596/ Pinch-based targeting methodology for multi-contaminant material recycle/reuse Chin, Hon Huin Varbanov, Petar Sabev Liew, Peng Yen Klemeš, Jirí Jaromír T Technology (General) This work presents a systematic resource targeting procedure in the domain of multiple contaminants water recycling/reuse network. A resource-allocation model was developed and modified to determine the model characteristics, to obtain the optimal solution. By inferring from the formulations, it is recognised that each water sink is constrained by a certain contaminant. This plays a vital role in determining the assignment of sinks to the proper contaminants cascade, classifying them to below or above the Pinch Region, and the source allocation strategy. Multiple Targeting Pinch Diagrams with Source and Sink Composite Curves then should be plotted for each contaminant. Each contaminant is assigned a specific separate Pinch Plot and analysed sequentially until the demands of all sinks are fulfilled. The credibility of the novel approach is demonstrated by several industrial case studies encompassing problems with a fresh and impure resource. The method provides insights into the problem while providing the minimum resource target. Elsevier Ltd 2021 Article PeerReviewed Chin, Hon Huin and Varbanov, Petar Sabev and Liew, Peng Yen and Klemeš, Jirí Jaromír (2021) Pinch-based targeting methodology for multi-contaminant material recycle/reuse. Chemical Engineering Science, 230 . p. 116129. ISSN 0009-2509 http://dx.doi.org/10.1016/j.ces.2020.116129 |
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T Technology (General) Chin, Hon Huin Varbanov, Petar Sabev Liew, Peng Yen Klemeš, Jirí Jaromír Pinch-based targeting methodology for multi-contaminant material recycle/reuse |
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This work presents a systematic resource targeting procedure in the domain of multiple contaminants water recycling/reuse network. A resource-allocation model was developed and modified to determine the model characteristics, to obtain the optimal solution. By inferring from the formulations, it is recognised that each water sink is constrained by a certain contaminant. This plays a vital role in determining the assignment of sinks to the proper contaminants cascade, classifying them to below or above the Pinch Region, and the source allocation strategy. Multiple Targeting Pinch Diagrams with Source and Sink Composite Curves then should be plotted for each contaminant. Each contaminant is assigned a specific separate Pinch Plot and analysed sequentially until the demands of all sinks are fulfilled. The credibility of the novel approach is demonstrated by several industrial case studies encompassing problems with a fresh and impure resource. The method provides insights into the problem while providing the minimum resource target. |
format |
Article |
author |
Chin, Hon Huin Varbanov, Petar Sabev Liew, Peng Yen Klemeš, Jirí Jaromír |
author_facet |
Chin, Hon Huin Varbanov, Petar Sabev Liew, Peng Yen Klemeš, Jirí Jaromír |
author_sort |
Chin, Hon Huin |
title |
Pinch-based targeting methodology for multi-contaminant material recycle/reuse |
title_short |
Pinch-based targeting methodology for multi-contaminant material recycle/reuse |
title_full |
Pinch-based targeting methodology for multi-contaminant material recycle/reuse |
title_fullStr |
Pinch-based targeting methodology for multi-contaminant material recycle/reuse |
title_full_unstemmed |
Pinch-based targeting methodology for multi-contaminant material recycle/reuse |
title_sort |
pinch-based targeting methodology for multi-contaminant material recycle/reuse |
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Elsevier Ltd |
publishDate |
2021 |
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http://eprints.utm.my/id/eprint/94596/ http://dx.doi.org/10.1016/j.ces.2020.116129 |
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