Synthesis of maximum water recovery network for batch process systems

Development of maximum water recovery (MWR) networks for continuous processes based on Pinch Analysis has been rather well established. In contrast, less work has been done on the water minimisation problem for batch process systems. This work presents a two-stage procedure for the synthesis of an M...

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Main Authors: Chwan, Dominic Yee Foo, Abdul Manan, Zainuddin, Yin, Ling Tan
Format: Article
Language:English
Published: Elsevier Limited 2005
Subjects:
Online Access:http://eprints.utm.my/5555/1/DominicChwanYeeFoo2005_SynthesisOfMaximumWaterRecoveryNetwork.pdf
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author Chwan, Dominic Yee Foo
Abdul Manan, Zainuddin
Yin, Ling Tan
author_facet Chwan, Dominic Yee Foo
Abdul Manan, Zainuddin
Yin, Ling Tan
author_sort Chwan, Dominic Yee Foo
collection ePrints
description Development of maximum water recovery (MWR) networks for continuous processes based on Pinch Analysis has been rather well established. In contrast, less work has been done on the water minimisation problem for batch process systems. This work presents a two-stage procedure for the synthesis of an MWR network for a batch process system, covering both mass transfer-based and non-mass transfer-based water-using processes. The first stage of the synthesis task is to locate the various network targets, which include the overall and interval-based minimum utility targets (fresh water and wastewater flows) as well as storage capacity target using the newly developed time-dependent water cascade analysis (WCA) technique. In the second stage, a new tool called the time-water network is introduced to help in the development of the MWR network to achieve the established utility targets. This new network representation has an advantage of clearly depicting the time-dependent nature of a batch water network.
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spelling utm.eprints-55552017-08-10T04:12:51Z http://eprints.utm.my/5555/ Synthesis of maximum water recovery network for batch process systems Chwan, Dominic Yee Foo Abdul Manan, Zainuddin Yin, Ling Tan T Technology (General) Development of maximum water recovery (MWR) networks for continuous processes based on Pinch Analysis has been rather well established. In contrast, less work has been done on the water minimisation problem for batch process systems. This work presents a two-stage procedure for the synthesis of an MWR network for a batch process system, covering both mass transfer-based and non-mass transfer-based water-using processes. The first stage of the synthesis task is to locate the various network targets, which include the overall and interval-based minimum utility targets (fresh water and wastewater flows) as well as storage capacity target using the newly developed time-dependent water cascade analysis (WCA) technique. In the second stage, a new tool called the time-water network is introduced to help in the development of the MWR network to achieve the established utility targets. This new network representation has an advantage of clearly depicting the time-dependent nature of a batch water network. Elsevier Limited 2005 Article PeerReviewed application/pdf en http://eprints.utm.my/5555/1/DominicChwanYeeFoo2005_SynthesisOfMaximumWaterRecoveryNetwork.pdf Chwan, Dominic Yee Foo and Abdul Manan, Zainuddin and Yin, Ling Tan (2005) Synthesis of maximum water recovery network for batch process systems. Journal of Cleaner Production, 13 . pp. 1381-1394. ISSN 0959-6526
spellingShingle T Technology (General)
Chwan, Dominic Yee Foo
Abdul Manan, Zainuddin
Yin, Ling Tan
Synthesis of maximum water recovery network for batch process systems
title Synthesis of maximum water recovery network for batch process systems
title_full Synthesis of maximum water recovery network for batch process systems
title_fullStr Synthesis of maximum water recovery network for batch process systems
title_full_unstemmed Synthesis of maximum water recovery network for batch process systems
title_short Synthesis of maximum water recovery network for batch process systems
title_sort synthesis of maximum water recovery network for batch process systems
topic T Technology (General)
url http://eprints.utm.my/5555/1/DominicChwanYeeFoo2005_SynthesisOfMaximumWaterRecoveryNetwork.pdf
work_keys_str_mv AT chwandominicyeefoo synthesisofmaximumwaterrecoverynetworkforbatchprocesssystems
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