Maximising utility savings through appropriate implementation of combined heat and power scheme

Combined Heat And Power (CHP) Scheme, Also Known As Cogeneration Is Widely Accepted As A Highly Efficient Energy Saving Measure, Particularly In Medium To Large Scale Chemical Process Plants. The Advantages Of A CHP Scheme For A Chemical Plant Are Two-Fold: (I) To Drastically Reduce Electricity Bill...

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Main Authors: A. Manan, Zainuddin, Lim, Fang Yee
Format: Article
Language:English
Published: Penerbit UTM Press 2004
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Online Access:http://eprints.utm.my/id/eprint/1919/1/JTDIS41A05.pdf
http://eprints.utm.my/id/eprint/1919/
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spelling my.utm.19192017-11-01T04:17:35Z http://eprints.utm.my/id/eprint/1919/ Maximising utility savings through appropriate implementation of combined heat and power scheme A. Manan, Zainuddin Lim, Fang Yee Q Science (General) Combined Heat And Power (CHP) Scheme, Also Known As Cogeneration Is Widely Accepted As A Highly Efficient Energy Saving Measure, Particularly In Medium To Large Scale Chemical Process Plants. The Advantages Of A CHP Scheme For A Chemical Plant Are Two-Fold: (I) To Drastically Reduce Electricity Bill From On-Site Power Generation (Ii) To Save On Fuel Bills Through Recovery Of The Quality Waste Heat From Power Generation For Process Heating. In Order To Be Effective, A CHP Scheme Must Be Placed At The Right Temperature Level, In The Context Of An Overall Process System. Failure To Do So Might Render A CHP Venture Worthless. This Paper Describes The Procedure For An Effective Implementation Of A CHP Scheme Using An Ethyl Benzene Process As A Case Study. A Key Visualisation Tool In Pinch Analysis Technique Known As The Grand Composite Curve Is Used To Guide CHP Integration, And Allows It To Be Optimally Placed Within The Overall Process Scenario. The Study Shows That Appropriate CHP Integration With The Ethyl Benzene Process Above The Pinch Can Potentially Result In Significant Savings On Electricity Cost Of Up To 87%. Penerbit UTM Press 2004-12 Article PeerReviewed application/pdf en http://eprints.utm.my/id/eprint/1919/1/JTDIS41A05.pdf A. Manan, Zainuddin and Lim, Fang Yee (2004) Maximising utility savings through appropriate implementation of combined heat and power scheme. Jurnal Teknologi A (41A). pp. 53-62. ISSN 0127-9696
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/
language English
topic Q Science (General)
spellingShingle Q Science (General)
A. Manan, Zainuddin
Lim, Fang Yee
Maximising utility savings through appropriate implementation of combined heat and power scheme
description Combined Heat And Power (CHP) Scheme, Also Known As Cogeneration Is Widely Accepted As A Highly Efficient Energy Saving Measure, Particularly In Medium To Large Scale Chemical Process Plants. The Advantages Of A CHP Scheme For A Chemical Plant Are Two-Fold: (I) To Drastically Reduce Electricity Bill From On-Site Power Generation (Ii) To Save On Fuel Bills Through Recovery Of The Quality Waste Heat From Power Generation For Process Heating. In Order To Be Effective, A CHP Scheme Must Be Placed At The Right Temperature Level, In The Context Of An Overall Process System. Failure To Do So Might Render A CHP Venture Worthless. This Paper Describes The Procedure For An Effective Implementation Of A CHP Scheme Using An Ethyl Benzene Process As A Case Study. A Key Visualisation Tool In Pinch Analysis Technique Known As The Grand Composite Curve Is Used To Guide CHP Integration, And Allows It To Be Optimally Placed Within The Overall Process Scenario. The Study Shows That Appropriate CHP Integration With The Ethyl Benzene Process Above The Pinch Can Potentially Result In Significant Savings On Electricity Cost Of Up To 87%.
format Article
author A. Manan, Zainuddin
Lim, Fang Yee
author_facet A. Manan, Zainuddin
Lim, Fang Yee
author_sort A. Manan, Zainuddin
title Maximising utility savings through appropriate implementation of combined heat and power scheme
title_short Maximising utility savings through appropriate implementation of combined heat and power scheme
title_full Maximising utility savings through appropriate implementation of combined heat and power scheme
title_fullStr Maximising utility savings through appropriate implementation of combined heat and power scheme
title_full_unstemmed Maximising utility savings through appropriate implementation of combined heat and power scheme
title_sort maximising utility savings through appropriate implementation of combined heat and power scheme
publisher Penerbit UTM Press
publishDate 2004
url http://eprints.utm.my/id/eprint/1919/1/JTDIS41A05.pdf
http://eprints.utm.my/id/eprint/1919/
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score 13.18916