DocumentCode
3481552
Title
Retrofit design of heat exchanger network (HEN) on Synthesis and Purification Unit of methanol plant
Author
Rashid, Siti Rafidah Ab ; Ibrahim, Ummi Kalthum ; Alauddin, Sakinah Mohd
Author_Institution
Fac. of Chem. Eng., Univ. Teknol. MARA, Shah Alam, Malaysia
fYear
2011
fDate
5-6 Dec. 2011
Firstpage
33
Lastpage
36
Abstract
Due to the current worldwide energy and economic crisis, all possible options of reducing the energy consumption are explored. This drives chemical processing plant as one of the energy-intensive consumers to strive for energy efficiency projects such as retrofitting the heat exchanger network (HEN). The retrofit project is focusing on the reduction of heat consumption in the plant to its minimum energy requirement (MER). As a result of this, the plant energy efficiency will increase tremendously. In this work, pinch technology is exploited in analysing the potential energy saving and economic gain. As a case study of the work, a typical methanol plant is considered. The pinch calculation shows the potential energy saving is 48,417 kW. This amount of energy accounts 74% and 57% of the current hot and cold utility consumptions. This indicates the high potential of attaining the economic gain. The violation of one of the pinch technology rule which is no cooling above the pinch is the reason of the excessive use of the utilities. In the analysis, there are two coolers situated above the pinch and four heat exchangers have low area efficiencies. Therefore, the plant heat exchanger network is retrofitted by modifying a minimum number of network structures and heat exchanger modifications. Minimal modifications are ensured to achieve economic feasibility. This is showed in the economic analysis which it gives the payback period of the investment by 0.4 years.
Keywords
heat exchangers; maintenance engineering; purification; chemical processing plant; cold utility consumption; economic analysis; economic crisis; economic feasibility; economic gain; energy consumption; energy efficiency projects; energy saving; energy-intensive consumers; heat consumption; hot utility consumption; investment; methanol plant; minimum energy requirement; payback period; pinch calculation; pinch technology rule; plant energy efficiency; plant heat exchanger network modification; purification unit; retrofit design; retrofit project; retrofitting; worldwide energy; Cooling; Feeds; Heat recovery; Methanol; Purification; Water heating; heat exchanger network; methanol production; pinch technology; retrofit;
fLanguage
English
Publisher
ieee
Conference_Titel
Humanities, Science and Engineering (CHUSER), 2011 IEEE Colloquium on
Conference_Location
Penang
Print_ISBN
978-1-4673-0021-6
Type
conf
DOI
10.1109/CHUSER.2011.6163746
Filename
6163746
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