Retrofitting Heat Exchanger Network of Industrial Ethylene Glycol Plant using Heat Integration based on Pinch Analysis
Author:
Affiliation:
1. Chemical Engineering Department , King Saud University , P.O Box 800 , Riyadh , Saudi Arabia
2. Functional Chemicals, Sabic Technology Centre , Riyadh , Saudi Arabia
Abstract
Publisher
Walter de Gruyter GmbH
Subject
General Chemical Engineering,General Chemistry,Biotechnology
Link
https://www.sciendo.com/pdf/10.2478/pjct-2022-0009
Reference30 articles.
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2. 2. Nimkar, S. & Mewada, R. (2016). Effect of catalyst selectivity on exergetic and exergoeconomic evaluation of ethylene oxide/ethylene glycol process. Int. J. Exergy, 21(2), 157–185. DOI: 10.1504/IJEX.2016.078924.
3. 3. Kawabe, K. (2010). Development of Highly Selective Process for Mono-Ethylene Glycol Production from Ethylene Oxide via Ethylene Carbonate Using Phosphonium Salt Catalyst, Catal Surv Asia 14, 111–115. DOI:10.1007/s10563-010-9094-4.
4. 4. Yue, H., Zhao, Y., Ma, X. & Gong, J. (2012). Ethylene glycol: properties, synthesis, and applications. Chem. Soc. Rev., 41, 4218–4244. DOI: 10.1039/C2CS15359A.
5. 5. Wang, F., Zhao, Y., Yang, O., Cai, J. & Deng, M. (2013). Process safety data management program based on HAZOP analysis and its application to an ethylene oxide/ethylene glycol plant. J. Loss Prevent. Process Ind., 26, 1399–1406. DOI: 10.1016/j.jlp.2013.08.020.
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