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- W3193643586 abstract "Chemical (refinery and petrochemical) processes are energy-intensive and the energy cost of a chemical plant is typically the 2nd largest operating expense after its own feedstock cost. Therefore the energy efficiency of a chemical process has significant impacts on the plant's profit margins and green-house gas emission. To improve the energy efficiency in chemical processes, many analytical methods such as process modelling, network pinch analysis and column targeting have been widely used, as they provide good insights of where and how the energy efficiency could be improved. Combining these analytical methods with a systematic engineering analysis could lead to costeffective and practical solutions for energy reduction and process optimization. Samsung Engineering Co., Ltd. (SECL) has been performing energy reduction and process optimization studies for refinery and petrochemical plants, applying the analytical methods and systematic engineering analysis to develop costeffective process modification solutions and design package. The studies typically resulted in 5% ~ 10% reduction of unit specific energy with practical and economically viable modifications, even for a plant that has been perceived to be efficient. The methods adopted for the studies are briefly discussed with actual design modification case studies that have been validated by actual plant operation." @default.
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- W3193643586 date "2016-01-01" @default.
- W3193643586 modified "2023-09-23" @default.
- W3193643586 title "A Systematic Approach to Energy and Process Optimization of Chemical Processes with Case Studies" @default.
- W3193643586 hasPublicationYear "2016" @default.
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