Retrofitting direct sequence distillation columns using driving force method

Distillation is the primary separation process widely used in chemical processing. In retrofitting, distillation column problem can occur when it requires additional and major unit operations. Therefore, this research has been carried out in order to achieve a minimum or zero modification of unit op...

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Main Author: Mustafa, Mohd. Faris
Format: Thesis
Language:English
Published: 2015
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Online Access:http://eprints.utm.my/id/eprint/81596/1/MohdFarisMustafaMFChE2015.pdf
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spelling my-utm-ep.815962019-09-10T01:49:43Z Retrofitting direct sequence distillation columns using driving force method 2015 Mustafa, Mohd. Faris TP Chemical technology Distillation is the primary separation process widely used in chemical processing. In retrofitting, distillation column problem can occur when it requires additional and major unit operations. Therefore, this research has been carried out in order to achieve a minimum or zero modification of unit operation and design the optimal column sequence with less energy consumption. The large energy requirement of these processes can be greatly reduced by changing the sequence of the existing direct distillation columns by using the driving force method. The objective of this research is to develop a methodology to find the best sequence that can save energy and has better economic performance which consists of four hierarchical stages. In the first stage, the design of existing direct sequence was simulated and the energy used is analysed by using a shortcut method for distillation column in Aspen HYSYS. Then, the optimum sequence was determined by using the driving force method in the second stage. In the third stage, the optimal sequence was simulated and the energy used was analysed using a shortcut method of distillation column in Aspen HYSYS. Finally, the energy requirements from both sequences were compared and the economic performance was evaluated and calculated. A maximum energy saving of natural gas liquids fractionation of 21.2% was obtained with the Return of Investment (ROI) of 6 with 2 months of payback period. The results for hydrocarbon mixture show achievement of maximum energy saving of 39.53% and the ROI of 3 was obtained with 4 months of payback period. All of this findings show that the methodology is able to retrofit the existing direct sequence of distillation columns with minimum energy distillation column sequence in an easy, practical and systematic manner. 2015 Thesis http://eprints.utm.my/id/eprint/81596/ http://eprints.utm.my/id/eprint/81596/1/MohdFarisMustafaMFChE2015.pdf application/pdf en public http://dms.library.utm.my:8080/vital/access/manager/Repository/vital:120242 masters Universiti Teknologi Malaysia Chemical and Energy Engineering
institution Universiti Teknologi Malaysia
collection UTM Institutional Repository
language English
topic TP Chemical technology
spellingShingle TP Chemical technology
Mustafa, Mohd. Faris
Retrofitting direct sequence distillation columns using driving force method
description Distillation is the primary separation process widely used in chemical processing. In retrofitting, distillation column problem can occur when it requires additional and major unit operations. Therefore, this research has been carried out in order to achieve a minimum or zero modification of unit operation and design the optimal column sequence with less energy consumption. The large energy requirement of these processes can be greatly reduced by changing the sequence of the existing direct distillation columns by using the driving force method. The objective of this research is to develop a methodology to find the best sequence that can save energy and has better economic performance which consists of four hierarchical stages. In the first stage, the design of existing direct sequence was simulated and the energy used is analysed by using a shortcut method for distillation column in Aspen HYSYS. Then, the optimum sequence was determined by using the driving force method in the second stage. In the third stage, the optimal sequence was simulated and the energy used was analysed using a shortcut method of distillation column in Aspen HYSYS. Finally, the energy requirements from both sequences were compared and the economic performance was evaluated and calculated. A maximum energy saving of natural gas liquids fractionation of 21.2% was obtained with the Return of Investment (ROI) of 6 with 2 months of payback period. The results for hydrocarbon mixture show achievement of maximum energy saving of 39.53% and the ROI of 3 was obtained with 4 months of payback period. All of this findings show that the methodology is able to retrofit the existing direct sequence of distillation columns with minimum energy distillation column sequence in an easy, practical and systematic manner.
format Thesis
qualification_level Master's degree
author Mustafa, Mohd. Faris
author_facet Mustafa, Mohd. Faris
author_sort Mustafa, Mohd. Faris
title Retrofitting direct sequence distillation columns using driving force method
title_short Retrofitting direct sequence distillation columns using driving force method
title_full Retrofitting direct sequence distillation columns using driving force method
title_fullStr Retrofitting direct sequence distillation columns using driving force method
title_full_unstemmed Retrofitting direct sequence distillation columns using driving force method
title_sort retrofitting direct sequence distillation columns using driving force method
granting_institution Universiti Teknologi Malaysia
granting_department Chemical and Energy Engineering
publishDate 2015
url http://eprints.utm.my/id/eprint/81596/1/MohdFarisMustafaMFChE2015.pdf
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