Fischer Tropsch water composition study from distillation process in gas to liquid technology with ASPEN simulation

Fischer-Tropsch is a polymerization reaction that produces a long chain of hydrocarbons such as linear paraffin, linear olefins, and water. Water is a by-product of Fischer Tropsch synthesis that contains impurities such as olefins and oxygen-containing compounds. Therefore, this study aims to ana...

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Main Authors: Nazeri, Abdul Rahman, Calvin, Jose Jol, Allene Albania, Linus, Dyg Sharifah Rozellia, Kamel Sharif, Verawaty, Ismail
Format: Article
Language:English
Published: Elsevier B.V. 2021
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Online Access:http://ir.unimas.my/id/eprint/45190/1/Fischer%20Tropsch%20water.pdf
http://ir.unimas.my/id/eprint/45190/
https://www.sciencedirect.com/science/article/pii/S2666016421000281
https://doi.org/10.1016/j.cscee.2021.100106
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Institution: Universiti Malaysia Sarawak
Language: English
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spelling my.unimas.ir.451902024-07-09T03:18:22Z http://ir.unimas.my/id/eprint/45190/ Fischer Tropsch water composition study from distillation process in gas to liquid technology with ASPEN simulation Nazeri, Abdul Rahman Calvin, Jose Jol Allene Albania, Linus Dyg Sharifah Rozellia, Kamel Sharif Verawaty, Ismail TP Chemical technology Fischer-Tropsch is a polymerization reaction that produces a long chain of hydrocarbons such as linear paraffin, linear olefins, and water. Water is a by-product of Fischer Tropsch synthesis that contains impurities such as olefins and oxygen-containing compounds. Therefore, this study aims to analyze chemical oxygen demand (COD) level of Fischer Tropsch water from the distillation process by using Aspen simulation. Correspondingly, this study designs a Fischer Tropsch water distillation unit that can recover 1.2% of volatile organic compounds from the wastewater. In addition, this study has identified three (3) sections in the Fischer Tropsch water distillation unit which are distillation, recovery, and neutralization. Following this, a steady-state model is simulated through Aspen software with UNIQUAC-HOC as the thermodynamic model. The developed simulation model was found to be less than a 10% deviation as compared to the actual data from the natural gas processing plant located in Sarawak. Overall, the simulated distillation unit shows that 2100 tons of Fischer Tropsch water that can be treated at 120 �C and 2.21 bar per day. The overhead product is an enriched volatile organic compounds stream while the bottom product is an enriched water stream. For this study, the processed water quality from distillation column has been compared with both stripped water quality in natural gas processing and National Water Standard Quality. Consequently, the comparison shows that the chemical oxygen demand of processed water level is at 600 ppm after distillation which follows the stripped water quality in natural gas processing, however, requires postwater treatment before being discharge to the surface water sources. Elsevier B.V. 2021 Article PeerReviewed text en http://ir.unimas.my/id/eprint/45190/1/Fischer%20Tropsch%20water.pdf Nazeri, Abdul Rahman and Calvin, Jose Jol and Allene Albania, Linus and Dyg Sharifah Rozellia, Kamel Sharif and Verawaty, Ismail (2021) Fischer Tropsch water composition study from distillation process in gas to liquid technology with ASPEN simulation. Case Studies in Chemical and Environmental Engineering, 3. pp. 1-7. ISSN 2666-0164 https://www.sciencedirect.com/science/article/pii/S2666016421000281 https://doi.org/10.1016/j.cscee.2021.100106
institution Universiti Malaysia Sarawak
building Centre for Academic Information Services (CAIS)
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Malaysia Sarawak
content_source UNIMAS Institutional Repository
url_provider http://ir.unimas.my/
language English
topic TP Chemical technology
spellingShingle TP Chemical technology
Nazeri, Abdul Rahman
Calvin, Jose Jol
Allene Albania, Linus
Dyg Sharifah Rozellia, Kamel Sharif
Verawaty, Ismail
Fischer Tropsch water composition study from distillation process in gas to liquid technology with ASPEN simulation
description Fischer-Tropsch is a polymerization reaction that produces a long chain of hydrocarbons such as linear paraffin, linear olefins, and water. Water is a by-product of Fischer Tropsch synthesis that contains impurities such as olefins and oxygen-containing compounds. Therefore, this study aims to analyze chemical oxygen demand (COD) level of Fischer Tropsch water from the distillation process by using Aspen simulation. Correspondingly, this study designs a Fischer Tropsch water distillation unit that can recover 1.2% of volatile organic compounds from the wastewater. In addition, this study has identified three (3) sections in the Fischer Tropsch water distillation unit which are distillation, recovery, and neutralization. Following this, a steady-state model is simulated through Aspen software with UNIQUAC-HOC as the thermodynamic model. The developed simulation model was found to be less than a 10% deviation as compared to the actual data from the natural gas processing plant located in Sarawak. Overall, the simulated distillation unit shows that 2100 tons of Fischer Tropsch water that can be treated at 120 �C and 2.21 bar per day. The overhead product is an enriched volatile organic compounds stream while the bottom product is an enriched water stream. For this study, the processed water quality from distillation column has been compared with both stripped water quality in natural gas processing and National Water Standard Quality. Consequently, the comparison shows that the chemical oxygen demand of processed water level is at 600 ppm after distillation which follows the stripped water quality in natural gas processing, however, requires postwater treatment before being discharge to the surface water sources.
format Article
author Nazeri, Abdul Rahman
Calvin, Jose Jol
Allene Albania, Linus
Dyg Sharifah Rozellia, Kamel Sharif
Verawaty, Ismail
author_facet Nazeri, Abdul Rahman
Calvin, Jose Jol
Allene Albania, Linus
Dyg Sharifah Rozellia, Kamel Sharif
Verawaty, Ismail
author_sort Nazeri, Abdul Rahman
title Fischer Tropsch water composition study from distillation process in gas to liquid technology with ASPEN simulation
title_short Fischer Tropsch water composition study from distillation process in gas to liquid technology with ASPEN simulation
title_full Fischer Tropsch water composition study from distillation process in gas to liquid technology with ASPEN simulation
title_fullStr Fischer Tropsch water composition study from distillation process in gas to liquid technology with ASPEN simulation
title_full_unstemmed Fischer Tropsch water composition study from distillation process in gas to liquid technology with ASPEN simulation
title_sort fischer tropsch water composition study from distillation process in gas to liquid technology with aspen simulation
publisher Elsevier B.V.
publishDate 2021
url http://ir.unimas.my/id/eprint/45190/1/Fischer%20Tropsch%20water.pdf
http://ir.unimas.my/id/eprint/45190/
https://www.sciencedirect.com/science/article/pii/S2666016421000281
https://doi.org/10.1016/j.cscee.2021.100106
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