The Optimum Value of Minimum Temparature Gap in The Energy Targeting of Distillation Columns Sequence by Thermal Pinch Analysis

The purpose of this research is to investigate the essential parameter in energy integration of distillation columns sequence via Thermal Pinch Analysis, which is the minimum temperature difference, ΔTmin. The distillation process of five alkane components has been selected as a case study for this...

Full description

Bibliographic Details
Published in:Energy Proceedings
Main Author: Shahruddin M.Z.; Mokhtar N.S.; Zin R.M.; Rahimi A.N.; Zubir M.A.; Zahran M.F.I.; Ibrahim N.; Abd. Hamid M.K.
Format: Conference paper
Language:English
Published: Scanditale AB 2020
Online Access:https://www.scopus.com/inward/record.uri?eid=2-s2.0-85202486990&partnerID=40&md5=bbd3322134d77aa18806e55e5f7a3ee2
id 2-s2.0-85202486990
spelling 2-s2.0-85202486990
Shahruddin M.Z.; Mokhtar N.S.; Zin R.M.; Rahimi A.N.; Zubir M.A.; Zahran M.F.I.; Ibrahim N.; Abd. Hamid M.K.
The Optimum Value of Minimum Temparature Gap in The Energy Targeting of Distillation Columns Sequence by Thermal Pinch Analysis
2020
Energy Proceedings
10


https://www.scopus.com/inward/record.uri?eid=2-s2.0-85202486990&partnerID=40&md5=bbd3322134d77aa18806e55e5f7a3ee2
The purpose of this research is to investigate the essential parameter in energy integration of distillation columns sequence via Thermal Pinch Analysis, which is the minimum temperature difference, ΔTmin. The distillation process of five alkane components has been selected as a case study for this research. From there, the shortcut simulations of all possible sequences have been simulated by using a process simulation software. Then, the energy consumption will be ranked accordingly whereby the lowest will be further simulated via a rigorous simulation before the application of the Thermal Pinch Analysis with a range of ΔTmin from 5 to 40 °C. Next, the energy requirement before and after the Thermal Pinch Analysis has been compared to determine the energy saving and to generate the economic analysis. According to the parametric analysis result, the optimum ΔTmin is in between the range of 20 to 25°C and the best sequence is Sequence 3 (direct-direct-indirect) which recorded 7.72% of total energy saving, USD 1274.45 MM per year of cost utility and USD 1.91 MM of capital expenditure. This can be termed as a conclusive remark to state the importance of ΔTmin role in balancing the energy saving of the process with the costs incurred for the process. © 2020 ICAE.
Scanditale AB
20042965
English
Conference paper

author Shahruddin M.Z.; Mokhtar N.S.; Zin R.M.; Rahimi A.N.; Zubir M.A.; Zahran M.F.I.; Ibrahim N.; Abd. Hamid M.K.
spellingShingle Shahruddin M.Z.; Mokhtar N.S.; Zin R.M.; Rahimi A.N.; Zubir M.A.; Zahran M.F.I.; Ibrahim N.; Abd. Hamid M.K.
The Optimum Value of Minimum Temparature Gap in The Energy Targeting of Distillation Columns Sequence by Thermal Pinch Analysis
author_facet Shahruddin M.Z.; Mokhtar N.S.; Zin R.M.; Rahimi A.N.; Zubir M.A.; Zahran M.F.I.; Ibrahim N.; Abd. Hamid M.K.
author_sort Shahruddin M.Z.; Mokhtar N.S.; Zin R.M.; Rahimi A.N.; Zubir M.A.; Zahran M.F.I.; Ibrahim N.; Abd. Hamid M.K.
title The Optimum Value of Minimum Temparature Gap in The Energy Targeting of Distillation Columns Sequence by Thermal Pinch Analysis
title_short The Optimum Value of Minimum Temparature Gap in The Energy Targeting of Distillation Columns Sequence by Thermal Pinch Analysis
title_full The Optimum Value of Minimum Temparature Gap in The Energy Targeting of Distillation Columns Sequence by Thermal Pinch Analysis
title_fullStr The Optimum Value of Minimum Temparature Gap in The Energy Targeting of Distillation Columns Sequence by Thermal Pinch Analysis
title_full_unstemmed The Optimum Value of Minimum Temparature Gap in The Energy Targeting of Distillation Columns Sequence by Thermal Pinch Analysis
title_sort The Optimum Value of Minimum Temparature Gap in The Energy Targeting of Distillation Columns Sequence by Thermal Pinch Analysis
publishDate 2020
container_title Energy Proceedings
container_volume 10
container_issue
doi_str_mv
url https://www.scopus.com/inward/record.uri?eid=2-s2.0-85202486990&partnerID=40&md5=bbd3322134d77aa18806e55e5f7a3ee2
description The purpose of this research is to investigate the essential parameter in energy integration of distillation columns sequence via Thermal Pinch Analysis, which is the minimum temperature difference, ΔTmin. The distillation process of five alkane components has been selected as a case study for this research. From there, the shortcut simulations of all possible sequences have been simulated by using a process simulation software. Then, the energy consumption will be ranked accordingly whereby the lowest will be further simulated via a rigorous simulation before the application of the Thermal Pinch Analysis with a range of ΔTmin from 5 to 40 °C. Next, the energy requirement before and after the Thermal Pinch Analysis has been compared to determine the energy saving and to generate the economic analysis. According to the parametric analysis result, the optimum ΔTmin is in between the range of 20 to 25°C and the best sequence is Sequence 3 (direct-direct-indirect) which recorded 7.72% of total energy saving, USD 1274.45 MM per year of cost utility and USD 1.91 MM of capital expenditure. This can be termed as a conclusive remark to state the importance of ΔTmin role in balancing the energy saving of the process with the costs incurred for the process. © 2020 ICAE.
publisher Scanditale AB
issn 20042965
language English
format Conference paper
accesstype
record_format scopus
collection Scopus
_version_ 1812871800101535744