Maximization of natural gas liquids production from an

It is known that the price of liquefied petroleum gas (LPG) is higher than that of natural gas from which it is derived. So the modification of a natural gas plant to produce LPG instead of lighter hydrocarbon gases is very important in the view point of economics. The aim of the present work is dir...

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Main Authors: Ahmed Abd El-Kader Bhran, Mohamed Hassan Hassanean, Mohamed Galal Helal
Format: Article
Language:English
Published: Egyptian Petroleum Research Institute 2016-09-01
Series:Egyptian Journal of Petroleum
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S1110062115300477
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author Ahmed Abd El-Kader Bhran
Mohamed Hassan Hassanean
Mohamed Galal Helal
author_facet Ahmed Abd El-Kader Bhran
Mohamed Hassan Hassanean
Mohamed Galal Helal
author_sort Ahmed Abd El-Kader Bhran
collection DOAJ
description It is known that the price of liquefied petroleum gas (LPG) is higher than that of natural gas from which it is derived. So the modification of a natural gas plant to produce LPG instead of lighter hydrocarbon gases is very important in the view point of economics. The aim of the present work is directed to the modification of Salam gas plant (Khalda Petroleum Company-Egypt) to produce LPG from the NGL instead of producing hydrocarbon gases during the NGL stabilization. This can be achieved after adding de-ethanizer and de-butanizer towers. The simulation tool used in this study is HYSYS version 8.4. The produced LPG of 100 ton/day can participate to solve the LPG shortage problem in Egypt and provide a national service to the people of Matruh Governorate. The economic study based on the economic analyzer of HYSIS showed that the pay-back period of the added two towers and their additional equipment has a high investment strength which means that all modification costs will be recovered within a short time. Furthermore, there are other benefits from this modification. The simulation results showed that there is a capacity saving of 56 tons/day in the export pipeline which transfers the gases to western desert gas complex (WDGC) at Alexandria. In the same manner, the modified plant provides a capacity saving of 88 tons/day in the dehydration unit and reduces horse power consumption in recycle and first stage export compressors. This modification can be taken as guidelines for both new and plants in operation to increase their profits.
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spelling doaj-art-fb89dfeb176f49cdada865bccfde9b6b2025-08-20T03:25:31ZengEgyptian Petroleum Research InstituteEgyptian Journal of Petroleum1110-06212016-09-0125333334110.1016/j.ejpe.2015.08.003Maximization of natural gas liquids production from anAhmed Abd El-Kader Bhran0Mohamed Hassan Hassanean1Mohamed Galal Helal2Suez University, Faculty of Petroleum and Mining Engineering, Petroleum Refining and Petrochemical Engineering Department, Suez, EgyptSuez University, Faculty of Petroleum and Mining Engineering, Petroleum Refining and Petrochemical Engineering Department, Suez, EgyptKhalda Petroleum Company, Salam Gas Plant, Western Desert, EgyptIt is known that the price of liquefied petroleum gas (LPG) is higher than that of natural gas from which it is derived. So the modification of a natural gas plant to produce LPG instead of lighter hydrocarbon gases is very important in the view point of economics. The aim of the present work is directed to the modification of Salam gas plant (Khalda Petroleum Company-Egypt) to produce LPG from the NGL instead of producing hydrocarbon gases during the NGL stabilization. This can be achieved after adding de-ethanizer and de-butanizer towers. The simulation tool used in this study is HYSYS version 8.4. The produced LPG of 100 ton/day can participate to solve the LPG shortage problem in Egypt and provide a national service to the people of Matruh Governorate. The economic study based on the economic analyzer of HYSIS showed that the pay-back period of the added two towers and their additional equipment has a high investment strength which means that all modification costs will be recovered within a short time. Furthermore, there are other benefits from this modification. The simulation results showed that there is a capacity saving of 56 tons/day in the export pipeline which transfers the gases to western desert gas complex (WDGC) at Alexandria. In the same manner, the modified plant provides a capacity saving of 88 tons/day in the dehydration unit and reduces horse power consumption in recycle and first stage export compressors. This modification can be taken as guidelines for both new and plants in operation to increase their profits.http://www.sciencedirect.com/science/article/pii/S1110062115300477NGL recoveryLPGGas plant retrofitting
spellingShingle Ahmed Abd El-Kader Bhran
Mohamed Hassan Hassanean
Mohamed Galal Helal
Maximization of natural gas liquids production from an
Egyptian Journal of Petroleum
NGL recovery
LPG
Gas plant retrofitting
title Maximization of natural gas liquids production from an
title_full Maximization of natural gas liquids production from an
title_fullStr Maximization of natural gas liquids production from an
title_full_unstemmed Maximization of natural gas liquids production from an
title_short Maximization of natural gas liquids production from an
title_sort maximization of natural gas liquids production from an
topic NGL recovery
LPG
Gas plant retrofitting
url http://www.sciencedirect.com/science/article/pii/S1110062115300477
work_keys_str_mv AT ahmedabdelkaderbhran maximizationofnaturalgasliquidsproductionfroman
AT mohamedhassanhassanean maximizationofnaturalgasliquidsproductionfroman
AT mohamedgalalhelal maximizationofnaturalgasliquidsproductionfroman