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Novel Treatment for Mitigating Condensate Bank Using a Newly Synthesized Gemini Surfactant

Condensate accumulation in the vicinity of the gas well is known to curtail hydrocarbon production by up to 80%. Numerous approaches are being employed to mitigate condensate damage and improve gas productivity. Chemical treatment, gas recycling, and hydraulic fracturing are the most effective techn...

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Autores principales: Hassan, Amjed, Mahmoud, Mohamed, Kamal, Muhammad Shahzad, Hussain, Syed Muhammad Shakil, Patil, Shirish
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7412374/
https://www.ncbi.nlm.nih.gov/pubmed/32630778
http://dx.doi.org/10.3390/molecules25133030
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author Hassan, Amjed
Mahmoud, Mohamed
Kamal, Muhammad Shahzad
Hussain, Syed Muhammad Shakil
Patil, Shirish
author_facet Hassan, Amjed
Mahmoud, Mohamed
Kamal, Muhammad Shahzad
Hussain, Syed Muhammad Shakil
Patil, Shirish
author_sort Hassan, Amjed
collection PubMed
description Condensate accumulation in the vicinity of the gas well is known to curtail hydrocarbon production by up to 80%. Numerous approaches are being employed to mitigate condensate damage and improve gas productivity. Chemical treatment, gas recycling, and hydraulic fracturing are the most effective techniques for combatting the condensate bank. However, the gas injection technique showed temporary condensate recovery and limited improvement in gas productivity. Hydraulic fracturing is considered to be an expensive approach for treating condensate banking problems. In this study, a newly synthesized gemini surfactant (GS) was developed to prevent the formation of condensate blockage in the gas condensate reservoirs. Flushing the near-wellbore area with GS will change the rock wettability and thereby reduce the capillary forces holding the condensate due to the strong adsorption capacity of GS on the rock surface. In this study, several measurements were conducted to assess the performance of GS in mitigating the condensate bank including coreflood, relative permeability, phase behavior, and nuclear magnetic resonance (NMR) measurements. The results show that GS can reduce the capillary pressure by as much as 40%, increase the condensate mobility by more than 80%, and thereby mitigate the condensate bank by up to 84%. Phase behavior measurements indicate that adding GS to the oil–brine system could not induce any emulsions at different salinity levels. Moreover, NMR and permeability measurements reveal that the gemini surfactant has no effect on the pore system and no changes were observed in the T(2) relaxation profiles with and without the GS injection. Ultimately, this work introduces a novel and effective treatment for mitigating the condensate bank. The new treatment showed an attractive performance in reducing liquid saturation and increasing the condensate relative permeability.
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spelling pubmed-74123742020-08-26 Novel Treatment for Mitigating Condensate Bank Using a Newly Synthesized Gemini Surfactant Hassan, Amjed Mahmoud, Mohamed Kamal, Muhammad Shahzad Hussain, Syed Muhammad Shakil Patil, Shirish Molecules Article Condensate accumulation in the vicinity of the gas well is known to curtail hydrocarbon production by up to 80%. Numerous approaches are being employed to mitigate condensate damage and improve gas productivity. Chemical treatment, gas recycling, and hydraulic fracturing are the most effective techniques for combatting the condensate bank. However, the gas injection technique showed temporary condensate recovery and limited improvement in gas productivity. Hydraulic fracturing is considered to be an expensive approach for treating condensate banking problems. In this study, a newly synthesized gemini surfactant (GS) was developed to prevent the formation of condensate blockage in the gas condensate reservoirs. Flushing the near-wellbore area with GS will change the rock wettability and thereby reduce the capillary forces holding the condensate due to the strong adsorption capacity of GS on the rock surface. In this study, several measurements were conducted to assess the performance of GS in mitigating the condensate bank including coreflood, relative permeability, phase behavior, and nuclear magnetic resonance (NMR) measurements. The results show that GS can reduce the capillary pressure by as much as 40%, increase the condensate mobility by more than 80%, and thereby mitigate the condensate bank by up to 84%. Phase behavior measurements indicate that adding GS to the oil–brine system could not induce any emulsions at different salinity levels. Moreover, NMR and permeability measurements reveal that the gemini surfactant has no effect on the pore system and no changes were observed in the T(2) relaxation profiles with and without the GS injection. Ultimately, this work introduces a novel and effective treatment for mitigating the condensate bank. The new treatment showed an attractive performance in reducing liquid saturation and increasing the condensate relative permeability. MDPI 2020-07-02 /pmc/articles/PMC7412374/ /pubmed/32630778 http://dx.doi.org/10.3390/molecules25133030 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Hassan, Amjed
Mahmoud, Mohamed
Kamal, Muhammad Shahzad
Hussain, Syed Muhammad Shakil
Patil, Shirish
Novel Treatment for Mitigating Condensate Bank Using a Newly Synthesized Gemini Surfactant
title Novel Treatment for Mitigating Condensate Bank Using a Newly Synthesized Gemini Surfactant
title_full Novel Treatment for Mitigating Condensate Bank Using a Newly Synthesized Gemini Surfactant
title_fullStr Novel Treatment for Mitigating Condensate Bank Using a Newly Synthesized Gemini Surfactant
title_full_unstemmed Novel Treatment for Mitigating Condensate Bank Using a Newly Synthesized Gemini Surfactant
title_short Novel Treatment for Mitigating Condensate Bank Using a Newly Synthesized Gemini Surfactant
title_sort novel treatment for mitigating condensate bank using a newly synthesized gemini surfactant
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7412374/
https://www.ncbi.nlm.nih.gov/pubmed/32630778
http://dx.doi.org/10.3390/molecules25133030
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