Effect of Surfactant and Nanoparticles in Low Salinity Water on Interfacial Tension and Contact Angle

In this study, the mixture of the surfactant, nanoparticles and brine are utilized to investigate the performance for the interfacial tension reduction and contact angle changes at various conditions. From the results, IFT decreased adversely with brine content, whereas the nanoparticles even increa...

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Main Authors: Nandar Phoo Pwint, Maneeintr Kreangkrai
Format: Article
Language:English
Published: EDP Sciences 2023-01-01
Series:E3S Web of Conferences
Subjects:
Online Access:https://www.e3s-conferences.org/articles/e3sconf/pdf/2023/59/e3sconf_icres2023_04003.pdf
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author Nandar Phoo Pwint
Maneeintr Kreangkrai
author_facet Nandar Phoo Pwint
Maneeintr Kreangkrai
author_sort Nandar Phoo Pwint
collection DOAJ
description In this study, the mixture of the surfactant, nanoparticles and brine are utilized to investigate the performance for the interfacial tension reduction and contact angle changes at various conditions. From the results, IFT decreased adversely with brine content, whereas the nanoparticles even increased IFT when in used alone in the system. In addition, the temperature and the surfactant concentration have the effects on IFT, and nanoparticles are also the key contributor of ultra-low IFT reduction with the mixture of the surfactant-brine system. Meanwhile, without even the ion changes, the brine can affect the contact angle changes between crude oil and solid surface.
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spelling doaj.art-b92e8f6f8cab4ba589f16b6e9725ab0f2023-09-26T10:11:16ZengEDP SciencesE3S Web of Conferences2267-12422023-01-014220400310.1051/e3sconf/202342204003e3sconf_icres2023_04003Effect of Surfactant and Nanoparticles in Low Salinity Water on Interfacial Tension and Contact AngleNandar Phoo Pwint0Maneeintr Kreangkrai1Carbon Capture, Storage and Utilization Research Laboratory, Department of Mining and Petroleum Engineering, Faculty of Engineering, Chulalongkorn UniversityCarbon Capture, Storage and Utilization Research Laboratory, Department of Mining and Petroleum Engineering, Faculty of Engineering, Chulalongkorn UniversityIn this study, the mixture of the surfactant, nanoparticles and brine are utilized to investigate the performance for the interfacial tension reduction and contact angle changes at various conditions. From the results, IFT decreased adversely with brine content, whereas the nanoparticles even increased IFT when in used alone in the system. In addition, the temperature and the surfactant concentration have the effects on IFT, and nanoparticles are also the key contributor of ultra-low IFT reduction with the mixture of the surfactant-brine system. Meanwhile, without even the ion changes, the brine can affect the contact angle changes between crude oil and solid surface.https://www.e3s-conferences.org/articles/e3sconf/pdf/2023/59/e3sconf_icres2023_04003.pdfsdssilica nanoparticleslow salinityift and contact angle reduction
spellingShingle Nandar Phoo Pwint
Maneeintr Kreangkrai
Effect of Surfactant and Nanoparticles in Low Salinity Water on Interfacial Tension and Contact Angle
E3S Web of Conferences
sds
silica nanoparticles
low salinity
ift and contact angle reduction
title Effect of Surfactant and Nanoparticles in Low Salinity Water on Interfacial Tension and Contact Angle
title_full Effect of Surfactant and Nanoparticles in Low Salinity Water on Interfacial Tension and Contact Angle
title_fullStr Effect of Surfactant and Nanoparticles in Low Salinity Water on Interfacial Tension and Contact Angle
title_full_unstemmed Effect of Surfactant and Nanoparticles in Low Salinity Water on Interfacial Tension and Contact Angle
title_short Effect of Surfactant and Nanoparticles in Low Salinity Water on Interfacial Tension and Contact Angle
title_sort effect of surfactant and nanoparticles in low salinity water on interfacial tension and contact angle
topic sds
silica nanoparticles
low salinity
ift and contact angle reduction
url https://www.e3s-conferences.org/articles/e3sconf/pdf/2023/59/e3sconf_icres2023_04003.pdf
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