Amphipathic anionic surfactant modified hydrophilic polyethylene glycol-nanosilica composite as effective viscosifier and filtration control agent for water-based drilling muds

Highly stabilized and dispersible composites of polyethylene glycol and silica nanoparticle in aqueous drilling mud can provide desirable rheological and filtration properties for drilling jobs. Therefore, high-quality hydrophilic polyethylene glycol-nanosilica composite modified by amphipathic anio...

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Main Authors: Blkoor, Shafeeg O., Mohd. Norddin, M. N. A., Ismail, Issham, Oseh, Jeffrey O., Agi, Augustine, Gbadamosi, Afeez O., Okoli, Nnanna O., Onyejekwe, Ifeanyichukwu M., Risal, Abdul R.
Format: Article
Language:English
Published: Elsevier B.V. 2022
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Online Access:http://eprints.utm.my/id/eprint/101043/1/MuhammadNoorulAnam2022_AmphipathicAnionicSurfactantModifiedHydrophilic.pdf
http://eprints.utm.my/id/eprint/101043/
http://dx.doi.org/10.1016/j.arabjc.2022.103741
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spelling my.utm.1010432023-05-25T03:55:07Z http://eprints.utm.my/id/eprint/101043/ Amphipathic anionic surfactant modified hydrophilic polyethylene glycol-nanosilica composite as effective viscosifier and filtration control agent for water-based drilling muds Blkoor, Shafeeg O. Mohd. Norddin, M. N. A. Ismail, Issham Oseh, Jeffrey O. Agi, Augustine Gbadamosi, Afeez O. Okoli, Nnanna O. Onyejekwe, Ifeanyichukwu M. Risal, Abdul R. TP Chemical technology Highly stabilized and dispersible composites of polyethylene glycol and silica nanoparticle in aqueous drilling mud can provide desirable rheological and filtration properties for drilling jobs. Therefore, high-quality hydrophilic polyethylene glycol-nanosilica composite modified by amphipathic anionic sodium dodecyl sulfate (PEG-SiO2 NC-SDS) to improve the rheological and filtration properties of water-based muds (WBMs) was submitted. Test of zeta potential, functional groups, morphology, elemental composition, and temperature stability together with rheology and filtration tests were undertaken to assess the wide-ranging mud properties of the SDS modified PEG-SiO2 NC drilling muds. Zeta potential, FTIR, FESEM, EDX, and TGA results indicate that the SDS modified PEG-SiO2 NC was effectively formed and modified, it embodies exceptional thermal stability and is efficiently dispersed. The SDS modified PEG-SiO2 NC has a narrow size distribution range between 82 nm and 410 nm, and a specific surface area of 41.4 m2/g that is sufficiently high for particle-molecule interactions. Its rheological variables are notably shear-thinning and did not undergo notable fluctuation. The filtrate loss of 1.5 g SDS bearing PEG-SiO2 NC at 78 °F and 250 °F was only 5.4 ml and 9.6 ml, against 10.2 ml and 20.5 ml of the WBMs, respectively. High dispersion stability and high thermal stability aided its excellent viscosity and filtration control performance. Moreover, optimum rheological properties for the SDS modified PEG-SiO2 NC drilling muds with Bingham plastic and Ostwald-de-Waele models occurred with mud composition CD3 (CD3 = 1.5 g SDS modified PEG-SiO2 NC + WBM). Thus, this study can help to understand the applications of this nanocomposite as a potential viscosifier and filtrate loss control material for WBMs. Elsevier B.V. 2022 Article PeerReviewed application/pdf en http://eprints.utm.my/id/eprint/101043/1/MuhammadNoorulAnam2022_AmphipathicAnionicSurfactantModifiedHydrophilic.pdf Blkoor, Shafeeg O. and Mohd. Norddin, M. N. A. and Ismail, Issham and Oseh, Jeffrey O. and Agi, Augustine and Gbadamosi, Afeez O. and Okoli, Nnanna O. and Onyejekwe, Ifeanyichukwu M. and Risal, Abdul R. (2022) Amphipathic anionic surfactant modified hydrophilic polyethylene glycol-nanosilica composite as effective viscosifier and filtration control agent for water-based drilling muds. Arabian Journal of Chemistry, 15 (4). pp. 1-23. ISSN 1878-5352 http://dx.doi.org/10.1016/j.arabjc.2022.103741 DOI : 10.1016/j.arabjc.2022.103741
institution Universiti Teknologi Malaysia
building UTM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Malaysia
content_source UTM Institutional Repository
url_provider http://eprints.utm.my/
language English
topic TP Chemical technology
spellingShingle TP Chemical technology
Blkoor, Shafeeg O.
Mohd. Norddin, M. N. A.
Ismail, Issham
Oseh, Jeffrey O.
Agi, Augustine
Gbadamosi, Afeez O.
Okoli, Nnanna O.
Onyejekwe, Ifeanyichukwu M.
Risal, Abdul R.
Amphipathic anionic surfactant modified hydrophilic polyethylene glycol-nanosilica composite as effective viscosifier and filtration control agent for water-based drilling muds
description Highly stabilized and dispersible composites of polyethylene glycol and silica nanoparticle in aqueous drilling mud can provide desirable rheological and filtration properties for drilling jobs. Therefore, high-quality hydrophilic polyethylene glycol-nanosilica composite modified by amphipathic anionic sodium dodecyl sulfate (PEG-SiO2 NC-SDS) to improve the rheological and filtration properties of water-based muds (WBMs) was submitted. Test of zeta potential, functional groups, morphology, elemental composition, and temperature stability together with rheology and filtration tests were undertaken to assess the wide-ranging mud properties of the SDS modified PEG-SiO2 NC drilling muds. Zeta potential, FTIR, FESEM, EDX, and TGA results indicate that the SDS modified PEG-SiO2 NC was effectively formed and modified, it embodies exceptional thermal stability and is efficiently dispersed. The SDS modified PEG-SiO2 NC has a narrow size distribution range between 82 nm and 410 nm, and a specific surface area of 41.4 m2/g that is sufficiently high for particle-molecule interactions. Its rheological variables are notably shear-thinning and did not undergo notable fluctuation. The filtrate loss of 1.5 g SDS bearing PEG-SiO2 NC at 78 °F and 250 °F was only 5.4 ml and 9.6 ml, against 10.2 ml and 20.5 ml of the WBMs, respectively. High dispersion stability and high thermal stability aided its excellent viscosity and filtration control performance. Moreover, optimum rheological properties for the SDS modified PEG-SiO2 NC drilling muds with Bingham plastic and Ostwald-de-Waele models occurred with mud composition CD3 (CD3 = 1.5 g SDS modified PEG-SiO2 NC + WBM). Thus, this study can help to understand the applications of this nanocomposite as a potential viscosifier and filtrate loss control material for WBMs.
format Article
author Blkoor, Shafeeg O.
Mohd. Norddin, M. N. A.
Ismail, Issham
Oseh, Jeffrey O.
Agi, Augustine
Gbadamosi, Afeez O.
Okoli, Nnanna O.
Onyejekwe, Ifeanyichukwu M.
Risal, Abdul R.
author_facet Blkoor, Shafeeg O.
Mohd. Norddin, M. N. A.
Ismail, Issham
Oseh, Jeffrey O.
Agi, Augustine
Gbadamosi, Afeez O.
Okoli, Nnanna O.
Onyejekwe, Ifeanyichukwu M.
Risal, Abdul R.
author_sort Blkoor, Shafeeg O.
title Amphipathic anionic surfactant modified hydrophilic polyethylene glycol-nanosilica composite as effective viscosifier and filtration control agent for water-based drilling muds
title_short Amphipathic anionic surfactant modified hydrophilic polyethylene glycol-nanosilica composite as effective viscosifier and filtration control agent for water-based drilling muds
title_full Amphipathic anionic surfactant modified hydrophilic polyethylene glycol-nanosilica composite as effective viscosifier and filtration control agent for water-based drilling muds
title_fullStr Amphipathic anionic surfactant modified hydrophilic polyethylene glycol-nanosilica composite as effective viscosifier and filtration control agent for water-based drilling muds
title_full_unstemmed Amphipathic anionic surfactant modified hydrophilic polyethylene glycol-nanosilica composite as effective viscosifier and filtration control agent for water-based drilling muds
title_sort amphipathic anionic surfactant modified hydrophilic polyethylene glycol-nanosilica composite as effective viscosifier and filtration control agent for water-based drilling muds
publisher Elsevier B.V.
publishDate 2022
url http://eprints.utm.my/id/eprint/101043/1/MuhammadNoorulAnam2022_AmphipathicAnionicSurfactantModifiedHydrophilic.pdf
http://eprints.utm.my/id/eprint/101043/
http://dx.doi.org/10.1016/j.arabjc.2022.103741
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