A review study of metal oxide nanoparticles utilization in wettability alteration mechanism

Wettability is the property of rock which vital in controlling the location, flow, and distribution of fluids within a reservoir. The increases in the water-wetness will improve both sweep and displacement efficiency, consequently releasing the trapped oil within the pore space and throat of the roc...

Full description

Saved in:
Bibliographic Details
Main Authors: Wan Mohd Shaharizuan Mat Latif, Mohd Syazwan Mohd Musa, Norfazliana Abdullah, Mohd Syahlan Mohd Syukri, Mohd Adly Ibrahim, Norzilawati Mohamad, Sairoz Norazlan Sharbini, Norhafizuddin Husein, Ahmad Amirhilmi A Razak, Sagala Farad
Format: Proceedings
Language:English
English
Published: American Institute of Physics Inc. 2023
Subjects:
Online Access:https://eprints.ums.edu.my/id/eprint/38253/1/ABSTRACT.pdf
https://eprints.ums.edu.my/id/eprint/38253/2/FULL%20TEXT.pdf
https://eprints.ums.edu.my/id/eprint/38253/
https://www.researchgate.net/publication/376366262_A_review_study_of_metal_oxide_nanoparticles_utilization_in_wettability_alteration_mechanism
Tags: Add Tag
No Tags, Be the first to tag this record!
id my.ums.eprints.38253
record_format eprints
spelling my.ums.eprints.382532024-02-15T02:59:39Z https://eprints.ums.edu.my/id/eprint/38253/ A review study of metal oxide nanoparticles utilization in wettability alteration mechanism Wan Mohd Shaharizuan Mat Latif Mohd Syazwan Mohd Musa Norfazliana Abdullah Mohd Syahlan Mohd Syukri Mohd Adly Ibrahim Norzilawati Mohamad Sairoz Norazlan Sharbini Norhafizuddin Husein Ahmad Amirhilmi A Razak Sagala Farad QC251-338.5 Heat TK7800-8360 Electronics Wettability is the property of rock which vital in controlling the location, flow, and distribution of fluids within a reservoir. The increases in the water-wetness will improve both sweep and displacement efficiency, consequently releasing the trapped oil within the pore space and throat of the rock. The water-wetness will lead to a favorable mobility ratio by changing the water and oil relative permeability and reducing the capillary force by decreasing the interfacial tension (IFT) of oil-water within a reservoir. On the other hand, the vast application of nanotechnology also provides the metal oxide nanoparticles as a wettability modifier, although still limited compared to silicon dioxide (SiO2) nanoparticles. Hence, in this review study, the effects of several metal oxide nanofluids: aluminium oxide (Al2O3), cerium oxide (CeO2), cuprum oxide (CuO), iron oxide (Fe2O3), magnesium oxide (MgO), nickel oxide (NiO), titanium dioxide (TiO2), and zirconium dioxide (ZrO2) during wettability alteration of the oil-wet rocks towards water-wet were analyzed and compared with the SiO2. The procedures for artificially modifying the wettability in laboratory experiments are also investigated, including porous media preservation and experimental conditions. The fundamentals of wettability alteration by a nanofluid, which are cleaning and coating mechanisms are presented too. Key factors such as the concentration of nanoparticle, particle size, brine salinity, and the presence or absence of surfactant were also discussed in detail. Meanwhile, the effectiveness of reducing the oil viscosity and increasing the brine viscosity showed that an extra mechanism could be achieved by utilizing the metal oxide nanoparticles, conversely, it was not achieved by the SiO2. American Institute of Physics Inc. 2023 Proceedings PeerReviewed text en https://eprints.ums.edu.my/id/eprint/38253/1/ABSTRACT.pdf text en https://eprints.ums.edu.my/id/eprint/38253/2/FULL%20TEXT.pdf Wan Mohd Shaharizuan Mat Latif and Mohd Syazwan Mohd Musa and Norfazliana Abdullah and Mohd Syahlan Mohd Syukri and Mohd Adly Ibrahim and Norzilawati Mohamad and Sairoz Norazlan Sharbini and Norhafizuddin Husein and Ahmad Amirhilmi A Razak and Sagala Farad (2023) A review study of metal oxide nanoparticles utilization in wettability alteration mechanism. https://www.researchgate.net/publication/376366262_A_review_study_of_metal_oxide_nanoparticles_utilization_in_wettability_alteration_mechanism
institution Universiti Malaysia Sabah
building UMS Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Malaysia Sabah
content_source UMS Institutional Repository
url_provider http://eprints.ums.edu.my/
language English
English
topic QC251-338.5 Heat
TK7800-8360 Electronics
spellingShingle QC251-338.5 Heat
TK7800-8360 Electronics
Wan Mohd Shaharizuan Mat Latif
Mohd Syazwan Mohd Musa
Norfazliana Abdullah
Mohd Syahlan Mohd Syukri
Mohd Adly Ibrahim
Norzilawati Mohamad
Sairoz Norazlan Sharbini
Norhafizuddin Husein
Ahmad Amirhilmi A Razak
Sagala Farad
A review study of metal oxide nanoparticles utilization in wettability alteration mechanism
description Wettability is the property of rock which vital in controlling the location, flow, and distribution of fluids within a reservoir. The increases in the water-wetness will improve both sweep and displacement efficiency, consequently releasing the trapped oil within the pore space and throat of the rock. The water-wetness will lead to a favorable mobility ratio by changing the water and oil relative permeability and reducing the capillary force by decreasing the interfacial tension (IFT) of oil-water within a reservoir. On the other hand, the vast application of nanotechnology also provides the metal oxide nanoparticles as a wettability modifier, although still limited compared to silicon dioxide (SiO2) nanoparticles. Hence, in this review study, the effects of several metal oxide nanofluids: aluminium oxide (Al2O3), cerium oxide (CeO2), cuprum oxide (CuO), iron oxide (Fe2O3), magnesium oxide (MgO), nickel oxide (NiO), titanium dioxide (TiO2), and zirconium dioxide (ZrO2) during wettability alteration of the oil-wet rocks towards water-wet were analyzed and compared with the SiO2. The procedures for artificially modifying the wettability in laboratory experiments are also investigated, including porous media preservation and experimental conditions. The fundamentals of wettability alteration by a nanofluid, which are cleaning and coating mechanisms are presented too. Key factors such as the concentration of nanoparticle, particle size, brine salinity, and the presence or absence of surfactant were also discussed in detail. Meanwhile, the effectiveness of reducing the oil viscosity and increasing the brine viscosity showed that an extra mechanism could be achieved by utilizing the metal oxide nanoparticles, conversely, it was not achieved by the SiO2.
format Proceedings
author Wan Mohd Shaharizuan Mat Latif
Mohd Syazwan Mohd Musa
Norfazliana Abdullah
Mohd Syahlan Mohd Syukri
Mohd Adly Ibrahim
Norzilawati Mohamad
Sairoz Norazlan Sharbini
Norhafizuddin Husein
Ahmad Amirhilmi A Razak
Sagala Farad
author_facet Wan Mohd Shaharizuan Mat Latif
Mohd Syazwan Mohd Musa
Norfazliana Abdullah
Mohd Syahlan Mohd Syukri
Mohd Adly Ibrahim
Norzilawati Mohamad
Sairoz Norazlan Sharbini
Norhafizuddin Husein
Ahmad Amirhilmi A Razak
Sagala Farad
author_sort Wan Mohd Shaharizuan Mat Latif
title A review study of metal oxide nanoparticles utilization in wettability alteration mechanism
title_short A review study of metal oxide nanoparticles utilization in wettability alteration mechanism
title_full A review study of metal oxide nanoparticles utilization in wettability alteration mechanism
title_fullStr A review study of metal oxide nanoparticles utilization in wettability alteration mechanism
title_full_unstemmed A review study of metal oxide nanoparticles utilization in wettability alteration mechanism
title_sort review study of metal oxide nanoparticles utilization in wettability alteration mechanism
publisher American Institute of Physics Inc.
publishDate 2023
url https://eprints.ums.edu.my/id/eprint/38253/1/ABSTRACT.pdf
https://eprints.ums.edu.my/id/eprint/38253/2/FULL%20TEXT.pdf
https://eprints.ums.edu.my/id/eprint/38253/
https://www.researchgate.net/publication/376366262_A_review_study_of_metal_oxide_nanoparticles_utilization_in_wettability_alteration_mechanism
_version_ 1792152918916333568
score 13.211869