Effect of annealing temperature on the crystallization of hematite-alumina (Fe2O3-Al2O3 ) nanocomposite and its influence in EOR application

Usage of magnetic materials is not unusual in oil and gas research, specifically in enhanced oil recovery (EOR) where various magnetic micro- and nanoparticles were used to enhance sweep efficiency, reducing interfacial tension and heat generation. Magnetic nanoparticles which are activated by a mag...

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Main Authors: Soleimani, H., Latiff, N.R.A., Yahya, N., Zaid, H.M., Sabet, M., Guan, B.H., Chuan, L.K.
Format: Article
Published: Trans Tech Publications Ltd 2014
Online Access:https://www.scopus.com/inward/record.uri?eid=2-s2.0-84930029302&doi=10.4028%2fwww.scientific.net%2fJNanoR.29.105&partnerID=40&md5=4444ff24415b25adefb2a9b4dd64695d
http://eprints.utp.edu.my/31758/
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spelling my.utp.eprints.317582022-03-29T03:36:46Z Effect of annealing temperature on the crystallization of hematite-alumina (Fe2O3-Al2O3 ) nanocomposite and its influence in EOR application Soleimani, H. Latiff, N.R.A. Yahya, N. Zaid, H.M. Sabet, M. Guan, B.H. Chuan, L.K. Usage of magnetic materials is not unusual in oil and gas research, specifically in enhanced oil recovery (EOR) where various magnetic micro- and nanoparticles were used to enhance sweep efficiency, reducing interfacial tension and heat generation. Magnetic nanoparticles which are activated by a magnetic field are anticipated to have the ability to travel far into the oil reservoir and assist in the displacement of the trapped oil. In this work, magnetic Fe2O3-Al2O3 nanocomposite was synthesized and characterized for its morphological, structural and magnetic properties. At an annealing temperature of 900°C, this nanomaterial starts to exhibit magnetization as the composite structure crystallizes to the stable Fe2O3 and Al2O3. Subsequently, dispersion of the 0.01 wt Fe2O3-Al2O3 nanocomposite in distilled water was used for displacement tests to validate its feasibility to be applied in EOR. In the displacement test, the effect of electromagnetic waves on the magnetization of Fe2O3-Al2O3 nanofluid was also investigated by irradiating a 13.6 MHz square wave to the porous medium while nanofluid injection is taking place. In conclusion, an almost 20 increment in the recovery of oil was obtained with the application of electromagnetic waves in 2.4 pore volumes (PV) injection of Fe2O3-Al2O3 nanofluid. © (2014) Trans Tech Publications, Switzerland. Trans Tech Publications Ltd 2014 Article NonPeerReviewed https://www.scopus.com/inward/record.uri?eid=2-s2.0-84930029302&doi=10.4028%2fwww.scientific.net%2fJNanoR.29.105&partnerID=40&md5=4444ff24415b25adefb2a9b4dd64695d Soleimani, H. and Latiff, N.R.A. and Yahya, N. and Zaid, H.M. and Sabet, M. and Guan, B.H. and Chuan, L.K. (2014) Effect of annealing temperature on the crystallization of hematite-alumina (Fe2O3-Al2O3 ) nanocomposite and its influence in EOR application. Journal of Nano Research, 29 . pp. 105-113. http://eprints.utp.edu.my/31758/
institution Universiti Teknologi Petronas
building UTP Resource Centre
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Petronas
content_source UTP Institutional Repository
url_provider http://eprints.utp.edu.my/
description Usage of magnetic materials is not unusual in oil and gas research, specifically in enhanced oil recovery (EOR) where various magnetic micro- and nanoparticles were used to enhance sweep efficiency, reducing interfacial tension and heat generation. Magnetic nanoparticles which are activated by a magnetic field are anticipated to have the ability to travel far into the oil reservoir and assist in the displacement of the trapped oil. In this work, magnetic Fe2O3-Al2O3 nanocomposite was synthesized and characterized for its morphological, structural and magnetic properties. At an annealing temperature of 900°C, this nanomaterial starts to exhibit magnetization as the composite structure crystallizes to the stable Fe2O3 and Al2O3. Subsequently, dispersion of the 0.01 wt Fe2O3-Al2O3 nanocomposite in distilled water was used for displacement tests to validate its feasibility to be applied in EOR. In the displacement test, the effect of electromagnetic waves on the magnetization of Fe2O3-Al2O3 nanofluid was also investigated by irradiating a 13.6 MHz square wave to the porous medium while nanofluid injection is taking place. In conclusion, an almost 20 increment in the recovery of oil was obtained with the application of electromagnetic waves in 2.4 pore volumes (PV) injection of Fe2O3-Al2O3 nanofluid. © (2014) Trans Tech Publications, Switzerland.
format Article
author Soleimani, H.
Latiff, N.R.A.
Yahya, N.
Zaid, H.M.
Sabet, M.
Guan, B.H.
Chuan, L.K.
spellingShingle Soleimani, H.
Latiff, N.R.A.
Yahya, N.
Zaid, H.M.
Sabet, M.
Guan, B.H.
Chuan, L.K.
Effect of annealing temperature on the crystallization of hematite-alumina (Fe2O3-Al2O3 ) nanocomposite and its influence in EOR application
author_facet Soleimani, H.
Latiff, N.R.A.
Yahya, N.
Zaid, H.M.
Sabet, M.
Guan, B.H.
Chuan, L.K.
author_sort Soleimani, H.
title Effect of annealing temperature on the crystallization of hematite-alumina (Fe2O3-Al2O3 ) nanocomposite and its influence in EOR application
title_short Effect of annealing temperature on the crystallization of hematite-alumina (Fe2O3-Al2O3 ) nanocomposite and its influence in EOR application
title_full Effect of annealing temperature on the crystallization of hematite-alumina (Fe2O3-Al2O3 ) nanocomposite and its influence in EOR application
title_fullStr Effect of annealing temperature on the crystallization of hematite-alumina (Fe2O3-Al2O3 ) nanocomposite and its influence in EOR application
title_full_unstemmed Effect of annealing temperature on the crystallization of hematite-alumina (Fe2O3-Al2O3 ) nanocomposite and its influence in EOR application
title_sort effect of annealing temperature on the crystallization of hematite-alumina (fe2o3-al2o3 ) nanocomposite and its influence in eor application
publisher Trans Tech Publications Ltd
publishDate 2014
url https://www.scopus.com/inward/record.uri?eid=2-s2.0-84930029302&doi=10.4028%2fwww.scientific.net%2fJNanoR.29.105&partnerID=40&md5=4444ff24415b25adefb2a9b4dd64695d
http://eprints.utp.edu.my/31758/
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score 13.209306