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dc.contributor.authorNwidee, L.
dc.contributor.authorAl-Anssari, S.
dc.contributor.authorBarifcani, Ahmed
dc.contributor.authorSarmadivaleh, Mohammad
dc.contributor.authorIglauer, Stefan
dc.date.accessioned2018-12-13T09:13:15Z
dc.date.available2018-12-13T09:13:15Z
dc.date.created2018-12-12T02:46:46Z
dc.date.issued2016
dc.identifier.citationNwidee, L. and Al-Anssari, S. and Barifcani, A. and Sarmadivaleh, M. and Iglauer, S. 2016. Nanofluids for enhanced oil recovery processes: Wettability alteration using zirconium oxide, pp. 2808-2814.
dc.identifier.urihttp://hdl.handle.net/20.500.11937/72385
dc.description.abstract

© 2016, Offshore Technology Conference Ultimate oil recovery and displacement efficiency at the pore-scale are controlled by the rock wettability thus there is a growing interest in the wetting behaviour of reservoir rocks as production from fractured oil-wet or mixed-wet limestone formations have remained a key challenge. Conventional waterflooding methods are inefficient in such formation due to poor spontaneous imbibition of water into the oil-wet rock capillaries. However, altering the wettability to water-wet could yield recovery of significant amounts of additional oil thus this study investigates the influence of nanoparticles on wettability alteration. The efficiency of various formulated zirconium-oxide (ZrO2) based nanofluids at different nanoparticle concentrations (0-0.05 wt. %) was assessed through contact angle measurements. Results from the experiments showed ZrO2 nanofluid have great potentials in changing oil-wet limestone towards strongly water-wet condition. The best performance was observed at 0.05wt% ZrO2 nanoparticle concentration which changed an originally strongly oil-wet (152°) calcite substrate towards a strongly water-wet (44°) state thus we conclude that ZrO2 is a good agent for enhanced oil recovery.

dc.titleNanofluids for enhanced oil recovery processes: Wettability alteration using zirconium oxide
dc.typeConference Paper
dcterms.source.startPage2808
dcterms.source.endPage2814
dcterms.source.titleOffshore Technology Conference Asia 2016, OTCA 2016
dcterms.source.seriesOffshore Technology Conference Asia 2016, OTCA 2016
dcterms.source.isbn9781510830721
curtin.departmentWASM: Minerals, Energy and Chemical Engineering (WASM-MECE)
curtin.accessStatusFulltext not available


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