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      Optimizing nanofluid additives for enhanced thermophysical properties in anionic crude oil for EOR applications

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          Abstract

          This research delved into the effects of introducing multi‐walled carbon nanotubes (MWCNTs) and sodium dodecyl sulphate (SDS) into crude oil with an anionic base, aiming to enhance its thermophysical attributes in the EOR process. The investigation encompassed a range of properties, including interfacial tension, viscosity, density, and electrical conductivity, measured using an LV rheometer with spindle 18. Various ratios of MWCNTs and SDS were mixed with the crude oil to evaluate their impacts. The study uncovered that the 1:1 ratio of MWCNTs to SDS achieved a noteworthy 10% reduction in interfacial tension while minimally affecting viscosity, showing promise for practical applications. Temperature had diverse effects on viscosity and interfacial tension, displaying fluctuating trends. The highest observed result was a substantial 190% viscosity increase at 40°C with a 2:1 ratio, whereas the lowest was a slight −0.81% density change at 60°C for the 1:1 ratio. Additionally, interfacial tension consistently decreased over time for all ratios at various temperatures, with the most significant reductions observed at 40 and 60°C, particularly for the 1:2 and 1:1 ratios. Furthermore, adding MWCNTs and SDS led to a remarkable drop in electrical conductivity, indicating a substantial decrease in salt content within the crude oil. However, it was noted that higher MWCNT concentrations might not be cost‐effective, emphasizing the importance of optimizing additive ratios for a balance between performance and economic viability. This study highlights the potential of tailored nanofluid formulations to improve the thermophysical properties of crude oil, potentially enhancing extraction and refining processes.

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          Most cited references61

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          Heat transfer efficiency of Al 2 O 3 -MWCNT/thermal oil hybrid nanofluid as a cooling fluid in thermal and energy management applications: An experimental and theoretical investigation

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            Metal oxide-based nanoparticles: revealing their potential to enhance oil recovery in different wettability systems

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              Green oxidation protocol: Selective conversions of alcohols and alkenes to aldehydes, ketones and epoxides by using a new multiwall carbon nanotube-based hybrid nanocatalyst via ultrasound irradiation

              Ali Maleki (2018)
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                Author and article information

                Contributors
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                Journal
                The Canadian Journal of Chemical Engineering
                Can J Chem Eng
                Wiley
                0008-4034
                1939-019X
                February 14 2024
                Affiliations
                [1 ] Xi'an University of Science and Technology Xi'an China
                [2 ] Faculty of Chemical and Petroleum Engineering University of Tabriz Tabriz Iran
                [3 ] Department of Chemical Engineering Ferdowsi University of Mashhad Mashhad Iran
                [4 ] J. Mike Walker ‘66 Mechanical Engineering Department Texas A&M University College Station Texas USA
                [5 ] School of Chemical, Biological and Materials Engineering The University of Oklahoma Norman Oklahoma USA
                Article
                10.1002/cjce.25208
                89cb6ff4-c749-4d75-91ec-5b471cdb233a
                © 2024

                http://creativecommons.org/licenses/by/4.0/

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