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Modeling the Kinetics of Heavy Crude Oil Cu-Oleate Aquathermolysis

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dc.contributor Казанский федеральный университет
dc.contributor.author Tirado Kota Aleksis
dc.contributor.author Felix Lugo Jose Guillermo
dc.contributor.author Suwaid Muneer
dc.contributor.author Al-Muntaser Ameen Ahmed
dc.contributor.author Antonenko Dmitry A.
dc.contributor.author Afanasiev Igor S.
dc.contributor.author Varfolomeev Mikhail Alekseevich
dc.contributor.author Yuan Chengdong
dc.contributor.author Ancheyta Juarez Jorge
dc.date.accessioned 2026-09-08T08:40:54Z
dc.date.available 2026-09-08T08:40:54Z
dc.date.issued 2023
dc.identifier.citation Modeling the Kinetics of Heavy Crude Oil Cu-Oleate Aquathermolysis / A. Tirado, G. Felix, M.A. Suwaid, A.A. Al-Muntaser, D.A. Antonenko, I.S. Afanasiev, M.A. Varfolomeev, C. Yuan, J. Ancheyta // Ind Eng Chem Res. - 2023. - Vol. 62. - P. 9114-9122.
dc.identifier.uri https://dspace.kpfu.ru/xmlui/handle/net/186128
dc.description.abstract During steam injection processes, oil-soluble catalysts have demonstrated high efficiency by improving the flow properties of heavy crude oil into the reservoir. In order to gain a deeper understanding of the effect of this catalyst type and its reaction mechanism, further studies based on complex kinetic models are required. The catalytic effect of copper oleate on aquathermolysis of heavy crude oil was studied using experimental data obtained with a water/oil ratio of 3:7, a temperature range of 250 to 300 ?C, and up to 72 h of reaction time. A kinetic model was developed to predict the yield of the SARA fractions and gases. The calculated kinetic parameters presented a proper fit concerning experimental data with average absolute error values lower than 4%. Results showed that copper oleate reduces the polyaddition reactions of heavy fractions, favoring the production of lighter compounds. A set of in-series and parallel reactions indicate that the reaction gas and aromatic compounds are mainly produced from the asphaltene fraction, where aromatic fractions subsequently generate saturates hydrocarbons.
dc.language.iso en
dc.relation.ispartofseries Ind Eng Chem Res.
dc.rights только для КФУ
dc.subject Kinetics
dc.subject Aquathermolysis
dc.subject Catalyst
dc.subject.other Химия
dc.title Modeling the Kinetics of Heavy Crude Oil Cu-Oleate Aquathermolysis
dc.type Article
dc.contributor.org Институт геологии и нефтегазовых технологий
dc.description.pages 9114-9122
dc.relation.ispartofseries-volume 62
dc.pub-id 329257
dc.identifier.doi 10.1021/acs.iecr.3c00467


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