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Kinetic modeling of oil shale upgrading at sub- and supercritical water conditions using Ni- and Fe-based oil-soluble catalysts

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dc.contributor Казанский федеральный университет
dc.contributor.author Felix Lugo Jose Guillermo
dc.contributor.author Djimasbe Richard
dc.contributor.author Varfolomeev Mikhail Alekseevich
dc.contributor.author Al-Muntaser Ameen Ahmed
dc.contributor.author Tirado Kota Aleksis
dc.contributor.author Suwaid Muneer
dc.contributor.author Prochukhan Konstantin Y.
dc.contributor.author Bochkov Andrey S.
dc.contributor.author Frolov Konstantin N.
dc.contributor.author Zhdaneev Oleg V.
dc.contributor.author Galiullin Eduard Aleksandrovich
dc.contributor.author Shamanov Insaf Nakipovich
dc.contributor.author Morozova Evgeniya Vasilevna
dc.contributor.author Gareev Bulat Irekovich
dc.contributor.author Ancheyta Juarez Jorge
dc.date.accessioned 2026-09-22T07:00:59Z
dc.date.available 2026-09-22T07:00:59Z
dc.date.issued 2024
dc.identifier.citation Kinetic modeling of oil shale upgrading at sub- and supercritical water conditions using Ni- and Fe-based oil-soluble catalysts / G. Felix, R. Djimasbe, M.A. Varfolomeev, A. Al-Muntaser, A. Tirado, M. Suwaid, K.Y. Prochukhan, A.S. Bochkov, K.N. Frolov, O.V. Zhdaneev, E.A. Galiullin, I.N. Shamanov, E.V. Morozova, B.I. Gareev, J. Ancheyta // Journal of Supercritical Fluids. - 2024. - Vol. 207. - 106193.
dc.identifier.uri https://dspace.kpfu.ru/xmlui/handle/net/186134
dc.description.abstract 4- and 7-lump kinetic models for oil shale catalytic upgrading at sub- and supercritical water conditions (300-400 ?C of temperature, 1-48 h of reaction time, and 1:1 water-to-oil mass ratio) were developed from experiments conducted in a 300 mL batch reactor. Four catalysts were used based on two transition metals (Ni and Fe) and two ligands (vegetable and tall oil). The use of catalysts with tall oil diminished the secondary cracking reactions to a greater degree than metal-vegetable oil catalysts, producing higher synthetic oil yield and lower gas yield. Temperatures higher than the critical point of water ()400 ?C) cause the secondary cracking of synthetic oil molecules, reducing its yield. The best results were obtained using Ni-tall oil catalysts since it improves oil shale conversion and suppresses the over-cracking of synthetic oil. The generation of CO2 (mainly from carbonates in oil shale) was the easier reaction among all gases, thus this gas is produced in higher amount. The estimated kinetic parameters of the kinetic models accurately match the experimental data. The statistical and sensitivity analyses indicate that the obtained reaction rate coefficients were properly optimized and correspond to the optimal values.
dc.language.iso en
dc.relation.ispartofseries Journal of Supercritical Fluids
dc.rights только для КФУ
dc.subject Oil shale conversion
dc.subject Kinetic model
dc.subject Oil-soluble catalyst
dc.subject Sub- and supercritical water
dc.subject.other Химия
dc.title Kinetic modeling of oil shale upgrading at sub- and supercritical water conditions using Ni- and Fe-based oil-soluble catalysts
dc.type Article
dc.contributor.org Институт геологии и нефтегазовых технологий
dc.description.pages 106193-106193
dc.relation.ispartofseries-volume 207
dc.pub-id 329260
dc.identifier.doi 10.1016/j.supflu.2024.106193


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