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In-situ catalytic upgrading of heavy oil using oil-soluble transition metal-based catalysts

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dc.contributor.author Suwaid M.A.
dc.contributor.author Varfolomeev M.A.
dc.contributor.author Al-muntaser A.A.
dc.contributor.author Yuan C.
dc.contributor.author Starshinova V.L.
dc.contributor.author Zinnatullin A.
dc.contributor.author Vagizov F.G.
dc.contributor.author Rakhmatullin I.Z.
dc.contributor.author Emelianov D.A.
dc.contributor.author Chemodanov A.E.
dc.date.accessioned 2021-02-24T20:32:21Z
dc.date.available 2021-02-24T20:32:21Z
dc.date.issued 2020
dc.identifier.issn 0016-2361
dc.identifier.uri https://dspace.kpfu.ru/xmlui/handle/net/160772
dc.description.abstract © 2020 Elsevier Ltd In this study, oil-soluble transition metal-based catalysts (Fe, Co, Ni) are proposed for catalyzing aquathermolysis reactions in steam injection process for heavy oil production to achieve in-situ upgrading of heavy oil. Their catalytic performance and possible mechanism were investigated by autoclave experiments together with a comprehensive analysis of the change in physical and chemical properties of the upgraded oil using SARA analysis, viscosity measurement, GC, GC–MS, FTIR, and 13C NMR, etc. Simultaneously, the in-situ transformation of these catalysts was also analyzed by TG-FTIR, XRD, and Mössbauer spectra, etc. to better under the possible catalytic mechanism. The results showed that the in-situ transformation of these oil soluble catalysts occurred during the thermal treatment process at 250 °C and 300 °C, and their metal-based complexes, oxide, sulfide, and sometime pure metal were in-situ generated and played a catalytic role for aquathermolysis reactions. These catalysts showed a good catalytic performance at 300 °C for heavy oil upgrading in reducing viscosity, increasing saturates content (especially low molecule weight alkanes), decreasing resins and asphaltenes content, removing sulfur and nitrogen, and decreasing polyaromatics content, etc. by inhibiting the condensation and recombination reactions and promoting thermal decomposition reactions of heavy components (resin, asphaltene, and polycyclic aromatics, long chain alkanes, etc.) and hydrogenation reaction. Nickle gives the best catalytic performance. The low cost and easy access together with its high catalytic activity make its wide application a great potential in catalyzing aquathermolysis reaction in steam injection process for in-situ upgrading and heavy oil recovery.
dc.relation.ispartofseries Fuel
dc.subject Catalytic aquathermolysis
dc.subject Enhanced oil recovery
dc.subject In-situ heavy oil upgrading
dc.subject Oil-soluble transition metal-based catalysts
dc.subject Steam injection
dc.title In-situ catalytic upgrading of heavy oil using oil-soluble transition metal-based catalysts
dc.type Article
dc.relation.ispartofseries-volume 281
dc.collection Публикации сотрудников КФУ
dc.source.id SCOPUS00162361-2020-281-SID85088660151


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  • Публикации сотрудников КФУ Scopus [24551]
    Коллекция содержит публикации сотрудников Казанского федерального (до 2010 года Казанского государственного) университета, проиндексированные в БД Scopus, начиная с 1970г.

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