Казанский (Приволжский) федеральный университет, КФУ
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DEVELOPMENT OF A CATALYTIC WATER-SOLUBLE COMPOSITION FOR UPGRADING HIGH-VISCOSITY OIL DURING THERMAL STEAM TREATMENT
Форма представленияСтатьи в зарубежных журналах и сборниках
Год публикации2025
Языканглийский
  • Аль-Мунтасер Амин Ахмед Мохаммед , автор
  • Варфоломеев Михаил Алексеевич, автор
  • Вахин Алексей Владимирович, автор
  • Минханов Ильгиз Фаильевич, автор
  • Мухаматдинов Ирек Изаилович, автор
  • Ситнов Сергей Андреевич, автор
  • Сувейд Мунир Абдо Мохаммед , автор
  • Библиографическое описание на языке оригинала Mukhamatdinov I.I, Sitnov S.A, Atroshchenko V.V, Development of a catalytic water-soluble composition for upgrading high-viscosity oil during thermal steam treatment//Journal of Industrial and Engineering Chemistry. - 2025. - Vol., Is.. - .
    Аннотация This study investigates the impact of a water-soluble aquathermolysis catalyst on the highly viscous oil from the Boca de Jaruco field (Republic of Cuba) and presents an analysis of laboratory findings. The most efficient water-soluble catalyst, based on nickel sulfate, was identified for enhancing the physicochemical properties of the viscous oil. The paper also provides recommendations for selecting the appropriate temperature conditions during steam-thermal treatment, along with the optimal concentration of nickel sulfate (0.4 % wt.). It was revealed that the mass concentration of asphaltenes in the oil decreased by 50 % in the presence of nickel sulfate compared to the original oil. Additionally, the saturated fraction increased by 70 % compared to the initial oil and by 30 % relative to the control experiment. Furthermore, the sulfur content in the oil was reduced from 5.9% to 5.4 % during thermal steam treatment (TST) when nickel sulfate catalyst and a hydrogen donor were used.
    Ключевые слова Водорастворимый катализатор, тяжелая нефть
    Название журнала Journal of Industrial and Engineering Chemistry
    URL https://www.scopus.com/inward/record.uri?eid=2-s2.0-85216339585&doi=10.1016%2fj.jiec.2025.01.045&partnerID=40&md5=f2d86dc21745026b78c36fc0ad0c1a70
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