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Kinetic Modeling for the “One-Pot” Hydrogenolysis of Cellulose to Glycols over Ru@Fe3O4/Polymer Catalyst Научная публикация

Журнал Reactions
ISSN: 2624-781X
Вых. Данные Год: 2021, Том: 3, Номер: 1, Страницы: 1-11 Страниц : 11 DOI: 10.3390/reactions3010001
Авторы Manaenkov Oleg 1 , Kosivtsov Yuriy 1 , Kislitsa Olga 1 , Sulman Mikhail 1 , Bykov Alexey 1 , Sidorov Alexander 1 , Sapunov Valentin 2 , Matveeva Valentina 1,3
Организации
1 Department of Biotechnology, Chemistry and Standardization, Tver State Technical University, 170026 Tver, Russia
2 Department of Chemical Technology of Basic Organic and Petrochemical Synthesis, Mendeleev University of Chemical Technology, 125047 Moscow, Russia
3 Regional Technology Center, Tver State University, 170100 Tver, Russia
Реферат: Despite numerous works devoted to the cellulose hydrogenolysis process, only some of them describe reaction kinetics. This is explained by the complexity of the process and the simultaneous behavior of different reactions. In this work, we present the results of the kinetic study of glucose hydrogenolysis into ethylene- and propylene glycols in the presence of Ru@Fe3O4/HPS catalyst as a part of the process of catalytic conversion of cellulose into glycols. The structure of the Ru-containing magnetically separable Ru@Fe3O4/HPS catalysts supported on the polymeric matrix of hypercrosslinked polystyrene was studied to propose the reaction scheme. As a result of this study, a formal description of the glucose hydrogenolysis process into glycols was performed. Based on the data obtained, the mathematical model of the glucose hydrogenolysis kinetics in the presence of Ru@Fe3O4/HPS was developed and the parameter estimation was carried out. The synthesized catalyst was found to be characterized by the enhanced magnetic properties and higher catalytic activity in comparison with previously developed catalytic systems (i.e., on the base of SiO2). The summarized selectivity towards the glycols formation was found to be ca. 42% at 100% of the cellulose conversion in the presence of Ru@Fe3O4/HPS.
Библиографическая ссылка: Manaenkov O. , Kosivtsov Y. , Kislitsa O. , Sulman M. , Bykov A. , Sidorov A. , Sapunov V. , Matveeva V.
Kinetic Modeling for the “One-Pot” Hydrogenolysis of Cellulose to Glycols over Ru@Fe3O4/Polymer Catalyst
Reactions. 2021. V.3. N1. P.1-11. DOI: 10.3390/reactions3010001 OpenAlex
Идентификаторы БД:
OpenAlex: W4200506047
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