INFLUENCE OF CARRIER TEXTURAL CHARACTERISTICS ON THE ACTIVITY OF CHROMOXIDE CATALYSTS IN THE PROPANE DEHYDROGENATION REACTION IN THE PRESENCE OF CO2
- Autores: Tedeeva M.A.1, Mashkin M.Y.1, Andresyuk A.A.1, Pribytkov P.V.1, Medvedev A.A.2, Tkachenko O.P.2, Kapustin G.I.2, Dunaev S.F.1, Kustov A.L.1
- 
							Afiliações: 
							- Lomonosov Moscow State University, Department of Chemistry
- N.D. Zelinsky Institute of Organic Chemistry, Russian Academy of Sciences
 
- Edição: Volume 99, Nº 7 (2025)
- Páginas: 1016-1024
- Seção: CHEMICAL KINETICS AND CATALYSIS
- ##submission.dateSubmitted##: 17.10.2025
- ##submission.datePublished##: 15.07.2025
- URL: https://cardiosomatics.ru/0044-4537/article/view/693642
- DOI: https://doi.org/10.7868/S3034553725070061
- ID: 693642
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Sobre autores
M. Tedeeva
Lomonosov Moscow State University, Department of Chemistry
														Email: maritedeeva@mail.ru
				                					                																			                												                								Moscow, Russia						
M. Mashkin
Lomonosov Moscow State University, Department of ChemistryMoscow, Russia
A. Andresyuk
Lomonosov Moscow State University, Department of ChemistryMoscow, Russia
P. Pribytkov
Lomonosov Moscow State University, Department of ChemistryMoscow, Russia
A. Medvedev
N.D. Zelinsky Institute of Organic Chemistry, Russian Academy of SciencesMoscow, Russia
O. Tkachenko
N.D. Zelinsky Institute of Organic Chemistry, Russian Academy of SciencesMoscow, Russia
G. Kapustin
N.D. Zelinsky Institute of Organic Chemistry, Russian Academy of SciencesMoscow, Russia
S. Dunaev
Lomonosov Moscow State University, Department of ChemistryMoscow, Russia
A. Kustov
Lomonosov Moscow State University, Department of ChemistryMoscow, Russia
Bibliografia
- Ansari M.B., Park S.-E. // Energy Environ. Sci. 2012. V. 5. P. 9419.
- Wang S., Zhu Z.H. // Energy & Fuels. 2004. V. 18. № 4. P. 1126.
- Baroudi H.A., Awoyomi A., Patchigolla K., et al. // Applied Energy. 2021. V. 287. P. 116510.
- Medvedev A.A., Kustov A.L., Beldova D.A., et al. // Int. J. Mol. Sci. 2023. V. 24. № 2. P. 1279.
- Medvedev A.A., Beldova D.A., Kustov L.M., et al. // Clean Technol. 2024. V. 6. № 4. Р. 1579.
- Evdokimenko N., Vikanova K., Bazlov A., et al. // Applied Catalysis A: General. 2024. V. 688. P. 119998.
- Bogdan T.V., Koklin A.E., Mishanin I.I., et al. // ChemPlusChem. 2024. P. e202400327.
- Tsyganok A.I., Tsunoda T., Hamakawa S., et al. // Journal of Catalysis. 2003. Т. 213. № 2. P. 191.
- Ivashchenko A.N., Tedeeva M.A., Kartavova K.E., et al. // Russ. J. Phys. Chem. A. 2021. V. 95. № 12. P. 2417.
- Mishanin I.I., Bogdan T.V., Koklin A.E., Bogdan V.I. // Chem. Eng. J. Elsevier B. 2022. V. 446. № P3. P. 137184.
- Cheng Y., Zhou L., Xu J. et al. // Microporous and Mesoporous Materials. 2016. V. 234. P. 370.
- Tedeeva M.A., Kustov A.L., Pribytkov P.V., et al. // Fuel. 2022. V. 313. P. 122698.
- Mashkin M.Y., Tedeeva M.A., Fedorova A.A., et al. // J. Chem. Technol. Biotechnol. John Wiley & Sons, Ltd. 2023. V. 98. № 5. P. 1247.
- Chernyak S.A., Kustov A.L., Stolbov D.N., et al. // Applied Surface Science. 2022. V. 578. P. 152099.
- Salaeva A.A., Salaev M.A., Mamontov G.V. // Chem. Eng. Sci. 2020. V. 215. P. 115462.
- Atanga M.A., Rezaei F., Jawad A., et al. // Applied Catalysis B: Environmental. 2018. V. 220. P. 429.
- Prasad P.S.S., Bae J.W., Jun K.-W., Lee K.-W. // Catal. Surv. Asia. 2008. V. 12. P. 170.
- Kim C., Yoo C.-J., Oh H.-S. et al. // Journal of CO2 Utilization. 2022. V. 65. P. 102239.
- Bathena T., Phung T., Murugesan V. // Journal of CO2 Utilization. 2024. V. 84. P. 102848.
- Igonina M., Tedeeva M., Kalmykov K. et al. // Catalysts. 2023. V. 13. № 906. P. 1.
- Michorczyk P., Ogonowski J., Zenczak K. // J. Mol. Cat. A: Chem. 2011. V. 349. P. 1.
- Cheng Y., Zhou L., Xu J. et al. // Microporous and Mesoporous Materials. 2016. V. 234. P. 370.
- Gaspar A., Brito J., Dieguez L. // J. Mol. Catal. A: Chem. 2003. V. 203. P. 251.
- Weckhuysen B., Verberckmoes A., De Baets A., Schoonheydt R. // Journal of Catalysis. 1997. V. 166. № 2. P. 160.
- Michorczyk P., Ogonowski J., Kuśtrowski P., Chmielarz L. // Applied Catalysis A: General. 2008. V. 349. № 1–2. P. 62.
- Ramesh Y., Thirumala Bai P., Hari Babu B. et al. // Appl. Petrochem. Res. 2014. V. 4. P. 247.
- Тедеева М.А., Кустов А.Л., Прибытков П.В. и др. // Журн. Физ. химии. 2018. Т. 92. № 12. С. 1879.
- Kazansky V.B., Serikh A.I. // PCCP. 2004. № 6. С. 3760.
- Mehdad A., Gould N.S., Xu B., Lobo R.L. // Catalysis Science & Technology. 2018. № 8. P. 358.
- Purcell K.F., Grado R.S. // J. Am. Chem. Soc. 1966. № 88. Р. 919.
- Lin L., Zhang X., He N., et al. // Catalysts. 2019. № 9. Р. 100.
- Medin A.S., Borovkov V. Yu., Kazansky V.B. et al. // Zeolites. 1990. № 10. Р. 668.
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