INVESTIGATION OF CONVERSION OF N-BUTANE TO LIGHT OLEFINS ON CATALYSTS Pd/ℽ-Al2O3 AND Pd/SiO2
https://doi.org/10.53360/2788-7995-2026-2(22)-71
Abstract
The results of the conversion of n-butane on supported palladium catalysts in a stationary mode in the temperature range of 400-600 °C, at atmospheric pressure and a volumetric feed rate of n-butane of 250 h– ¹ are presented. The catalysts were obtained by the method of incipient wetness impregnation using γ-Al2O3 and SiO2 (silica gel) as supports, the palladium loading was 1 and 3%. It was found that, along with the dehydrogenation of n-butane, cracking processes occur in parallel, leading to the formation of both olefins (ethylene, propylene) and alkanes (methane, ethane, propane), isomerization of n-butane to isobutane, and other reactions. Hydrogen contained in contact gases is equivalent to the amount of dehydrogenation and degradation products. In trace amounts, non-condensed liquid products such as pentane and aromatics are present in the gas phase. The catalysts were studied by SEM-EDS to determine the morphology of catalysts and the elemental composition of individual sections of their surface, and the specific surface area of the catalysts was also determined.
About the Authors
D. N. KarimovaKazakhstan
Dana Bekmyrzaevna Karimova – PhD student,
050040, Al-Farabi Avenue, 71, Almaty;
634055, Academic Avenue 4, Tomsk
A. A. Vosmerikov
Russian Federation
Anton Aleksandrovich Vosmerikov – Candidate of Сhemical Sciences,
634055, Academic Avenue 4, Tomsk
S. R. Konuspaev
Kazakhstan
Saparcali Retaevich Konuspaev – Doctor of Chemical Sciences,
050010, Sh.Ualikhanov str.,106, Almaty
L. N. Vosmerikova
Russian Federation
Lyudmila Nikolaevna Vosmerikova – Doctor of Сhemical Sciences,
634055, Academic Avenue 4, Tomsk
A. V. Vosmerikov
Russian Federation
Aleksander Vladimirovich Vosmerikov – Doctor of Chemical Sciences,
634055, Academic Avenue 4, Tomsk
References
1. Hu Z.P. State of the art catalysts for direct dehydrogenation of propane to propylene / Yang D., Wang Z., Yuan Z.Y. // Chinese Journal of Catalysis. – 2019. – Vol. 40, № 9. – P. 1233-1254. https://doi.org/10.1016/S1872-2067(19)63360-7.
2. Catalyst development and design in propane dehydrogenation / Li Q. et al // Chemical Research in Chinese Universities. – 2026. – Vol. 42, № 1. – P. 1-20. https://doi.org/10.1007/s40242-026-5294-y.
3. Global olefins market report // Data Bridge Market Research. – 2026. https://www.databridgemarketresearch.com/ru/reports/global-olefins-market (дата обращения: 12.02.2026).
4. He Z. Design of supported metal catalysts and systems for propane dehydrogenation / Yang J., Liu L. // JACS Au. – 2024. – Vol. 4. – P. 4084-4109. https://doi.org/10.1021/jacsau.4c00730.
5. Liu S. Metal-based catalysts for the non-oxidative dehydrogenation of light alkanes to light olefins / B. Zhang, G. Liu // Reaction Chemistry & Engineering. – 2021. – Vol. 6. – P. 9-26. https://doi.org/10.1039/D0RE00381F.
6. Rodríguez L. Dehydrogenation of n-butane over Pd–Ga/Al₂O₃ catalysts / Romero D. et al // Applied Catalysis A: General. – 2010. – Vol. 373, № 1-2. – P. 66-70. https://doi.org/10.1016/j.apcata.2009.10.040.
7. Structural evolution of an intermetallic Pd–Zn catalyst selective for propane dehydrogenation / Childers D.J. et al // Physical Chemistry Chemical Physics. – 2015. – Vol. 17. – P. 28144-28153. https://doi.org/10.1039/C5CP00222B.
8. Pd-In intermetallic alloy nanoparticles: highly selective ethane dehydrogenation catalysts / E.C. Wegener et al // Catalysis Science & Technology. – 2016. – Vol. 6. – P. 6965-6976. https://doi.org/10.1039/C6CY00491A.
9. Promotion of Pd nanoparticles by Fe and formation of a Pd₃Fe intermetallic alloy for propane dehydrogenation / C. Yang et al // Catalysis Today. – 2019. – Vol. 323. – P. 123-128. https://doi.org/10.1016/j.cattod.2018.07.043.
10. Sajad M. Direct dehydrogenation of propane over Pd nanoparticles encapsulated within IPC zeolites with tunable pore sizes / M. Sajad et al // Applied Materials Today. – 2022. – Vol. 29. – Art. 101644. https://doi.org/10.1016/j.apmt.2022.101644.
11. Bimetallic clusters confined inside silicalite-1 for stable propane dehydrogenation / X.E. Wei et al // Nano Research. – 2023. – Vol. 16. – P. 10881-10889. https://doi.org/10.1007/s12274-023- 6052-9.
Review
For citations:
Karimova D.N., Vosmerikov A.A., Konuspaev S.R., Vosmerikova L.N., Vosmerikov A.V. INVESTIGATION OF CONVERSION OF N-BUTANE TO LIGHT OLEFINS ON CATALYSTS Pd/ℽ-Al2O3 AND Pd/SiO2. Bulletin of Shakarim University. Technical Sciences. 2026;(2(22)):696-704. https://doi.org/10.53360/2788-7995-2026-2(22)-71
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