Preview

Kataliz v promyshlennosti

Advanced search
Open Access Open Access  Restricted Access Subscription or Fee Access

SiO2- and Al2O3-Supported Sulfated Zirconiа Catalysts for Hexane Isomerization. Effect of the Support Nature

https://doi.org/10.18412/1816-0387-2023-1-67-74

Abstract

The effect of the support nature on the performance of hexane isomerization reaction was studied for the sulfated zirconiа catalysts supported on SiO2 and Al2O3, which have different textural characteristics. It was shown that a higher conversion of hexane is reached over sulfated zirconiа catalysts supported on aluminum oxides. IR spectroscopy of adsorbed CO revealed that the concentration of Broensted acid sites (BAS), which are characterized by adsorbed CO with the absorption band (a.b.) at 2170 cm–1, and strong Lewis acid sites (LAS), which are characterized by adsorbed CO with a.b. at 2210 and 2224 cm–1, is higher in the Al2O3-supported catalysts compared to the SiO2-supported ones. In the Al2O3-supported catalysts with different textural characteristics, an increase in the contribution of LAS to the total acidity essentially increases the yield of high-octane 2,2-dimethylbutane and the depth of hexane isomerization.

About the Authors

M. D. Smolikov
Center of New Chemical Technologies BIC SB RAS, Omsk
Russian Federation


L. I. Bikmetova
Center of New Chemical Technologies BIC SB RAS, Omsk
Russian Federation


K. V. Kazantsev
Center of New Chemical Technologies BIC SB RAS, Omsk
Russian Federation


V. A. Shkurenok
Center of New Chemical Technologies BIC SB RAS, Omsk
Russian Federation


S. S. Yablokova
Center of New Chemical Technologies BIC SB RAS, Omsk
Russian Federation


A. V. Lavrenov
Center of New Chemical Technologies BIC SB RAS, Omsk
Russian Federation


References

1. О требованиях к автомобильному и авиационному бензину, дизельному и судовому топливу, топливу для реактивных двигателей и мазуту : Технический регламент Таможенного союза ТР ТС 013/2011.

2. Wang P., Yue Y., Wang T., Bao X. // Int. J. Energy Res. 2020. Vol. 44, № 5. P. 3270–3294.

3. Ясакова Е.А., Ситдикова А.В., Ахметов А.Ф. // Нефтегазовое дело. 2010. № 1. C. 24–42.

4. Шакун А.Н., Федорова М.Л. // Катализ в промышленности. 2014. № 5. С. 29–37.

5. Смоликов М.Д., Бикметова Л.И., Кирьянов Д.И., Затолокина Е.В., Казанцев К.В., Муромцев И.В., Белый А.С. // Катализ в промышленности. 2014. № 5. С. 44–48.

6. Huang Y.-Y., Zhao B.-Y., Xie Y.-C. // Appl. Catal. A: Gen. 1998. Vol. 173. P. 27–35.

7. Lei T., Xu J.S., Gao Z. // Chem. Lett. 1999. Vol. 28. P. 509–510.

8. Lei T., Xu J.S., Tang Y., Hua W.M., Gao Z. // Appl. Catal. A: Gen. 2000. Vol. 192. P. 181–188.

9. Wang J.H., Mou C.Y. // Microporous and Mesoporous Materials. 2008. Vol. 110, № 2/3. P. 260–270.

10. Akkari R., Ghorbel A., Essayem N., Figueras F. // Microporous and Mesoporous Materials. 2008. Vol. 111. P. 62–71.

11. Паукштис Е.А. Инфракрасная спектроскопия в гетерогенном кислотно-основном катализе. Новосибирск : Наука, 1992. 255 с.

12. Жоров Ю.М. Изомеризация углеводородов. Химия и технология. М. : Химия. 1983. 301 с.

13. Sikabwe E.C., Coelho M.A., Resasco D.E., White R.L. // Catal. Lett. 1995. Vol. 34. P. 23–30.

14. Choudhary V.R., Karkamkar A.J. // J. Chem. Sci. 2003. Vol. 115. P. 281–286.


Review

For citations:


Smolikov M.D., Bikmetova L.I., Kazantsev K.V., Shkurenok V.A., Yablokova S.S., Lavrenov A.V. SiO2- and Al2O3-Supported Sulfated Zirconiа Catalysts for Hexane Isomerization. Effect of the Support Nature. Kataliz v promyshlennosti. 2023;23(1):67-74. (In Russ.) https://doi.org/10.18412/1816-0387-2023-1-67-74

Views: 227


ISSN 1816-0387 (Print)
ISSN 2413-6476 (Online)