AROMATIZATION OF N-HEXANE IN SILICON ZEOLITES
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Abstract
This article studies the catalytic aromatization process of linear-structured N-hexane using mesoporous high-silicon zeolites with high catalytic properties. The influence of the nature and concentration of modifiers (Ni, Cu, Fe) on catalytic activity has been analyzed. The obtained results contribute to improving the efficiency of the aromatization process and optimizing the composition of benzene-series hydrocarbons.
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1. Fayzullayev, N. I., R. R. Umirzakov, and S. B. Pardaeva. "Study of acetylating reaction of acetylene by gas chromatographic method." ACS National Meeting Book of Abstracts. 2005.
2. Fayzullayev, N. I., and R. R. Umirzakov. "To obtain acetone by spontaneous hydration of acetylene." ACS National Meeting Book of Abstracts. 2005.
3. Buronov, F., & Fayzullayev, N. (2022, June). Synthesis and application of high silicon zeolites from natural sources. In AIP Conference Proceedings (Vol. 2432, No. 1). AIP Publishing. DOI: https://doi.org/10.1063/5.0089557
4. Buronov, F. E., & Fayzullaev, N. I. (2023). Mathematical modeling of ethylene oxidative acetylation process. In E3S Web of Conferences (Vol. 411, p. 01037). EDP Sciences. DOI: https://doi.org/10.1051/e3sconf/202341101037
5. Aslanov, S.C., Buxorov, A.Q., Fayzullayev, N.I. Catalytic synthesis of С2-С4-alkenes from dimethyl ether// International Journal of Engineering Trends and Technology, 2021, 69(4), стр. 67–75. DOI: https://doi.org/10.14445/22315381/IJETT-V69I4P210
6. X.B.Rahmatov, A.B.Togayev Study of the kinetics of the reaction of high molecular hydrocarbons with synthesis gas // European Chemical Bulletin Eur. Chem. Bull. 2023, 12(Special Issue 4), pp.14456-14462.
7. Х.Б.Рахматов, А.И.Тогаев Исследование кинетики реакции высокомолекулярных углеводородов с синтез-газом // UNIVERSIUM: технические науки : электрон. научн. журнал. 2023. 12(117).
8. Abdullaev, B. M., & Sayfullaev, T. K. (2024). Cobalt fischer–tropsch catalyst regeneration. journal of multidisciplinary bulletin, 7(1), 105-113.
9. Bakhtishod, A., & Temurbek, S. (2024). EFFECT OF INITIAL SOLVENT SLURRY INSIDE THE REACTOR FOR FISCHER-TROPSCH SYNTHESIS. Sanoatda raqamli texnologiyalar/Цифровые технологии в промышленности, 2(1), 171-180.
10. Abdullayev, K. O. A. I. (2023). Research of the catalytic properties of a catalyst selected for the production of high-molecular weight liquid synthetic hydrocarbons from synthesis gas. Химическая технология, 14(10), 115. DOI: https://doi.org/10.32743/UniTech.2023.115.10.16121