logo
calendar28 Mart 2025
view63
Main language:Uzbek

BIFUNCTIONAL PROPERTIES OF DEHYDROCYCLIZATION CATALYSTS

Field of Science:
pdf

67e6542abbfcf.pdf

PDF

ARTICLE ANNOTATION

quote
Cyclization products can be 5- or 6-membered ring compounds. The reactions leading to the formation of these hydrocarbons represent C5 and C6 -cyclization reactions. Platinum catalysts for the dehydrogenation of paraffins are highly dispersed multicomponent systems embedded in a heat-resistant oxide support with a developed surface. The concentration of platinum and promoters usually does not exceed 1% wt. The most common support is γ-alumina. Previously, similar platinum catalysts were widely used in the low-pressure reforming process. This allows us to explain the high efficiency of bimetallic aluminum-platinum dehydrogenation catalysts, which is maintained even with coke content of more than 10% by weight of the catalyst. In the synthesis of aromatic hydrocarbons based on synthetic naphtha, it was proven that the samples converted to aromatic hydrocarbons in the first pass when using the catalytic systems Cr2O7 catalyst and AlNiMo+bentonite catalyst. The combined use of these catalysts resulted in the formation of monoaromatic hydrocarbons from a mixture of naphtha hydrocarbons with a high mass fraction of n-hexane, n-heptane, and n-octane in high yield and demonstrated high selectivity for this synthesis.

AUTHORS

J.Toshqobilov

“O‘zbekistan GTL” MChJ

Tags

# карбонизация# carbonation# siklizatsiya reaktsiyasi# bifunksional katalizatorlar# parafinlarni degidrotsiklizatsiy# n-geksan# karbonlanish# sintetik nafta# реакция циклизации# бифункциональные катализаторы# дегидроциклизация парафинов# н-гексан# синтетическая нафта# cyclization reaction# bifunctional catalysts# dehydrocyclization of paraffins# n-hexane# synthetic naphtha

OTHER ARTICLES IN THIS JOURNAL

Rate Article

0
0 ratings
5
4
3
2
1

Article Identifiers

References

1. Паал З., Чичери Ж. Каталитические реакции циклизации углеводородов, М.: Мир, 1988-265. с.

2. Серебряков Б. Р., Пласкунов Т. К., Аншелес В. Р., Далин М. А. Высшие олефины. Производство и применение/Под ред. М. А. Далина. Л.: Химия, 1984. 264 с.

3. Бурсиан Н. Р., Коган С. Б., Трувер В. Ш„ Боруцкий П. Н. Платиновые промотированные катализаторы в процессах изомеризации и дегидрирования парафиновых углеводородов. М.: ЦНИИТЭНефтехим, 1981. 50 с.

4. Пат. 4191846 США//РЖХим. 1980. 22П231.

5. Tauster S.J., Steger J.J. // J. Catal.. 1990. V. 125. P. 387.

6. Somorjai G. A. Chemistry in Two Dimensions. Ithaca — L.: Cornell Univ. Press, 1981. 515 p.

7. Bursian N. R., Zharkov В. В., Kogan S. B. Intern. Congress Catal. Frankfurt am Main: DECHEMA, 1984. V. 2. P. 481.

8. Gulnora Djuraeva, Javoxir Toshqobilov. Research of the process of aromatization of paraffin fractions from synthetic oil. Samarkand. 313/4 01.05. 2024.

9. Gulnora Djuraeva, Javoxir Toshqobilov. Sintetik nafta asosidagi aromatic uglevodorodlar sintezida katalizatorlar sellektivligi. Toshkent 633/197 11.10.2024.

10. Javoxir Toshqobilov, Gulnora Djuraeva. Parafin uglevodorodlarning tanlangan katalizator asosida sikllanish xususiyarlari. Buxoro. 865/315 16.10.2024.