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Hydroconversion of n-Hexadecane on Zeolite-Containing Sulfide-Based Catalysts: Influence of Nitrogen Impurity in the Feedstock on the Hydroisomerization Selectivity
Bifunctional zeolite-containing catalysts based on transition metal sulfides were synthesized, their physicochemical characteristics were determined, and the catalytic properties toward n-hexadecane hydroconversion were examined. ZSM-5, Beta, and NH4NaY zeolites were tested as acidic components of the catalysts. The highest selectivity toward isomerization reaction was afforded by the NH4NaY zeolite-containing sulfide-based catalyst. With the view to controlling the selectivity toward cracking and isomerization reactions, the influence of the presence of nitrogen-containing bases in the feedstock was evaluated.
Hydroconversion of n-Hexadecane on Zeolite-Containing Sulfide-Based Catalysts: Influence of Nitrogen Impurity in the Feedstock on the Hydroisomerization Selectivity
Bifunctional zeolite-containing catalysts based on transition metal sulfides were synthesized, their physicochemical characteristics were determined, and the catalytic properties toward n-hexadecane hydroconversion were examined. ZSM-5, Beta, and NH4NaY zeolites were tested as acidic components of the catalysts. The highest selectivity toward isomerization reaction was afforded by the NH4NaY zeolite-containing sulfide-based catalyst. With the view to controlling the selectivity toward cracking and isomerization reactions, the influence of the presence of nitrogen-containing bases in the feedstock was evaluated.
Hydroconversion of n-Hexadecane on Zeolite-Containing Sulfide-Based Catalysts: Influence of Nitrogen Impurity in the Feedstock on the Hydroisomerization Selectivity
Pet. Chem.
Vinogradov, N. A. (Autor:in) / Rubtsova, M. I. (Autor:in) / Glotov, A. P. (Autor:in) / Tochilin, N. V. (Autor:in) / Vinokurov, V. A. (Autor:in) / Pimerzin, A. A. (Autor:in)
Petroleum Chemistry ; 61 ; 739-747
01.07.2021
9 pages
Aufsatz (Zeitschrift)
Elektronische Ressource
Englisch
Hydroconversion of Thiophene Derivatives over Dispersed Ni–Mo Sulfide Catalysts
Springer Verlag | 2018
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