Coconversion of n-Dodecane and 2-Methylthiophene in the Presence of Dual-Zeolite Cracking Catalysts Containing Different Amounts of Rare-Earth Elements

The effect of the rare-earth element (REE) content in dual-zeolite cracking catalysts on the conversion of n -dodecane and an n -dodecane–2-methylthiophene mixture (5000 ppm S) has been studied. The catalysts have been synthesized using zeolites Y and ZSM-5 modified with REEs and phosphorus, respect...

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Veröffentlicht in:Petroleum chemistry 2020-08, Vol.60 (8), p.923-928
Hauptverfasser: Plekhova, K. S., Yurtaeva, A. S., Potapenko, O. V., Sorokina, T. P., Doronin, V. P.
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Sprache:eng
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Zusammenfassung:The effect of the rare-earth element (REE) content in dual-zeolite cracking catalysts on the conversion of n -dodecane and an n -dodecane–2-methylthiophene mixture (5000 ppm S) has been studied. The catalysts have been synthesized using zeolites Y and ZSM-5 modified with REEs and phosphorus, respectively, as the active component. It has been shown that the presence of REE oxides in zeolite Y (at a constant SiO 2 /Al 2 O 3 ratio) affects the catalytic activity of cracking catalysts based on this zeolite. The dependence of the light olefin yield on the REE oxide content in zeolite Y passes through a maximum at 2–3 wt %. The presence of a sulfur compound in an amount of 5000 ppm (in terms of sulfur) in the feedstock leads to a decrease in the model hydrocarbon conversion and the C 2 –C 4 olefin yield. In the presence of a sulfur compound, the change in the C 2 –C 4 olefin yield as a function of REE oxide content in zeolite Y is less pronounced than that in the case of individual n -dodecane cracking.
ISSN:0965-5441
1555-6239
DOI:10.1134/S0965544120080113