Template/Al2O3 Ratio in Reaction Gels as a Tool to Control the Crystal Morphology, Crystal Dispersion, and Catalytic Performance in Hydroisomerization of n-Hexadecane over SAPO-11 Molecular Sieves
D. V. Serebrennikov, A. R. Zabirov, R. Z. Kuvatova, D. O. Bagdanova, A. I. Malunov, K. I. Dement’ev, M. R. Agliullin
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引用次数: 0
Abstract
Catalytic systems based on SAPO-11 molecular sieves are known for their superior selectivity in the hydroisomerization of higher (C16+) n-paraffins. However, further improvement of SAPO-11-based catalysts is impeded by the lack of effective tools for controlling the morphology and size of silicoaluminophosphate crystals. The present study investigates the effects of the DPA/Al2O3 molar ratio in reaction gels on the nature of intermediate phases and on the physicochemical properties of SAPO-11 molecular sieves. SAPO-11 has been found to crystallize through the formation of different phases depending on the DPA/Al2O3 ratio: an AlPO4·2H2O intermediate at DPA/Al2O3 = 1.0, a mixture of AlPO4·2H2O and a layered silicoaluminophosphate at DPA/Al2O3 = 1.4, and a layered silicoaluminophosphate alone at DPA/Al2O3 = 1.8. Proper adjustment of this ratio provides an effective tool to control the crystal morphology, crystal size, and the porous structure characteristics of the SAPO-11 molecular sieves. It has been identified that, at DPA/Al2O3 = 1.0, cubic and lamellar SAPO-11 nanocrystals 200–400 nm in size are formed. These nanocrystals have the following textural properties: SBET = 286 m2/g; Vmicro = 0.06 cm3/g; and Vmeso = 0.21 m3/g. Furthermore, the effects of the morphology and size of SAPO-11 molecular sieve crystals on their catalytic performance in the hydroisomerization of n-hexadecane have been demonstrated. Promising catalytic systems based on SAPO-11 nanocrystals have been proposed for the hydroisomerization of C16+n-paraffins.
期刊介绍:
Petroleum Chemistry (Neftekhimiya), founded in 1961, offers original papers on and reviews of theoretical and experimental studies concerned with current problems of petroleum chemistry and processing such as chemical composition of crude oils and natural gas liquids; petroleum refining (cracking, hydrocracking, and catalytic reforming); catalysts for petrochemical processes (hydrogenation, isomerization, oxidation, hydroformylation, etc.); activation and catalytic transformation of hydrocarbons and other components of petroleum, natural gas, and other complex organic mixtures; new petrochemicals including lubricants and additives; environmental problems; and information on scientific meetings relevant to these areas.
Petroleum Chemistry publishes articles on these topics from members of the scientific community of the former Soviet Union.