Research output: Contribution to journal › Article › peer-review
Influence of the Preparation Procedure on the State of Platinum and on the Isomerizing Ability of Catalysts for Isodewaxing of High-Molecular-Mass Hydrocarbon Feedstock. / Maslenkin, Roman A.; Shamanaeva, Irina A.; Vorob’eva, Ekaterina E. et al.
In: Petroleum Chemistry, Vol. 66, No. 5, 06.08.2026, p. 523-543.Research output: Contribution to journal › Article › peer-review
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TY - JOUR
T1 - Influence of the Preparation Procedure on the State of Platinum and on the Isomerizing Ability of Catalysts for Isodewaxing of High-Molecular-Mass Hydrocarbon Feedstock
AU - Maslenkin, Roman A.
AU - Shamanaeva, Irina A.
AU - Vorob’eva, Ekaterina E.
AU - Chemes, Anastasiya A.
AU - Volik, Andrei V.
AU - Yakovenko, Roman E.
AU - Simonov, Pavel A.
AU - Vdovichenko, Vsevolod A.
AU - Parkhomchuk, Ekaterina V.
N1 - Maslenkin, R.A., Shamanaeva, I.A., Vorob’eva, E.E. et al. Influence of the Preparation Procedure on the State of Platinum and on the Isomerizing Ability of Catalysts for Isodewaxing of High-Molecular-Mass Hydrocarbon Feedstock. Pet. Chem. 66, 523–543 (2026). https://doi.org/10.1134/S0965544126601055 The study was financially supported by the Ministry of Science and Higher Education of the Russian Federation within the framework of the government assignment for the Boreskov Institute of Catalysis, Siberian Branch, Russian Academy of Sciences (project FWUR-2024-0036).
PY - 2026/8/6
Y1 - 2026/8/6
N2 - Granulated catalytic materials based on Al2O3 + SAPO-11 with Pt deposited either onto Al2O3 with the subsequent mixing with SAPO-11 or onto granulated composite support Al2O3 + SAPO-11 were prepared. The catalyst supports were prepared with the addition of polystyrene template to the mixture of support precursors or without template. The materials were characterized by Fourier IR spectroscopy of adsorbed pyridine, mercury and nitrogen porosimetry, X-ray diffraction analysis, inductively coupled plasma atomic emission spectroscopy, electron microscopy, and CO chemisorption. In all the samples, platinum was uniformly distributed over the granule cross section. The most pronounced platinum aggregation was observed in supports prepared without template and in those prepared by admixing SAPO-11 to Pt/Al2O3 (compared to the deposition onto the composite support). The template catalysts are characterized by increased CO/Pt stoichiometry (according to the СО chemisorption data) and larger particle size (according to electron microscopy data), which is due to high surface defectiveness and formation of Pt particles of unusual flat morphology. Strong metal–support interaction in these samples was confirmed by the presence of high-temperature H2 uptake peaks (above 750°С) in the temperature-programmed reduction (TPR) experiments; such peaks were absent in the TPR spectra of the analogs prepared without template. The template samples have also high total specific pore volume (0.6–0.8 cm3/g). Catalytic trials have shown that, under the conditions of the С18+ feed dewaxing, the target liquid product is formed exclusively in the presence of catalysts prepared by the template procedure, which demonstrates essential advantage of this approach and apparent shift of the process toward isomerization.
AB - Granulated catalytic materials based on Al2O3 + SAPO-11 with Pt deposited either onto Al2O3 with the subsequent mixing with SAPO-11 or onto granulated composite support Al2O3 + SAPO-11 were prepared. The catalyst supports were prepared with the addition of polystyrene template to the mixture of support precursors or without template. The materials were characterized by Fourier IR spectroscopy of adsorbed pyridine, mercury and nitrogen porosimetry, X-ray diffraction analysis, inductively coupled plasma atomic emission spectroscopy, electron microscopy, and CO chemisorption. In all the samples, platinum was uniformly distributed over the granule cross section. The most pronounced platinum aggregation was observed in supports prepared without template and in those prepared by admixing SAPO-11 to Pt/Al2O3 (compared to the deposition onto the composite support). The template catalysts are characterized by increased CO/Pt stoichiometry (according to the СО chemisorption data) and larger particle size (according to electron microscopy data), which is due to high surface defectiveness and formation of Pt particles of unusual flat morphology. Strong metal–support interaction in these samples was confirmed by the presence of high-temperature H2 uptake peaks (above 750°С) in the temperature-programmed reduction (TPR) experiments; such peaks were absent in the TPR spectra of the analogs prepared without template. The template samples have also high total specific pore volume (0.6–0.8 cm3/g). Catalytic trials have shown that, under the conditions of the С18+ feed dewaxing, the target liquid product is formed exclusively in the presence of catalysts prepared by the template procedure, which demonstrates essential advantage of this approach and apparent shift of the process toward isomerization.
KW - Pt catalysts
KW - SAPO-11
KW - high-molecular-mass hydrocarbon feedstock
KW - isodewaxing
KW - polymer microspheres
KW - template method
KW - платиновые катализаторы
KW - SAPO-11
KW - изодепарафинизация
KW - высокомолекулярное углеводородное сырье
KW - темплатный метод
KW - полимерные микросферы
UR - https://www.mendeley.com/catalogue/a942639b-0c78-33da-9619-21c4fc435939/
UR - https://www.scopus.com/pages/publications/105046609411
U2 - 10.1134/S0965544126601055
DO - 10.1134/S0965544126601055
M3 - Article
VL - 66
SP - 523
EP - 543
JO - Petroleum Chemistry
JF - Petroleum Chemistry
SN - 0965-5441
IS - 5
ER -
ID: 83072696