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New Ways of Preparation of High-Surface Area Granulated Alumina Supports Full article

Journal Chimica Techno Acta
, E-ISSN: 2411-1414
Output data Year: 2025, Volume: 12, Number: 4, Article number : 9164, Pages count : 13 DOI: 10.15826/chimtech.9164
Tags alumina, dawsonite, scarbroite, amorphous alumina
Authors Vatutina Yuliya V. 1 , Lakizo Tatyana A. 1 , Nadeina Ksenia A. 1 , Pakharukova Vera P. 1 , Pochtar Alena A. 1 , Lashinskaya Zoya N. 1 , Gerasimov Evgeniy Yu. 1 , Dik Pavel P. 1 , Klimov Oleg V. 1 , Noskov Aleksandr S. 1
Affiliations
1 Boreskov Institute of Catalysis, Novosibirsk 630090, Russia

Funding (1)

1 Ministry of Science and Higher Education of the Russian Federation FWUR-2024-0037

Abstract: The paper describes the properties of hydroxoaluminocarbonates (dawsonite NH4Al(OH)2CO3, scarbroite Al5(OH)13(CO3)·5H2O) and their application as additives in alumina synthesis. Comparing scarbroite and dawsonite, it was found that the size of the coherent scattering region of scarbroite (25.0–40.0 nm) was higher than that of dawsonite (11.0–22.0 nm). According to FTIR spectra, scarbroite calcined at 550 °C has higher amount of residual surface CO32– groups than calcined dawsonite. The presence of CO2 in calcined scar-broite was confirmed with IR-Fourier analysis of gas decomposition prod-ucts. The Al2O3 samples prepared by calcination of hydroxoaluminocar-bonates at 550 °C contained X-ray amorphous phase. The Al2O3 sample ob-tained from scarbroite contained a small amount of γ-Al2O3. By addition of dawsonite/scarbroite to pseudoboehmite for granulated aluminum oxide, it was possible to significantly increase the specific surface area from 223 to 243–298 m2/g, pore volume from 0.48 to 0.62–0.81 cm3/g and water capaci-ty from 0.49 to 0.9–1.2 cm3/g.
Cite: Vatutina Y.V. , Lakizo T.A. , Nadeina K.A. , Pakharukova V.P. , Pochtar A.A. , Lashinskaya Z.N. , Gerasimov E.Y. , Dik P.P. , Klimov O.V. , Noskov A.S.
New Ways of Preparation of High-Surface Area Granulated Alumina Supports
Chimica Techno Acta. 2025. V.12. N4. 9164 :1-13. DOI: 10.15826/chimtech.9164
Dates:
Submitted: Oct 9, 2025
Accepted: Nov 24, 2025
Published online: Nov 24, 2025
Identifiers: No identifiers
Citing: Пока нет цитирований
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