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A High-Performance Aluminum Oxide Desiccant Full article

Journal Catalysis in Industry
ISSN: 2070-0504 , E-ISSN: 2070-0555
Output data Year: 2020, Volume: 12, Number: 3, Pages: 169-175 Pages count : 7 DOI: 10.1134/s2070050420030083
Tags aluminum oxide, desiccant, alkaline modification, dynamic capacity
Authors Kruglyakov V.Yu. 1 , Glazyrin A.V. 1 , Meshcheryakov E.P. 2 , Kurzina I.A. 2 , Isupova L.A. 1
Affiliations
1 Boreskov Institute of Catalysis, Siberian Branch, Russian Academy of Sciences
2 National Research Tomsk State University

Funding (1)

1 The Ministry of Education and Science of the Russian Federation 14.575.21.0139 (RFMEFI57517X0139)

Abstract: A study is performed of the effect of the conditions of preparation (the nature and amount of alkali used to hydrate a gibbsite thermal activation product and the amount of nitric acid (acid modulus value) in preparing a moldable paste) on the properties of aluminum oxide desiccants. A desiccant is obtained that has higher dynamic capacity (more than 10.0 g/100 g) at close specific surface values of around 300 m2/g and higher static capacity (20–22 g/100 g) than foreign and Russian analogues. The desiccant has high strength of more than 8.0 MPa. Such a desiccant can improve the productivity of existing adsorbers and reduce the cost of sorbent regeneration, which is of undoubted practical interest.
Cite: Kruglyakov V.Y. , Glazyrin A.V. , Meshcheryakov E.P. , Kurzina I.A. , Isupova L.A.
A High-Performance Aluminum Oxide Desiccant
Catalysis in Industry. 2020. V.12. N3. P.169-175. DOI: 10.1134/s2070050420030083 WOS Scopus РИНЦ OpenAlex
Original: Кругляков В.Ю. , Глазырин А.В. , Мещеряков Е.П. , Курзина И.А. , Исупова Л.А.
Высокоэффективный осушитель на основе оксида алюминия
Катализ в промышленности. 2019. Т.19. №6. С.421-429. DOI: 10.18412/1816-0387-2019-6-421-429RSCI РИНЦ AN OpenAlex
Dates:
Submitted: Jun 20, 2019
Accepted: Sep 10, 2019
Published print: Jul 1, 2020
Published online: Sep 28, 2020
Identifiers:
Web of science: WOS:000573258100001
Scopus: 2-s2.0-85091628811
Elibrary: 45263292
OpenAlex: W3090161247
Citing:
DB Citing
Scopus 3
Web of science 3
Elibrary 1
OpenAlex 3
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