Cold sintering of α- and γ-modifications of aluminum oxohydroxides: A low-temperature route to porous corundum ceramics

Objectives. To obtain porous corundum ceramics using an innovative cold sintering process starting from different phase modifications of aluminum oxohydroxide — boehmite γ-AlOOH and diaspore α-AlOOH; to study the phase and structural properties of the resulting materials; and to assess their permeab...

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Main Authors: A. A. Kholodkova, M. V. Kornyushin, A. V. Smirnov, L. A. Arbanas, A. N. Khrustalev, V. E. Bazarova, A. V. Shumyantsev, S. Yu. Kupreenko, Yu. D. Ivakin
Format: Article
Language:Russian
Published: MIREA - Russian Technological University 2024-09-01
Series:Тонкие химические технологии
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Online Access:https://www.finechem-mirea.ru/jour/article/view/2125
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author A. A. Kholodkova
M. V. Kornyushin
A. V. Smirnov
L. A. Arbanas
A. N. Khrustalev
V. E. Bazarova
A. V. Shumyantsev
S. Yu. Kupreenko
Yu. D. Ivakin
author_facet A. A. Kholodkova
M. V. Kornyushin
A. V. Smirnov
L. A. Arbanas
A. N. Khrustalev
V. E. Bazarova
A. V. Shumyantsev
S. Yu. Kupreenko
Yu. D. Ivakin
author_sort A. A. Kholodkova
collection DOAJ
description Objectives. To obtain porous corundum ceramics using an innovative cold sintering process starting from different phase modifications of aluminum oxohydroxide — boehmite γ-AlOOH and diaspore α-AlOOH; to study the phase and structural properties of the resulting materials; and to assess their permeability to water.Results. Cold sintering enables the formation of single-phase corundum ceramics with an open porosity of 47.9% directly from the initial boehmite powder with the addition of 5 wt % corundum in the presence of 20 wt % water at a temperature of 450°C, mechanical pressure of 220 MPa, and isothermal exposure for 30 min. Under the same conditions of cold sintering, a mixture of diaspore and boehmite was transformed into α-AlOOH ceramics. This then turned into corundum with an open porosity of 39% when calcined in air at 600°C for 1 h. The resulting materials had permeability for pure water above 5000 L/(m2∙h∙bar).Conclusions. Cold sintering is a promising approach to producing porous corundum ceramics which can be used in filtration systems. Compared to traditional ceramic technology, the new approach reduces energy, time, and labor costs in the material manufacturing. It also eliminates the need to use auxiliary substances (binders, pore-forming agents, etc.).
format Article
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institution DOAJ
issn 2410-6593
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language Russian
publishDate 2024-09-01
publisher MIREA - Russian Technological University
record_format Article
series Тонкие химические технологии
spelling doaj-art-56da783df638405b8a054486dabdb92d2025-08-20T02:59:45ZrusMIREA - Russian Technological UniversityТонкие химические технологии2410-65932686-75752024-09-0119433734910.32362/2410-6593-2024-19-4-337-3491770Cold sintering of α- and γ-modifications of aluminum oxohydroxides: A low-temperature route to porous corundum ceramicsA. A. Kholodkova0M. V. Kornyushin1A. V. Smirnov2L. A. Arbanas3A. N. Khrustalev4V. E. Bazarova5A. V. Shumyantsev6S. Yu. Kupreenko7Yu. D. Ivakin8State University of ManagementState University of ManagementMIREA – Russian Technological UniversityMIREA – Russian Technological UniversityMIREA – Russian Technological UniversityMIREA – Russian Technological UniversityM.V. Lomonosov Moscow State University; All-Russian Institute for Scientific and Technical InformationM.V. Lomonosov Moscow State UniversityM.V. Lomonosov Moscow State University; MIREA – Russian Technological UniversityObjectives. To obtain porous corundum ceramics using an innovative cold sintering process starting from different phase modifications of aluminum oxohydroxide — boehmite γ-AlOOH and diaspore α-AlOOH; to study the phase and structural properties of the resulting materials; and to assess their permeability to water.Results. Cold sintering enables the formation of single-phase corundum ceramics with an open porosity of 47.9% directly from the initial boehmite powder with the addition of 5 wt % corundum in the presence of 20 wt % water at a temperature of 450°C, mechanical pressure of 220 MPa, and isothermal exposure for 30 min. Under the same conditions of cold sintering, a mixture of diaspore and boehmite was transformed into α-AlOOH ceramics. This then turned into corundum with an open porosity of 39% when calcined in air at 600°C for 1 h. The resulting materials had permeability for pure water above 5000 L/(m2∙h∙bar).Conclusions. Cold sintering is a promising approach to producing porous corundum ceramics which can be used in filtration systems. Compared to traditional ceramic technology, the new approach reduces energy, time, and labor costs in the material manufacturing. It also eliminates the need to use auxiliary substances (binders, pore-forming agents, etc.).https://www.finechem-mirea.ru/jour/article/view/2125cold sinteringaluminum oxidealuminum oxohydroxidecorundumboehmitediasporeporous permeable ceramics
spellingShingle A. A. Kholodkova
M. V. Kornyushin
A. V. Smirnov
L. A. Arbanas
A. N. Khrustalev
V. E. Bazarova
A. V. Shumyantsev
S. Yu. Kupreenko
Yu. D. Ivakin
Cold sintering of α- and γ-modifications of aluminum oxohydroxides: A low-temperature route to porous corundum ceramics
Тонкие химические технологии
cold sintering
aluminum oxide
aluminum oxohydroxide
corundum
boehmite
diaspore
porous permeable ceramics
title Cold sintering of α- and γ-modifications of aluminum oxohydroxides: A low-temperature route to porous corundum ceramics
title_full Cold sintering of α- and γ-modifications of aluminum oxohydroxides: A low-temperature route to porous corundum ceramics
title_fullStr Cold sintering of α- and γ-modifications of aluminum oxohydroxides: A low-temperature route to porous corundum ceramics
title_full_unstemmed Cold sintering of α- and γ-modifications of aluminum oxohydroxides: A low-temperature route to porous corundum ceramics
title_short Cold sintering of α- and γ-modifications of aluminum oxohydroxides: A low-temperature route to porous corundum ceramics
title_sort cold sintering of α and γ modifications of aluminum oxohydroxides a low temperature route to porous corundum ceramics
topic cold sintering
aluminum oxide
aluminum oxohydroxide
corundum
boehmite
diaspore
porous permeable ceramics
url https://www.finechem-mirea.ru/jour/article/view/2125
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