Effect of Silica on the Stability of the Nanostructure and Texture of Fine-Particle Alumina
Научная публикация
Общее |
Язык:
Английский,
Жанр:
Статья (Full article),
Статус опубликования:
Опубликована,
Оригинальность:
Переводная
|
Журнал |
Kinetics and Catalysis
ISSN: 0023-1584
, E-ISSN: 1608-3210
|
Вых. Данные |
Год: 2012,
Том: 53,
Номер: 1,
Страницы: 125-136
Страниц
: 12
DOI:
10.1134/S0023158412010120
|
Авторы |
Shutilov A.A.
1,2
,
Zenkovets G.A.
1,2
,
Tsybulya S.V.
1,2
,
Gavrilov V.Yu.
1
|
Организации |
1 |
Boreskov Institute of Catalysis, Siberian Branch, Russian Academy of Sciences, Novosibirsk, 630090 Russia
|
2 |
Novosibirsk State University, Novosibirsk, 630090 Russia
|
|
Информация о финансировании (2)
1
|
Президиум СО РАН
|
36
|
2
|
Министерство образования и науки Российской Федерации
|
2.1.1./10165
|
The effect of the modification of aluminum oxide with silicon oxide on the stability of fine-particle gamma- and delta-Al2O3 phases upon heat treatment in the wide temperature range of 550-1500 degrees C was studied. It was found that the gamma- and delta-Al2O3 phases modified with silica are thermally stable up to higher temperatures than pure aluminum oxide. This is due to changes in the real structure of the modified samples, specifically, an increase in the concentration of extensive defects stabilized by hydroxyl groups bound to not only aluminum atoms but also silicon atoms. It is likely that Si-OH groups, which are thermally more stable than Al-OH groups, stabilize the microstructure of gamma- and delta-Al2O3 to higher temperatures, as compared with aluminum oxide containing no additives. Simultaneously, an increase in the thermal stability of the modified samples is accompanied by the retention of a high specific surface area and a developed pore structure at higher treatment temperatures.