Steam Reforming of Methane on Ru and Pt Promoted Nanocomposites for SOFC Anodes
Научная публикация
Общее |
Язык:
Английский,
Жанр:
Статья (Full article),
Статус опубликования:
Опубликована,
Оригинальность:
Оригинальная
|
Конференция |
2009 MRS Fall Meeting. Symposium Y – Catalytic Materials for Energy, Green Processes and Nanotechnology
30 нояб. - 3 дек. 2009
,
Boston, MA
|
Сборник |
Catalytic materials for energy, green processes and nanotechnology : symposium held November 30-December 3, 2009, Boston, Massachusetts, U.S.A.
Сборник,
Cambridge University Press. 2010.
244 c. ISBN 9781107408050.
РИНЦ
|
Журнал |
Materials Research Society Symposium Proceedings
ISSN: 0272-9172
|
Вых. Данные |
Год: 2010,
Том: 1217,
Страницы: 27-32
Страниц
: 6
DOI:
10.1557/PROC-1217-Y03-11
|
Авторы |
Mezentseva Natalia
1
,
Alikina Galina
1
,
Bunina Rimma
1
,
Pelipenko Vladimir
1
,
Ischenko Arcady
1
,
Smirnova Alevtina
3
,
Smorygo Oleg
4
,
Sadykov Vladislav A
1,2
|
Организации |
1 |
Институт катализа им. Г.К. Борескова СО РАН
|
2 |
Новосибирский национальный исследовательский государственный университет
|
3 |
Eastern Connecticut State University
|
4 |
Институт порошковой металлургии НАН Беларуси
|
|
Информация о финансировании (4)
1
|
European Commission
|
20089 FP6-2004-ENERGY-3 SOFC600
|
2
|
Президиум СО РАН
|
57
|
3
|
Президиум РАН
|
57
|
4
|
North Atlantic Treaty Organization
|
SfP-980878
|
Nanocomposite cermet materials comprised of NiO/YSZ (20-90 wt. %) co-promoted with SmPrCeZrO or LaPrMnCrO complex oxides and Pt, Pd or Ru were synthesized by Pechini method. These materials were characterized by BET, TEM with EDX, and CH4 TPR. The catalytic properties were studied for the steam reforming (SR) of CH4 at short contact times. Factors controlling performance of these composites in CH4 SR (Ni content, interaction between components in composites as dependent upon their chemical composition) were determined. Ru-promoted composite supported on Ni-Al foam demonstrated a high (up to 75%) methane conversion at 650° in the feed containing 20% CH4 and 40% H2O in Ar