Ethanol internal reforming in solid oxide fuel cells: A path toward high performance metal-supported cells for vehicular applications
2
Nissan Motors Company, Ltd, Nissan Research Center, EV System Laboratory, 1 Natsushima-cho, Yokosuka-shi, Kanagawa, 237-8523, Japan
|
Тип публикации: Journal Article
Дата публикации: 2020-02-01
scimago Q1
wos Q1
БС1
SJR: 1.784
CiteScore: 14.9
Impact factor: 7.9
ISSN: 03787753, 18732755
Physical and Theoretical Chemistry
Electrical and Electronic Engineering
Energy Engineering and Power Technology
Renewable Energy, Sustainability and the Environment
Краткое описание
Internal reforming of ethanol fuel was investigated on high-performance metal-supported solid oxide fuel cells (MS-SOFCs) with infiltrated catalysts. The hydrogen concentration and internal reforming effects were evaluated systematically with different fuels including: hydrogen, simulated reformate, anhydrous ethanol, ethanol water blend, and hydrogen-nitrogen mixtures. A simple infiltration of Ni reforming catalyst into 40 vol% Ni-Sm0.20Ce0.80O2-δ (Ni-SDCN40) and fuel-side metal support leads to complete internal reforming, as confirmed by comparison to simulated reformate. The performance difference between hydrogen and fully-reformed ethanol is attributed entirely to decrease in hydrogen concentration. High peak power density was achieved for a range of conditions, for example 1.0 W cm−2 at 650 °C in ethanol-water blend, and 1.4 W cm−2 at 700 °C in anhydrous ethanol fuel. Initial durability tests with ethanol-water blend show promising stability for 100 h at 700 °C and 0.7 V. Carbon is not deposited in the Ni-SDCN40 anode during operation.
Найдено
Ничего не найдено, попробуйте изменить настройки фильтра.
Найдено
Ничего не найдено, попробуйте изменить настройки фильтра.
Топ-30
Журналы
|
2
4
6
8
10
|
|
|
International Journal of Hydrogen Energy
10 публикаций, 21.28%
|
|
|
Journal of Power Sources
6 публикаций, 12.77%
|
|
|
Journal of the Electrochemical Society
2 публикации, 4.26%
|
|
|
Materials Today Energy
2 публикации, 4.26%
|
|
|
Sustainability
1 публикация, 2.13%
|
|
|
Clean Technologies and Environmental Policy
1 публикация, 2.13%
|
|
|
Materials for Renewable and Sustainable Energy
1 публикация, 2.13%
|
|
|
Applied Thermal Engineering
1 публикация, 2.13%
|
|
|
Chemical Engineering Journal
1 публикация, 2.13%
|
|
|
Journal of Cleaner Production
1 публикация, 2.13%
|
|
|
International Journal of Green Energy
1 публикация, 2.13%
|
|
|
Materials
1 публикация, 2.13%
|
|
|
Biofuel and Biorefinery Technologies
1 публикация, 2.13%
|
|
|
ACS applied materials & interfaces
1 публикация, 2.13%
|
|
|
Energies
1 публикация, 2.13%
|
|
|
Energy Reviews
1 публикация, 2.13%
|
|
|
ACS Applied Energy Materials
1 публикация, 2.13%
|
|
|
Metals
1 публикация, 2.13%
|
|
|
Fuel
1 публикация, 2.13%
|
|
|
Inorganic Chemistry Communication
1 публикация, 2.13%
|
|
|
Lecture Notes in Electrical Engineering
1 публикация, 2.13%
|
|
|
Journal of Energy Chemistry
1 публикация, 2.13%
|
|
|
Applied Energy
1 публикация, 2.13%
|
|
|
Automotive Innovation
1 публикация, 2.13%
|
|
|
Journal of Power Sources Advances
1 публикация, 2.13%
|
|
|
Journal of Advanced Ceramics
1 публикация, 2.13%
|
|
|
Emergency Management Science and Technology
1 публикация, 2.13%
|
|
|
Russian Chemical Reviews
1 публикация, 2.13%
|
|
|
2
4
6
8
10
|
Издатели
|
5
10
15
20
25
30
|
|
|
Elsevier
29 публикаций, 61.7%
|
|
|
Springer Nature
5 публикаций, 10.64%
|
|
|
MDPI
4 публикации, 8.51%
|
|
|
The Electrochemical Society
2 публикации, 4.26%
|
|
|
American Chemical Society (ACS)
2 публикации, 4.26%
|
|
|
Taylor & Francis
1 публикация, 2.13%
|
|
|
Institute of Electrical and Electronics Engineers (IEEE)
1 публикация, 2.13%
|
|
|
Tsinghua University Press
1 публикация, 2.13%
|
|
|
Maximum Academic Press
1 публикация, 2.13%
|
|
|
Autonomous Non-profit Organization Editorial Board of the journal Uspekhi Khimii
1 публикация, 2.13%
|
|
|
5
10
15
20
25
30
|
- Мы не учитываем публикации, у которых нет DOI.
- Статистика публикаций обновляется еженедельно.
Вы ученый?
Создайте профиль, чтобы получать персональные рекомендации коллег, конференций и новых статей.
Метрики
47
Всего цитирований:
47
Цитирований c 2024:
15
(31.91%)
Цитировать
ГОСТ |
RIS |
BibTex
Цитировать
ГОСТ
Скопировать
Dogdibegovic E., Fukuyama Y., Tucker M. C. Ethanol internal reforming in solid oxide fuel cells: A path toward high performance metal-supported cells for vehicular applications // Journal of Power Sources. 2020. Vol. 449. p. 227598.
ГОСТ со всеми авторами (до 50)
Скопировать
Dogdibegovic E., Fukuyama Y., Tucker M. C. Ethanol internal reforming in solid oxide fuel cells: A path toward high performance metal-supported cells for vehicular applications // Journal of Power Sources. 2020. Vol. 449. p. 227598.
Цитировать
RIS
Скопировать
TY - JOUR
DO - 10.1016/j.jpowsour.2019.227598
UR - https://doi.org/10.1016/j.jpowsour.2019.227598
TI - Ethanol internal reforming in solid oxide fuel cells: A path toward high performance metal-supported cells for vehicular applications
T2 - Journal of Power Sources
AU - Dogdibegovic, Emir
AU - Fukuyama, Yosuke
AU - Tucker, Michael C
PY - 2020
DA - 2020/02/01
PB - Elsevier
SP - 227598
VL - 449
SN - 0378-7753
SN - 1873-2755
ER -
Цитировать
BibTex (до 50 авторов)
Скопировать
@article{2020_Dogdibegovic,
author = {Emir Dogdibegovic and Yosuke Fukuyama and Michael C Tucker},
title = {Ethanol internal reforming in solid oxide fuel cells: A path toward high performance metal-supported cells for vehicular applications},
journal = {Journal of Power Sources},
year = {2020},
volume = {449},
publisher = {Elsevier},
month = {feb},
url = {https://doi.org/10.1016/j.jpowsour.2019.227598},
pages = {227598},
doi = {10.1016/j.jpowsour.2019.227598}
}