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内部出版物
在“
Elsevier电子期刊
”中,
命中:
1,558
条,耗时:小于0.01 秒
1.
Development of a regenerative
reformer
for tar-free syngas production in a steam gasification process
作者:
Yosuke Tsuboi
;
yosuke_tsuboi@ihi.co.jp
;
Shintaro Ito
;
Makoto Takafuji
;
Hiroaki Ohara
;
Toshiro Fujimori
关键词:
Tar
reformer
;
Regeneration
;
Thermal cracking
;
Steam gasification
刊名:Applied Energy
出版年:2017
2.
Experimental and numerical investigation of methane thermal partial oxidation in a small-scale porous media
reformer
作者:
A. Loukou
a
;
alexandra.loukou@kit.edu
;
M.A.A. Mendes
a
;
I. Frenzel
b
;
J.M.C. Pereira
c
;
S. Ray
b
;
J.C.F. Pereira
c
;
D. Trimis
a
关键词:
Porous media combustion
;
Methane reforming
;
Premixed combustion
;
Synthesis-gas production
;
Stationary flame stabilization
刊名:International Journal of Hydrogen Energy
出版年:2017
3.
Increased strength of the scapular stabilizer and lumbar muscles after twelve weeks of Pilates training using the
Reformer
machine: A pilot study
作者:
Nú
;
bia Tomain Otoni dos Santos
;
Master in Physical Education
a
;
Karoline Cipriano Raimundo
;
Master in Physical Education
b
;
Sheila Aparecida da Silva
;
Master in Physical Education
b
;
sassilva1721@gmail.com
;
Lara Andrade Souza
;
Master's student in the Graduate Program in Physical education
b
;
Karoline Carregal Ferreira
;
Physiotherapy bachelor
c
;
Zuleika Ferreira Borges Santo Urbano
;
Master in Health Sciences
d
;
André
;
a Licre Pessina Gasparini
;
Master in Bioengineering
;
School of Medicine
;
a PhD in Biomechanics
;
Medicine
;
Locomotive Apparatus Rehabilitation
b
;
Dernival Bertoncello
;
Master
;
PhD in Physiological Sciences
b
;
bertoncello@fisioterapia.uftm.edu.br
关键词:
Exercise therapy
;
Muscle strength
;
Pilates
刊名:Journal of Bodywork and Movement Therapies
出版年:2017
4.
Development of a stand-alone steam methane
reformer
for on-site hydrogen production
作者:
Jung-Il Yang
;
yangji@kier.re.kr" class="auth_mail" title="E-mail the corresponding author
;
Tae Wan Kim
;
Ji Chan Park
;
Tak-Hyoung Lim
;
Heon Jung
;
Dong Hyun Chun
关键词:
Small stationary
reformer
;
Stand-alone type
;
Steam methane reforming
;
Heat-exchanger type
reformer
;
Hydrogen production rate
刊名:International Journal of Hydrogen Energy
出版年:2016
5.
A combined thermo-kinetic analysis of various methane reforming technologies: Comparison with dry reforming
作者:
M.S. Challiwala
a
;
M.M. Ghouri
a
;
P. Linke
a
;
M.M. El-Halwagi
b
;
N.O. Elbashir
a
;
c
;
nelbashir@tamu.edu
;
nimir.elbashir@qatar.tamu.edu
关键词:
Dry reforming
;
Gibbs free energy minimization
;
Synthesis gas
;
Kinetic modeling
;
Combined reforming
刊名:Journal of CO2 Utilization
出版年:2017
6.
Investigation of the effect of
reformer
gas on PRFs HCCI combustion based on exergy analysis
作者:
Elaheh Neshat
a
;
Rahim Khoshbakhti Saray
a
;
khoshbakhti@sut.ac.ir" class="auth_mail" title="E-mail the corresponding author
;
Vahid Hosseini
b
关键词:
HCCI engine
;
Availability analysis
;
Primary reference fuels
;
Reformer
gas
;
Multi zone model
刊名:International Journal of Hydrogen Energy
出版年:2016
7.
Solar molten salt heated membrane
reformer
for natural gas upgrading and hydrogen generation: A CFD model
作者:
Syed A.M. Said
a
;
1
;
samsaid@kfupm.edu.sa" class="auth_mail" title="E-mail the corresponding author
;
David S.A. Simakov
b
;
1
;
dsimakov@uwaterloo.ca" class="auth_mail" title="E-mail the corresponding author
;
Mohammed Waseeuddin
a
;
Yuriy Romá
;
n-Leshkov
c
;
yroman@mit.edu" class="auth_mail" title="E-mail the corresponding author
关键词:
Parabolic trough
;
Membrane
reformer
;
Methane
;
Hydrogen
刊名:Solar Energy
出版年:2016
8.
Techno-economic analysis of production of Fischer-Tropsch liquids via biomass gasification: The effects of Fischer-Tropsch catalysts and natural gas co-feeding
作者:
Mohammad Rafati
a
;
Lijun Wang
b
;
c
;
lwang@ncat.edu
;
David C. Dayton
d
;
Keith Schimmel
a
;
Vinayak Kabadi
c
;
Abolghasem Shahbazi
b
;
c
关键词:
Fischer-Tropsch
;
Biofuel
;
Biomass gasification
;
Aspen Plus®
;
Process modeling
;
Techno-economic analysis
刊名:Energy Conversion and Management
出版年:2017
9.
Comparatative analysis on various
reformer
s supplied with different fuels and integrated with high temperature PEM fuel cells
作者:
Harikishan R. Ellamla
;
hariehkr@gmail.com" class="auth_mail" title="E-mail the corresponding author
;
Piotr Bujlo
;
Cordellia Sita
;
Sivakumar Pasupathi
关键词:
Fuel cell
;
Steam
reformer
;
HT-PEMFC
;
Current density
;
Fuel flexibility
;
Ethanol
刊名:Chemical Engineering Science
出版年:2016
10.
The Heatpipe
Reformer
with optimized combustor design for enhanced cold gas efficiency
作者:
Jonas M. Leimert
;
jonas.leimert@fau.de" class="auth_mail" title="E-mail the corresponding author
;
Peter Treiber
;
Jü
;
rgen Karl
关键词:
Heatpipe
Reformer
;
Emissions
;
Gasification
;
Combustion
;
Cold gas efficiency
刊名:Fuel Processing Technology
出版年:2016
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