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SCEJ 80th Annual Meeting (Tokyo, 2015)

List of received applications (By topics code)


9) Energy engineering

9-e. New energies & energy systems

Most recent update: 2015-07-10 15:24:01

The keywords that frequently used
in this toopics code.
KeywordsNumber
SOFC6**
direct formic acid fuel cell4*
Direct methanol fuel cell3*
fuel cell2
oxide ion conductor2
DCFC2
solar cell2
Pd2
solid oxide fuel cell2
recrystallization1

ACKN
No.
Title/Author(s)KeywordsStyle
149Clarification on Heat Transfer Phenomena in Single Cell of PEFC under High Temperature Operation by Means of Heat Transfer Model Utilizing Temperature Data Measured by Thermograph
(Mie U.) *Osada Kotaro, Baba Masashi, Mahadi_Amir Hakimi, Nishimura Akira, Hirota Masafumi
PEFC
Heat Transfer Modeling
High Temperature Operation
P
277Effect of the cathode electrode structure on the overpotential of direct formic acid fuel cell
(Kanazawa U.) *Matsuoka Fumihiko, Tsujiguchi Takuya, Osaka Yugo, Kodama Akio
direct formic acid fuel cell
micro porous layer
crossover
P
279Development of anode electrode catalyst using TiO2 modified CNF support for DMFC
(Gunma U.) *Kawatsu Yusuke, Ishitobi Hirokazu, Nakagawa Nobuyoshi
TiO2 modified CNF support
Electrode catalyst
Direct Methanol Fuel Cell
P
281Numerical simulations of heat and mass transfer and degradation in a SOFC cell stack
(Osakagas) *Mori Tetsuya, Nishimura Kouichi, Suzuki Minoru
SOFC
Simulation
Degradation
O
282PtRu catalyst supported on CeO2 embedded carbon nanofibers for Direct Methanol Fuel Cell (DMFC)
(Gunma U.) *Kunitomo Hikari, Ishitobi Hirokazu, Nakagawa Nobuyoshi
direct methanol fuel cell (DEMC)
methanol oxidation reaction
nanofiber catalyst
P
288Power generation characteristics of a DMFC using high activated nano fiber catalyst
(Gunma U.) *Tsukagoshi Yousuke, Ishitobi Hirokazu, Nakagawa Nobuyoshi
Direct methanol fuel cell
TiO2 embedded carbon nanofiber support
Catalyst layer
P
289Evaluation of performance on segment-in-series tubular type SOFC stack by coupled multiphysics
(U. Tokyo) *Miyazaki Kenya, Otomo Junichiro
Solid oxide fuel cell
segment-in-series tubular type stack
finite element method
P
344Characteristics of dehydrogenation of 2-propanol using fixed bed flow tubular reactor
(Tokyo U. Sci.) *Kaneko T., Kobayashi D., Shimada Y., Otake K., Shono A., (New-Energy Laboratory) Saito Y.
Dehydrogenation
Chemical hydride
2-Propanol
P
349Investigation of the degradation of iron-oxide oxygen carrier in chemical looping systems
(U. Tokyo) *Kikuchi N., (Chuo U.) Hatano H., (U. Tokyo) Otomo J.
chemical looping
oxide ion conductor
redox kinetics
P
396Structure requirements and optimization of solar cells based on crystalline Si coated with carbon nanotubes
(Waseda U.) *Muramoto Eri, Yamasaki Yuhei, Hasegawa Kei, Osawa Toshio, Noda Suguru
carbon nanotubes
silicon
solar cells
P
505DMFC property of polymer electrolyte membrane prepared from polysulfon-based graft copolymer
(Yamaguchi U.) *Endo N., Ukai K., (Kobe U.) Kakihana Y., (Yamaguchi U.) Higa M.
Direct methanol fuel cell
polysulfon
Polymer electrolyte membrane
O
514Preparation of titanium phosphate glass-ceramics membrane and proton conductivity measurement
(U. Tokyo Frontier Sciences) *Kadota Minoru, Otomo Junichiro
glass-ceramics membrane
proton conductor
sol-gel method
P
515Effect of the ultrasonication during the chemical reduction on the formic acid electrooxidation of Pd/C
(Kanazawa U.) *Onishi Ryo, Tsujiguchi Takuya, Osaka Yugo, Kodama Akio
direct formic acid fuel cell
chemical reduction
ultrasonic
P
596Study on novel SOFC anodes of pyrochlore oxides
(U. Tokyo) *Sasozaki Tomohito, Kikuchi Ryuji, Takagaki Atsushi, Sugawara Takashi, Oyama S._Ted
SOFC
Anode
Pyrochlore oxide
P
627Recovery of rare metals in waste water and synthesis of catalyst for direct methanol fuel cell electrodes using microorganism
(Kyoto U.) *Sugiura K., Yamanaka H., Sano N., Tamon H.
reducing algae
rare metal
fuel cell
P
675Examination for Dependency of High-Efficiency Organic Solar Cells on the Size of Metal Nanoparticles
(Tokyo Tech) *Akita H., Loew N., Ihara M.
organic solar cells
metal nanoparticles
diameter
P
677Effect of Modifiers and Introducing Method of Metal Nanoparticles to Porous Si Aiming to Apply to the Solar Cells
(Tokyo Tech) *Murakami K., Yamada K., Akita H., Ihara M.
Solar Cell
Nanoparticle
Porous Silicon
P
683Degradation control by adjusting fuel supply interval time in Pulse Jet-Rechargeable Direct Carbon Fuel Cell using fuel containing sulfur compounds
(Tokyo Tech) *Hattori S., Sugiyama S., Chen Y., Ihara M.
fuel cell
SOFC
sulfur
P
684Design concept for the anode catalyst of direct formic acid fuel cell
(Kanazawa U./JST PREST) *Tsujiguchi T., (Kanazawa U.) Osaka Y., Kodama A.
Direct formic acid fuel cell
Pd
Energy carrier
O
699A Simple Method to Synthesis Indium Nanoparticles and Their Application for Silicon Nanowires Solar Cells
(Tokyo Tech/JST) *Zhang Xiaomei, (Tokyo Tech) Murakami Kazuki, (Tokyo Tech/JST) Lukianov Anatolii, (Tokyo Tech) Yamada Kairi, (Tokyo Tech/JST) Ihara Manabu
Indium
nanoparticles
solar cell
O
704Fabrication and evaluation of YBCO cathode thin film for SOFC
(Osaka Pref. U.) *Fujita Takahiro, Mukai Takehito, Tsukui Shigeki, (TMCIT) Yoshida Kenichi, (Osaka Pref. U.) Adachi Motoaki
SOFC
YBCO
PLD
P
717Development of the formic acid oxidation catalyst stabilized by hyper branched polymer
(Kanazawa U.) *Nakajima Kiyoto, Tsujiguchi Takuya, (Nissan chemical) Kojima Keisuke, (Kanazawa U.) Osaka Yugo, Kodama Akio
direct formic acid fuel cell
hyper branched polymer
Pd
P
726Performance improvement of light integrated gasification and fuel cell
(Kyushu U.) *Bin_Nur Taufiq, (U. Tokyo) Kikuchi Yasunori, (Kyushu U.) Ishimoto Takayoshi, Honda Kuniaki, Koyama Michihisa
solid oxide fuel cell
coal gasification
Aspen plus
O
777Investigation of reaction mechanism in CO2/H2O electrolysis by using a solid oxide fuel cell
(Tokyo Tech) *Izumi T., Chen Y., Li X., Sugiyama S., Ihara M.
Electrolysis
SOEC
SOFC
P
783The structural control of membrane electrode assembly for improving power generation performance in solid-state alkaline fuel cells
(Tokyo Tech.) *Hiura Junya, (Tokyo Tech./JST-CREST) Oshiba Yuhei, Yamaguchi Takeo
Solid-state alkaline fuel cell
Membrane electrode assemble
Cell performance
P
786Change of electrochemical characteristics in solid oxide fuel cell by adding perovskite-type oxide to the anode.
(Tokyo Tech) *Shimamura R., Noda Y., Li X., Sugiyama S., Hattori S., Izumi T., Ihara M.
perovskite-type oxide
SOFC
electrochemical characteristics
P
827Ethanol oxidation for a fuel cell with silica-carbon catalyst support
(Gunma U.) *Ishitobi Hirokazu, Ino Yurina, Nakagawa Nobuyoshi
Direct ethanol fuel cell
Selectivity
Reaction rate
O
830Effect of Li2CO3/Na2CO3/K2CO3 ratio on molten carbonate-type DCFC performance
(Tokyo Tech) *Kimura A., Watanabe H., Okazaki K.
DCFC
slurry
ternary carbonate
P
840Mechanism of partial electrochemical oxidation in DCFC anode
(Tokyo Tech) *Watanabe Hirotatsu, Kimura Akihiro, Okazaki Ken
DCFC
Partial electrochemical oxidation
reaction mechanism
O
845Preparation of hetero-junction using CaTi0.8Fe0.2O3 mixed conductor and measurements of ionic and electronic conductivities
(U. Tokyo) *Iwanaga Aki, Otomo Junichiro
calcium titanate
mixed ionic-electronic conductor
p-n junction
P
853Application of oxide ion conductors to hydrogen production/energy conversion systems
(U. Tokyo) *Otomo Junichiro, Kosaka Fumihiko
hydrogen production
oxide ion conductor
steam-iron reaction
O
911Epi-Si deposition on por-Si by zone-heating recrystallization for solar cells
(JST) *Lukianov Anatolii, (TokyoTech) Ihara Manabu
por-Si
recrystallization
annealing
O

List of received applications (By topics code)

List of received applications
SCEJ 80th Annual Meeting (Tokyo, 2015)

(C) 2015 The Society of Chemical Engineers, Japan. The Society of Chemical Engineers, Japan. All rights reserved.
Most recent update: 2015-07-10 15:24:01
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