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SCEJ 49th Autumn Meeting (Nagoya, 2017)

Last modified: 2017-09-06 10:00:00

Session programs : ST-23

The abstracts can be viewed by clicking the Paper IDs.
The ID/PW printed on the PROGRAM book are required.

ST-23 [Trans-Division Symposium]
Recent Advances in Batteries, solar Cells, Fuel Cells, Energy Carriers and Other Energy Conversion Technologies from Materials to Systems (Oral Session)

Organizers: Tamaki Takanori (Tokyo Tech), Tsujiguchi Takuya (Kanazawa Univ.), Saito Takeyasu (Osaka Pref. Univ.), Inoue Gen (Kyushu Univ.), Ishikawa Hiroshi (Panasonic Corp.)

This symposium covers researches on secondary batteries, fuel cells, solar cells and other energy conversion technologies. Topics include materials, devices, processes, and systems. In addition to standard presentations, we will have time for "general discussion" on how to include overall vision of energy systems, and needs from industry sections. This symposium consists of two sessions: an oral session and a poster session. In the poster session, excellent presentations by students and young researchers will be awarded.

Hall AA, Day 1 | Hall AA, Day 2 | Hall AA, Day 3

TimePaper
ID
Title / AuthorsKeywordsTopic codeAck.
number
Hall AA(Bldg.1 2F 121), Day 1(Sep. 20)
(10:00–11:00) (Chair: Hasegawa Kei)
10:0010:20AA104Energy conversion system with low tar gasifier and Solid Oxide Fuel Cell (SOFC)
(ORIST) *(Ful·APCE)Yamaguchi Shimpei, (Ful)Katagiri Kazuaki, Ozaki Tomoatsu, (Ful·PCEF)Ehiro Takuya, Kakitsuji Atsushi
gasification
SOFC
ST-23393
10:2010:40AA105Formation of anode reaction field for high performance direct carbon fuel cell
(Tokyo Tech) *(Ful)Watanabe Hirotatsu, Nakanouchi Minori, Hanamura Katsunori
DCFC
char
anode
ST-23488
10:4011:00AA106Cell fabrication and electrode characteristics of proton-conducting solid oxide fuel cells
(U. Tokyo) *(Stu)Kojo Gen, (Tokyo Gas) (Ful)Matsuzaki Yoshio, (U. Tokyo) (Ful)Otomo Junichiro
lanthanum tungsten oxide
proton conductor
SOFC
ST-23322
(11:00–12:00) (Chair: Saito Takeyasu)
11:0011:20AA107Investigation of 2-dimensional crystal growth of the light absorbing layer for perovskite thin film tandem solar cell
(Tokyo Tech) *(Stu)Suzuki K., (Ful)Hasegawa K., (Ful)Ihara M.
perovskite
solar cell
crystal growth
ST-23555
11:2011:40AA108Rapid fabrication of low defect monocrystalline Si thin film for solar cell on porous Si seed layer with controlled surface roughness in nanometer-size
(Tokyo Tech) *(Ful)Hasegawa Kei, Takazawa Chiaki, (Waseda U.) (Stu)Fujita Makoto, (Ful)Noda Suguru, (Tokyo Tech) (Ful)Ihara Manabu
Si solar cell
zone heating recrystallization
rapid vapor deposition
ST-23562
11:4012:00AA109Towards ultra-thin plasmonic porous silicon solar cells with effective passivation
(Tokyo Tech) *(Ful)Zhang Xiao-Mei, Murakami Kazuki, (Stu)Yogai Ryohji, (Ful)Hasegawa Kei, (Ful)Ihara Manabu
porous silicon
solar cells
plasmonic
ST-23662
Hall AA(Bldg.1 2F 121), Day 2(Sep. 21)
(9:20–10:00) (Chair: Nishimura Akira)
9:209:40AA202Mass tranport properties through the electrodes for direct liquid fuel cell
(Kanazawa U./JST-PRESTO) *(Ful)Tsujiguchi Takuya, (Kanazawa U.) (Ful)Osaka Yugo, (Ful)Kodama Akio
DFAFC
DMFC
Mass transport
ST-23506
9:4010:00AA203Structural analysis of PEFC catalyst layer using unsupported PtNi aerogels and the modeling of the formation process
(Panasonic) *(Ful)Ishikawa Hiroshi, (Paul Scherrer Inst.) Henning Sebastian, Herranz Juan, Schmidt Thomas
catalyst layer
modeling
aerogels
ST-23830
(10:00–11:00) (Chair: Tamaki Takanori)
10:0011:00AA204[Invited lecture] Development of LiB and Fuel cell manufacturing equipment with low cost and high productivity
(SCREEN Finetech Solutions) *Yamanaka Masatake, *Kawakami Takuto, Takagi Yoshinori
Coating
Fuel cell
Rechargeable battery
ST-2334
(11:00–12:00) (Chair: Kikuchi Ryuji)
11:0011:20AA207Research and development of efficient fuel-power energy conversion technology using solid oxide cells
(AIST) *(Ful)Tanaka Yohei, Kato Tohru
Highly efficient SOFC
Steam and CO2 electrolysis
SOEC
ST-23481
11:2011:40AA208Modeling Comprehensive Water Electrolysis / H2 power generation Electrode Reaction Mechanism of Fuel Electrodes in Reversible Solid Oxide Fuel Cell / Electrolysis Cell (RSOFC/EC) for Hydrogen Energy Storage System
(Tokyo Tech) *(Stu)Lee H., (Stu)Iida Y., (Stu)Shimamura R., (Ful)Hasegawa K., (Ful)Ihara M.
Hydrogen energy storage system
Solid oxide fuel cell
Electrode reaction model
ST-23673
11:4012:00AA209Demonstration of Hydrogen Production by Multi-typed SOEC system (2) Influence on the system by current supply source conditions
(Toshiba) *(Ful)Tsuchiya Naomi, (Ful)Ohmura Hisao, (Cor)Kanamura Shohei, (Ful)Yoshino Masato, (Cor)Fujiwara Seiji, (Ful)Kameda Tsuneji, (Cor)Yamada Masahiko, (Ful)Yamada Kazuya
Hydrogen Production
SOEC
ST-23199
(13:00–14:00) (Chair: Tamaki Takanori)
13:0014:00AA213[Invited lecture] Technology Development of "SPERA Hydrogen" System for Hydrogen Storage and Transportation in Large Scale and Its prospects for the Future
(Chiyoda) (Cor)Okada Yoshimi
Hydrogen
Energy Carrier
Methylcyclohexane
ST-2325
(14:00–14:40) (Chair: Otomo Junichiro)
14:0014:20AA216Catalysts for hydrogen production by steam reforming of propane
(ORIST) *(Ful·APCE)Yamaguchi Shimpei, (Sumitomo Electric Ind.) (Cor)Tawarayama Hiromasa, (Cor)Majima Masatoshi, (ORIST) Shinomiya Naruaki
catalyst
hydrogen
steam reforming
ST-23398
14:2014:40AA217Rapid production of hydrogen from ammonia by solid-state microwave heating
(AIST) *(Ful)Nishioka Masateru, (Ful)Sato Koichi, Miyazawa Akira, (Yazaki) Mouri Aki, Horiuchi Satoru, Toyoda Kazuhiro, Uematsu Shoichi
hydrogen
microwave
ammonia
ST-23962
(14:40–15:40) (Chair: Tsujiguchi Takuya)
14:4015:00AA218Methane CO2 reforming over Ni catalysts supported on (La,Ba)xSr1-xTiO3-δ
(U. Tokyo) *(Ful)Kikuchi Ryuji, Seki Shiori, Takagaki Atsushi, Oyama S. Ted
Methane
CO2 reforming
Nickel catalyst
ST-23989
15:0015:20AA219Automatic high-pressure hydrogen generation from formic acid with a nano-Pd heterogeneous catalyst
(AIST) *(Ful)Zhong Heng, Iguchi Masayuki, Song Fuzhan, Chatterjee Maya, Ishizaka Takayuki, Nagao Ikuhiro, Xu Qiang, Kawanami Hajime
formic acid decomposition
hydrogen energy
energy conversion and storage
ST-23396
15:2015:40AA220Kinetic Analysis of Electrochemical Promotion in Ammonia Production
(U. Tokyo) *(Ful)Kosaka Fumihiko, (Stu)Oikawa Akio, Hasegawa Takuto, (Ful)Otomo Junichiro
ammonia electrosynthesis
proton conductor
electrochemical promotion
ST-23378
(15:40–16:00)
15:4016:00General discussion
Hall AA(Bldg.1 2F 121), Day 3(Sep. 22)
(9:00–10:00) (Chair: Fukunaga Hiroshi)
9:009:20AA301Influence of insulation on preservation of snow mound as a cooling source
(Yamagata U.) *(Stu)Asahina Kazuma, Ueno Toshiki, (Ful)Higuchi Takeshi
snow storage system
cooling source
insulation
ST-23551
9:209:40AA302Experimental study on the heat and mass transfer behavior into the consolidated silica-gel layer
(Kanazawa U.) *(Stu)Kotani Shohei, (Ful)Osaka Yugo, (Ful)Tsujiguchi Takuya, (Ful)Kodama Akio
Adsorption heat exchanger
silica-gel
Desiccant air conditioning
ST-23956
9:4010:00AA303Power output enhancement of the redox flow battery by the electrode with non-uniform porosity
(Gunma U.) *(Ful)Ishitobi Hirokazu, (Stu·PCEF)Sugawara Satoshi, (Stu·PCEF)Oba Kosuke, (Stu)Hirano Takumi, (Ful)Nakagawa Nobuyoshi
Vanadium redox flow battery
Porosity
Internal resistance
ST-23809
(10:00–11:00) (Chair: Ishikawa Hiroshi)
10:0010:20AA304Homogeneous Deposition of TiO2 Nanoparticles into Porous Carbons Using a Vacuum Liquid Pulse CVD
(Hokkaido U.) *(Ful)Iwamura Shinichiroh, Motohashi Shota, (Ful)Mukai Shin
Lithium-ion Capacitor
Production Process
Nano Material
ST-23190
10:2010:40AA305Evaluation of Ag-Sn alloy anodes made by electrodeposition for Na-ion battery
(Osaka Pref. U.) *(Stu)Kiyomoto Masaki, (Ful)Okamoto Naoki, (Ful)Saito Takeyasu
Na-ion battery
Ag-Sn alloy
electrodeposition
ST-23682
10:4011:00AA306Reaction and mass transport simulation of lithium-ion battery with effect of volume change
(Kyushu U.) *(Ful)Inoue Gen, (Kyoto U.) (Stu·PCEF)Ikeshita Kazuki, (Ful)Kawase Motoaki
Lithium-ion battery
volume expansion
simulation
ST-23894
(11:00–12:00) (Chair: Inoue Gen)
11:0012:00AA307[Invited lecture] Battery Materials with Materials Simulation and Data Science
(NITech/NIMS-Mi2i/GREEN/Kyoto U.-ESICB) Nakayama Masanobu
Materials Informatics
Machine Learning
Li ion battery
ST-2311

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SCEJ 49th Autumn Meeting (Nagoya, 2017)


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