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9) Energy engineering

9-e. New energies & energy systems

$B:G=*99?7F|;~!'(B2026-10-03 18:44:01

Popular Keywords in
this topics
KeywordsCount
Hydrogen storage5*
Hydrogen production4*
Redox flow battery4*
Carbon nanotube3*
Magnesium hydride3*
Hydrogen2
SOEC2
Water electrolysis2
I-V characteristics2
CO2RR2
Carbon nanotubes2
Thermolysis1

Acknowledgement
number
Title/AuthorsKeywordsStyle
71Development of environmentally friendly Li secondary batteries using an in-cell lithiation method and carbon nanotubes
(Waseda U.) *(Reg)Mae Tomotaro$B!&(B (U. Tokyo) (Int)Teah Heng Yi$B!&(B (U. Tokyo/Waseda U.) (Reg)Hirao Masahiko$B!&(B (Waseda U.) (Reg)Noda Suguru
Li-ion battery
Carbon nanotubes
Life cycle assessment
O
89Hydrogen production via low-voltage co-electrolysis of formaldehyde and water
(Waseda U.) *(Stu)Hayakawa Miki$B!&(B (Reg)Mae Tomotaro$B!&(B (Stu)Ri Hiroki$B!&(B (Reg)Noda Suguru
Substrate-assisted water electrolysis
Hydrogen production
Waste water treatment
P
90Expanding the catalytic electrode for alkaline water electrolysis from 2D to 3D using carbon nanotubes
(Waseda U.) *(Stu)Nakano Riho$B!&(B (Stu)Ri Hiroki$B!&(B (Reg)Mae Tomotaro$B!&(B (Reg)Noda Suguru
Hydrogen production
Water electrolysis
Carbon nanotube
P
105The effect of adding expanded graphite to the LaNi5-polymer resin structure on heat conduction properties and hydrogen absorption properties
(Waseda U.) *(Stu)Saeki Kazuma$B!&(B (Reg)Yoshida Keisuke$B!&(B Yamaguchi Masatsugu$B!&(B (Reg)Hanada Nobuko
Metal hydride
Expanded graphite
Thermal conductivity
P
110Heat transfer analysis of solar collector for heat source of biogas dry reforming and performance assessment on system combined with fuel cell
(Mie U.) *(Reg)Nishimura Akira$B!&(B Sato Ryoutaro$B!&(B Nakajima Ryouta
Solar Collector
Biogas Dry Reforming
Energy System
O
118Investigation of hydrogen capacity enhancement by compositing metal hydride with metal-organic framework
(Waseda U.) *(Stu)Mayanagi Otoaki$B!&(B Zukeran Ryota$B!&(B (Reg)Yoshida Keisuke$B!&(B (Reg)Noda Suguru$B!&(B (Reg)Hanada Nobuko
Hydrogen storage
H2 absorbing alloy
Porous material
P
131Development of Li-S pouch cells using carbon nanotube films preloaded with cathode materials and electrolyte salts
(Waseda U.) *(Stu)Kim Sungjun$B!&(B Ko Eun$B!&(B (Reg)Mae Tomotaro$B!&(B (Reg)Noda Suguru
Lithium-sulfur batteries
Carbon nanotubes
Pouch cells
P
140Development of a powder compaction for metal-organic framework to improve hydrogen volumetric density and evaluation of hydrogen adsorption properties
(Waseda U.) *(Stu)Iwasaki Asuka$B!&(B (Reg)Yoshida Keisuke$B!&(B Yamaguchi Masatsugu$B!&(B (Reg)Hanada Nobuko
Hydrogen storage
metal-organic framework
Powder compaction
P
271Study of cathode catalysts for intermediate temperature ammonia electrosynthesis using solid phosphate electrolytes
(Hokkaido U.) *(Stu)Hatazawa Shion$B!&(B (Reg)Tada Shohei$B!&(B (Reg)Kikuchi Ryuji
Ammnonia
Hydrogen
Electrosynthesis
P
276Evaluation of Correlation between Surface Oxygen Groups and Electrochemical Characteristics of Carbon Electrodes by Air Oxidation Conditions
(Meiji U.) *(Stu)Hirano Yudai$B!&(B (Gunma U.) Usuda Chika$B!&(B Ishii Takafumi$B!&(B (Meiji U.) (Reg)Ishitobi Hirokazu
Surface Oxygen Groups
Air Oxidation Conditions
I-V characteristics
P
278Low-temperature Heat Treatment of Seamless Carbon Using Iron Catalyst and Evaluation of Electrode Performance
(Meiji U.) *(Stu)Suzuki Ryo$B!&(B (Reg)Ishitobi Hirokazu
Porous Carbon Electrode
Fe Catalyst
Redox Flow Battery
P
279Characterization of a Novel Ion-Exchange Membrane for Vanadium Redox Flow Batteries.
(Meiji U.) *(Stu)Yamauchi Shoji$B!&(B (TUAT) Sasaki Takeru$B!&(B (Reg)Ohashi Hidenori$B!&(B (Meiji U.) (Reg)Ishitobi Hirokazu
Ion exchange membrane
Redox flow battery
Crossover
P
281Development of Autothermal Ammonia Reactor for Ammonia cracking
(Gifu U.) *(Stu)Matsumoto Natsuki$B!&(B (Reg)Kambara Shinji$B!&(B (Reg)Yoshiie Ryo$B!&(B (Reg)Nakamura Tensho
Hydrogen
Ammonia
P
294Electrochemical and Transport Characteristics of Active Materials in Aqueous Organic Redox Flow Batteries
(Meiji U.) *(Stu)Koizumi Shun$B!&(B (AIST) Sawahara Keito$B!&(B Kanega Ryoichi$B!&(B Funaki Takashi$B!&(B Hosono Eiji$B!&(B Sato Yukari$B!&(B (Meiji U.) (Reg)Ishitobi Hirokazu
Redox Flow Battery
Aqueous Organic Redox Flow Battery
Organic Active Material
P
299Electrochemical characterization of zinc-air flow battery
(Meiji U.) *(Stu)Kubota Kanato$B!&(B (Hokkaido U.) Homma Kaito$B!&(B Takeyasu Kotaro$B!&(B (Meiji U.) (Reg)Ishitobi Hirokazu
Zinc-Air Battery
Flow Battery
I-V characteristics
P
314Simulation of a biomass staged gasification process with syngas carried heat recovery
(Hirosaki U.) *(Stu)Ma Zixiao$B!&(B (Stu)Zhu Lianfeng$B!&(B (Stu)Zhou Xiaowen$B!&(B Alahakoon Yushani$B!&(B (Stu)Hao Yuanchuan$B!&(B (Reg)Abudula Abuliti$B!&(B (Reg)Guan Guoqing
Biomass gasification
staged gasification process
heat recovery
P
386Multi-scale assessment of green hydrogen production technologies in Japan
(UTokyo) *(Int)Badr Sara$B!&(B (Stu)Wada Sota$B!&(B (Stu)Ando Kazuma$B!&(B (Reg)Sugiyama Hirokazu
Water electrolysis
Decarbonization
Process modeling
O
427Evaluation of thermal integration process of solid oxide electrolysis cell with an MgH2 system using hydrogen as a heat transfer medium
(Waseda U.) *(Reg)Yoshida Keisuke$B!&(B (Reg)Noda Suguru$B!&(B (Reg)Hanada Nobuko
Magnesium hydride
SOEC
Exhausted heat
O
430Reduction of Sodium Boron Oxide by Atmospheric Pressure Hydrogen Plasma
(Gifu U.) *(Reg)Nakamura Tensho$B!&(B Saito Daiki$B!&(B (Reg)Yoshiie Ryo$B!&(B (Reg)Kambara Shinji
DBD plasma
Sodium borohydride
hydrogen carrier
O
431Cu-Ag alloy nanoparticle-supported electrodes fabricated by sputtering and their CO2 electroreduction activity
(Tohoku U.) *(Stu)Yamada Takuya$B!&(B (Reg)Iwase Kazuyuki$B!&(B Todoroki Naoto$B!&(B (Reg)Tomai Takaaki
CO2RR
catalyst
electrochemistry
O
465Anode Potential-Controlled Direct Electron Transfer-Based Bioelectromethanation
(Tohoku U.) *(Stu)Nakanishi Taiyo$B!&(B (Reg)Nakayasu Yuta$B!&(B Umetsu Masaki$B!&(B (Takuma) (Cor)Ito Ryusei$B!&(B (Cor)Yokoi Tomoka$B!&(B (Cor)Nagira Ayano$B!&(B (Tohoku U.) (Reg)Watanabe Masaru$B!&(B Tada Chika
Methanation
CO2
Electrolysis
P
475Influence of BPP In-Plane Current on Current Density and Impedance Analysis in Fuel Cells
(SUBARU) *(Reg)Onda Takumi$B!&(B Nunokawa Takumi$B!&(B Toyama Shuntaro$B!&(B Yoshimura Naohide$B!&(B (Mizuho R&T) (Cor)Tsukamoto Takayuki$B!&(B (Cor)Sugawara Rui$B!&(B (KRI) (Cor)Morikawa Ryoichi$B!&(B (Chemix) Matsuda Hiromitsu
Fuel Cell
Current Density
Impedance
P
479Sherwood number estimation for redox flow batteries employing thin porous electrodes
(Meiji U.) *(Reg)Ishitobi Hirokazu$B!&(B (Gunma U.) Ueyanagi Kota$B!&(B (Stu·PCEF)Takiue Daisuke$B!&(B (Meiji U.) Miyagawa Fuga$B!&(B (Gunma U.) (Reg)Nakagawa Nobuyoshi
Redox flow battery
Mass transport
Sherwood number
O
489Research for SOEC Electrolysis Conditins for Methanol Synthesis
(AIST) (Reg)Tanaka Yohei
SOEC
methanol synthesis
O
501Hydrogen Storage Properties and Structural Characterization of Mg particles Prepared by Arc-Discharge Flow Synthesis
(Waseda U.) *(Stu)Sato Shota$B!&(B (Reg)Yoshida Keisuke$B!&(B (Reg)Noda Suguru$B!&(B (Hokkaido U.) Hashimoto Hirotada$B!&(B Isobe Shigehito$B!&(B (Waseda U.) (Reg)Hanada Nobuko
Hydrogen storage
Magnesium hydride
Thermal plasma
P
502Fast thermal decomposition of NH3 by hot-filament reactor for hydrogen production
(Waseda U.) *(Stu)Gommori Suzuka$B!&(B (Reg)Yoshida Keisuke$B!&(B (Reg)Noda Suguru$B!&(B (Reg)Hanada Nobuko
Hydrogen production
Ammonia decomposition
Thermolysis
P
503Fabrication process and hydrogen absorption/desorption properties of MgH2 particle-carbon nanotube composite sheets
(Waseda U.) *(Stu)Tsuji Kanta$B!&(B (Reg)Yoshida Keisuke$B!&(B (Reg)Noda Suguru$B!&(B (Reg)Hanada Nobuko
Hydrogen storage
Magnesium hydride
Carbon nanotube
P
617Effect of stirring on liquid ammonia electrolysis using a Ru-loaded carbon nanotube film electrode
(Waseda U.) *(Stu·PCEF)Utada Kanako$B!&(B (Reg)Noda Suguru$B!&(B (Reg)Hanada Nobuko
Carbon nanotube
Liquid ammonia
Hydrogen storage
P
687Electrochemical promotion of the CO2 reduction reaction using electrode-supported protonic ceramic electrolysis cells
(Science Tokyo) *(Stu)Huang Rui$B!&(B (Reg)Otomo Junichiro
Electrochemical
Proton transport
CO2RR
P
695Study on Carbon Corrosion in Polymer Electrolyte Fuel Cells - Part 3: Effect of Oxygen Supply to the Cathode During Startup and Shutdown
(UTokyo) *(Stu)Kodama Takaya$B!&(B (Reg)Tanaka Akihisa$B!&(B (Stu)Park Heesoo$B!&(B Nagato Keisuke
PEFC
Carbon corrosion
P
698Effect of Water Vapor on Electrochemical Performance in Ammonia Decomposition Reaction using a Protonic Ceramic Electrochemical Reactor
(Science Tokyo) *(Reg)Li Chieni$B!&(B (Int\(Stu\))Ortiz Corrales Julian Andres$B!&(B Otomo Shiho$B!&(B (Reg)Watanabe Konosuke$B!&(B (Reg)Otomo Junichiro
Hydrogen production
Protonic ceramic electrochemical reactor
Ammonia cracking
P
705Hole-Blocking Effect in Protonic Ceramic Cells Using Ba5Er2Al2SnO13 Bilayer Electrolyte
(Science Tokyo) *(Reg)Watanabe K.$B!&(B (Reg)Ortiz-Corrales J. A.$B!&(B (Reg)Otomo J.
protonic ceramic cells
mixed ion-electron conductors
bilayer electrolyte
O
746Techno-Economic Evaluation of Facade-Integrated Photovoltaic Deployment to Increase Renewable Energy Penetration in Urban Areas
(Science Tokyo) *(Stu)Wang Shuai$B!&(B Okubo Tatsuya$B!&(B (Reg)Hamasaki Hiroshi$B!&(B (Reg)Kameda Keisuke$B!&(B (Reg)Manzhos Sergei$B!&(B (Reg)Ihara Manabu
Perovskite solar cell
Energy system modeling
Techno-economic assessment
O

List of received applications (By symposium/topics code)

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SCEJ 91st Annual Meeting (Kyoto, 2026)

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