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SCEJ 52nd Autumn Meeting (Okayama, 2021)

Program search result : Mie U. : 5 programs

ST-25,SY-56,SY-64,SY-65,SY-70 are changed from live streaming sessions to online sessions.
The preprints are now open (Sep. 8). These can be viewed by clicking the Paper IDs. The ID/PW sent to the Registered participants (excludes free registration) and invited persons are required.

Affillations field begins with “Mie U.”; 5 programs are found. (“Poster with Flash” presentations are double-counted.)
The search results are sorted by the start time.

TimePaper
ID
Title / AuthorsKeywordsTopic codeAck.
number
Day 1
11:4012:00
VD109CO2 Reduction and Resilience Evaluation on Renewable Hydrogen Supply Chain Using LNG Clod Heat - In the Case of Wind Power Generation -
(Mie U.) (Reg)Nishimura Akira
Wind Power
Energy Supply Chain
LNG Cold Heat
ST-2318
Day 1
13:2013:40
LE114Investigation of Microbial Inactivation Characteristics of Staphylococcus aureus in turbid aqueous solution using DUV-LED light
(Mie U.) *(Reg)Suehara Ken-ichiro, Koizumi Haruhiko, Okamura Mina, Miyake Hideto, (Reg)Hashimoto Atsushi
pasteurization effect
optical characteristics
Staphylococcus aureus
SY-71867
Day 1
14:0014:20
LE116Infrared spectroscopic analysis on Ume Liqueur (Plume Wine) by focusing on transpiring ethanol
(Mie U.) *(Reg)Hashimoto Atsushi, (Reg)Suehara Ken-ichiro, Kameoka Takaharu, (Choya Umeshu) Fujii Seiji
infrared spectroscopy
quality evaluation
aging
SY-7185
Day 1
16:3518:00
PB112Impact Assessment of Separator Thickness on Various Characteristics of Single Cell of PEFC Operated at High Temperature
(Mie U.) *(Stu)Kojima Yuya, (Stu)Ito Syogo, (Reg)Nishimura Akira, Hirota Masafumi
PEFC
Separator Thickness
High Temperature Operation
ST-2470
Day 1
16:3518:00
PB113Impact Analysis of Separator Thickness on Heat Transfer Phenomena in Single Cell of PEFC under High Temperature Condition
(Mie U.) *(Stu)Kono Nozomu, (Reg)Nishimura Akira, Toyoda Kyohei, Mishima Daiki, Hirota Masafumi
PEFC
Heat Transfer Modeling
Separator Thickness
ST-2478

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SCEJ 52nd Autumn Meeting (Okayama, 2021)


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