SCEJ

SCEJ 80th Annual Meeting (Tokyo, 2015)

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Hall V

Most recent update: 2015-03-05 09:42:37

Day 2
TimePaper
ID
Title / AuthorsKeywordsTopic codeAck.
number
Chemical Industry Technology Forum <Creation and Principle of Nanofluid Science>
(9:00–10:20) (Chair: Adschiri M.)
9:009:20V201Preparation of Copper Fine Particles for Low Temperature Sintering and Sintering Proecss
(Hokkaido U.) *Yonezawa Tetsu, Tsukamoto Hiroki, Matsubara Hiroki
銅微粒子
ナノフルイド
低温焼結
F-166
9:209:40V202Preparation of Ag nanoparticles based on polyol process and application
(Osaka U.) *Jiu jinting, Zhang Hao, Koga Shunsuke, Nagao Shijio, Sugahara Tohoru, Suganuma Katsuaki
Ag nanoparticles
preparation
polyol process
F-1606
9:4010:00V203Liquid Phase SYnthesis of Transparent Conductive Oxide Nanoparticles with Low Resistivity and their Application to Nano-fluids
(Tohoku U.) *Kanie K., Muramatsu A.
Transparent Conductive Oxide
Nanoparticle
Liquid Phase Synthesis
F-1582
10:0010:20V204Supercritical hydrothermal synthesis of organic modified nanoparticles by flow reactors
(ITEC) Iida Masayasu
supercritical water
flow reactor
nanoparticles
F-1690
(10:20–12:00) (Chair: Muramatsu A.)
10:2010:40V205Development of Nanofluids with Ionic Liquids
(NAIST) *Nakashima Takuya, Kawai Tsuyoshi
nanoparticle
ionic liquid
interface
F-193
10:4011:00V206Surface modification toward fabrication of dense suspensions with various combinations of particle species and solvents
(Yokohama Nat. U.) *Iijima M., Okamura N., Tsutsumi T., Morita S., Tatami J.
Nanoparticle
Surface modification
Suspension stability
F-1625
11:0011:20V207Numerical modeling of self-propelled particles:Pseudo-phonon like behavior of collective motion
(Kyoto U.) *Oyama Norihiro, Molina John, Yamamoto Ryoichi
Squirmer Model
dynamic structure factor
collective motion
F-1611
11:2011:40V208Numerical investigation of the relationship between thermal fluctuation and flow field by using Landau-Lifshitz Navier Stokes equation
(Osaka U.) *Yamamoto T., Okano Y.
Thermal fluctuation
Landau-Lifshitz Navier Stokes equation
Fluid dynamics
F-1388
11:4012:00V209Development of a continuous process for floccurated nanoparticle re-dispersion under high shear stress
(Tohoku U.) *Aoki Nobuaki, Miyatake Tomoki, Obuse Kiori, Kobayashi Miki, Adschiri Tadafumi
Nanoparticle re-dispersion
High shear stress
Floccurated nanoparticle
F-1276
(13:00–14:20) (Chair: Takami S.)
13:0013:20V213Acid-base interaction between particles and polymers and dipsersion behavior in organic solvents
(Kobayashi) Kobayashi T.

F-1910
13:2013:40V214Effect of Solvent on Classification Property of ZnS Nanoparticles by Size-Selective Precipitation Method
(Doshisha U.) *Mori Yasushige, Yamamoto Kyoko, Tsuchiya Katsumi
Size-selective precipitation
Zinc Sulfide nanoparticles
Particle size distribution
F-1497
13:4014:00V215Size-selective separation of particles in suspensions with ultrasonic atomization
(Nagoya U.) Nii S.
ultrasonic atomization
suspension
particle separation
F-1703
14:0014:20V216Order Formation of Colloidal Particles by Convective Self-Assembly
(Kyoto U.) *Miyahara Minoru, Watanabe Satoshi
Convective Self-Assembly
Meniscus
Patterned Structures
F-1516
(14:20–16:00) (Chair: Kanie K.)
14:2014:40V217Study of Influential Factors in Formation of Silver Nanowire Percolation Network Fablicated by Coating Processes.
(Utsunomiya U.) *Sato M., Terasaki N., Saito S., Furusawa T., Suzuki N.
Silver Nanowire
Transparent Conductive Film
Coating Process
F-1898
14:4015:00V218Stress oscillation mode in particle-polymer suspensions
(Kyutech) Jang E., *Yamamura M.
suspension
shear stress
oscillation
F-1393
15:0015:20V219Properties and application of nanofluid comprising surface-modified metal oxide nanoparticles
(Tohoku U.) *Takami S., Aida T., Sato M., Suzuki A., Aoki N., Hojo D., Adschiri T.
surface modification
metal oxide nanoparticles
viscosity
F-1542
15:2015:40V220Formation of organic nano particle in liquid-droplet flow by supercritical anti-solvent method
(Nagoya U.) *Goto M., Nerome H., Tsareva N., (ITS) Machmudah S., (Nagoya U.) Wahyudiono , (Nagoya U./JST) Kanda H.
Supercritical
SEDS
Nanoparticle
F-1637
15:4016:00V221Development of high-strength resin material by the use of talc with mechanochemical surface treatment
(SUMITOMO BAKELITE) *Ando Keisuke, Motokawa Toshiyuki, Nakano Shogo, Kawaguti Tatumi, (U. Shizuoka) Sakaguchi Masato
Surface modification
high strength resin
mechanochemical
F-1706
(16:00–17:00) (Chair: Adschiri M., Muramatsu A.)
16:0016:20V222Expectations of nano-fluid in the coating process by supercritical carbon dioxide
(KAMI Electronic Ind. CO.,LTD) *Hayasaka Noriaki, Yukishita Katsuzou, (Tohoku U. NICHe) Suzuki Akira
nano-fluid
supercritical carbon dioxide
the coating process
F-1696
16:2016:40V223Technical issue and expectations of nano-fluid in the paint application
(ATOMIX) *Kunou Isao, (Tohoku U.) Suzuki Akira
hard
coating
market
F-1822
16:4017:00General discussion

Day 3
TimePaper
ID
Title / AuthorsKeywordsTopic codeAck.
number
Supercritical fluid
(9:20–10:20) (Chair: Shimanouchi T.)
9:209:40V302Photocatalytic reduction of CO2 in supercritical water/CO2 binary mixture
(Osaka City U.) *Kometani N., Chikada M.
photocatalysis
CO2 reduction
supercritical fluid
8-d267
9:4010:00V303High-pressure hydrogen production from formic acid in aqueous solution
(AIST) *Iguchi Masayuki, Masanka Yuichi, Himeda Yuichiro, Kawanami Hajime
Hydrogen
Formic acid
Catalyst
8-d494
10:0010:20V304Hydrolysis of N-substituted amides in hot compressed water using solid catalyst
(U. Tokyo) *Akizuki M., Oshima Y.
Hot compressed water
Solid catalyst
N-substituted amide
8-d415
10:2010:40Break
(10:40–12:00) (Chair: Iguchi M.)
10:4011:00V306Behavior of supercritical water oxidation and effect of nozzle in a large reactor
(Ricoh/Shizuoka U.) *Suzuki S., (Ricoh) Shinohara S., Zama Y., Aoki M., Hayakawa K., (KCPC) Ikeda H., (Shizuoka U.) Okajima I., Sako T.
Supercritical water oxidation
Nozzle
pilot plant
8-f867
11:0011:20V307Diverse reactivity of 5-hydroxymethylfurfural (HMF) using Pd catalyst in supercritical carbon dioxide
(AIST, Tohoku) *Chatterjee M., Ishizaka T., Kawanami H.
supercritical CO2
Pd catalyst
HMF
8-f189
11:2011:40V308Reaction behavior of various organic compounds under hydrothermal conditions
(Kumamoto U.) *Sasaki Mitsuru, Sakai Yuka, Komonguchi Mayo, (Hachinohe NCT) Honma Tetsuo, (Kumamoto U.) Quitain Armando, Kida Tetsuya, (Hiroshima Shudo U.) Kawamura Kunio
水熱反応場
有機化合物
分子変換
8-f820
11:4012:00V309Hydrothermal Liquefaction of Malaysian Oil Palm Biomass
(Kumamoto U.) *Quitain Armando, (UTP) Chan Yi Herng, Yusup Suzana, (Kumamoto U.) Sasaki Mitsuru, (UTP) Uemura Yoshimitsu, (Kumamoto U.) Kida Tetsuya
hydrothermal liquefaction
palm biomass
bio-oil
8-f776
(13:20–15:00) (Chair: Suzuki S., Kihara S.)
13:2013:40V314Measurement of adsorption isotherms for metal precursors on mesoporous silica for preparation of supported catalysts by supercritical impregnation method
(Tohoku U.) *Shimizu T., Takahashi N., Ushiki I., Ota M., Sato Y., Inomata H.
Supercritical CO2
Mesoporous Silica
Adsorption Measurement
8-b280
13:4014:00V315Supercritical Fluid Deposition of Conformal Bi4Ti3O12 for Ferroelectric Memories
(U. Tokyo) *Zhao Yu, Momose Takeshi, Shimogaki Yukihiro
supercritical fluid deposition
conformal
Bi4Ti3O12
8-e190
14:0014:20V316Supercritical hydrothermal synthesis of Ba1-xSrxZrO3 (0≤x≤1)
(U. Tokyo) *Yoko A., Oshima Y.
Supercritical water
Hydrothermal synthesis
Perovskite structure
8-e385
14:2014:40V317Synthsis of GaN photocatalyst by ammonothermal method
(IMRAM, Tohoku U.) Iwama Yasuji, Tomida Daisuke, Qiao Kun, *Yokoyama Chiaki
GaN
photocatalyst
ammonothermal
8-e650
14:4015:00V318Supercritical carbon dioxide-assisted metal nanoparticle loading to metal-organic frameworks
(Kurume NCT) *Matsuyama Kiyoshi, Motomura Momoe, Okuyama Tetsuya, (Toyohashi U.) Muto Hiroyuki
Supercritical CO2
metal organic framework
Metal nanoparticle
8-e343
15:0015:20Break
(15:20–16:40) (Chair: Kong Chang_Yi)
15:2015:40V320Extraction of essential oil from citrus residue without drying and cell-disruption by liquefied dimethyl ether
(Nagoya U.) *Hoshino R., Wahyudiono , (Sepuluh Nopember Inst. Tech.) Machmudah S., (Nagoya U./JST) Kanda H., (Nagoya U.) Goto M.
liquefied dimethyl ether
citrus residue
dewatering
8-c316
15:4016:00V321Development of CNT/Polymer Nanocomposite Using Supercritical Fluids and Shear Fields
(Hiroshima U.) *Kihara S., Asada M., Tawara K., Haruki M., Takishima S.
Polymer nanocomposite
High pressure mixing
carbon nanotube
8-e401
16:0016:20V322Effect of the chemical structures of dispersants on the shapes of PMMA particles synthesized in supercritical carbon dioxide
(Hiroshima U.) *Haruki M., Kodama Y., Sugawara K., Kihara S., Takishima S.
PMMA
dispersion polymerization
supercritical carbon dioxide
8-e382
16:2016:40V323Production of thin films for organic devices by rapid expansion of supercritical solutions (RESS) using carbon dioxide and their performance evaluation
(Shinshu U.) *Uchida H., Fujii T., Takahashi Y.
Supercritical carbon dioxide
Thin films
RESS
8-e895

Technical program
SCEJ 80th Annual Meeting (Tokyo, 2015)

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Most recent update: 2015-03-05 09:42:37
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