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SCEJ 81st Annual Meeting (2016)

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Poster session 3AM -Thermal engineering, Separation processes-

ZAA301-ZAA354, ZBA301-ZBA319, ZCA301-ZCA319

Most recent update: 2016-02-26 18:17:04
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TimePaper
ID
Title / AuthorsKeywordsTopic codeAck.
number
Hall ZA, Day 3
9:2011:20ZAA301Development of reusable draw solution using a stimulus-responsive slurry
(Hosei U.) *Kitamura Kenta, Mori Takamasa
desalination
forward osmosis
Stimuli-responsive polymer
4-a379
9:2011:20ZAA302Preparation of palladium thin membrane over porous SUS tube support introduced double intermediate layers with silicalite and alumina
(Tokushima U.) *Takatani M., Tenshin A., Katoh M., Nakagawa K., Sugiyama S.
Palladium thin membrane
Porous SUS tube support
Double intermediate layers
4-a150
9:2011:20ZAA303Influence of seed crystals on the perm-selectivity of zeolite membranes synthesized form a clear solution.
(Yamaguchi U.) *Saeda Takuya, Hashimoto Koji, Kumakiri Izumi, Tanaka Kazuhiro, Kita Hidetoshi
zeolite
membrane
pervaporation
4-a277
9:2011:20ZAA304The structure and permeation property of MFI type zeolite membranes on the different pore size supports
(Yamaguchi U.) *Yamashita Yuta, Kumakiri Izumi, Tanaka Kazuhiro, Kita Hidetoshi
Zeolite
membrane
gas separation
4-a259
9:2011:20ZAA305Improvement of dehydration membrane performance by FAU-type zeolite membrane
(Waseda U./JST-CREST) Matsukata Masahiko, (Waseda U.) Seshimo Masahiro, *Nomura Ryunosuke
FAU-type zeolite
Membrane
Dehydration
4-a377
9:2011:20ZAA306Development of tough gel membranes containing amine-functionalized low viscosity ionic liquids to apply CO2 capture under pressurized conditions
(Kobe U./MaF Tech C.) *Matsuki T., Kamio E., Matsuyama H.
gas separation
ionic liquid
gel
4-a454
9:2011:20ZAA307Numerical simulation of cross-flow filtration of particle dispersion
(Kobe U./MaF Tech Center) *Nishitani Junta, Mino Yasushi, (Fukuoka U.) Shinto Hiroyuki, (Kobe U./MaF Tech Center) Matsuyama Hideto
lattice Boltzmann method
microfiltration
cross-flow
4-a724
9:2011:20ZAA308Influence of operation conditions on the dehydration performance of zeolite membranes
(UNIZAR) *Tovar M., (Yamaguchi U.) Saeda T., Kajimura Y., Kumakiri I., Tanaka K., Kita H.
Zeolite membranes
Pervaporation
Dehydration
4-a287
9:2011:20ZAA309Permeation properties of Mixed Matrix Membrane with zeolites
(Yamaguchi U.) *Wu T., Masuda T., Aida S., Kumakiri I., Tanaka K., Kita H.
Mixed Matrix Membrane
Gas permeation
Zeolite
4-a499
9:2011:20ZAA310Molecular simulation of membranes for hydrocarbon gas separation aiming to the distillation substitute
(Kogakuin U.) *Takashima Yuki, Takaba Hiromitsu
polyimide membranes
1,3-butaziene
Frist principles molecular dynamics
4-a601
9:2011:20ZAA311Permeability evaluation of the separation membrane with ceramic-metal composite structure by ultrasonic spray sintering method
(Yokohama Nat. U.) *Tanao K., Hirayama D., Wada A., Aihara M.
separation membrane
ultrasonic spray sintering
ceramic-metal composite
4-a829
9:2011:20ZAA312Analysis for constant-pressure expression of power-law fluid/solid mixture considering creep effect
(Osaka Pref. U.) *Shimo T., Tanaka T., Iwata M.
non-Newtonian fluids
expression
analytical solution
4-b47
9:2011:20ZAA313Fundamental investigation on the gas absorbability of newly developed metal complex-based ionic liquids
(Kobe U.) *Matsuoka A., (Kobe U./MaF Tech Center) Kamio E., Matsuyama H.
ionic liquid
gas absorption
metal complex
4-a733
9:2011:20ZAA314Theoretical and experimental study of hollow fiber membrane module in pressure-retarded osmosis
(Kobe U./MaF Tech Center) *Tanaka Yasuhiro, Yasukawa Masahiro, (TOYOBO) Goda Shohei, (Kobe U./MaF Tech Center) Shibuya Masafumi, Mishima Shoji, Takahashi Tomoki, Higa Mitsuru, Matsuyama Hideto
Osmotic power generation
Hollow fiber module
Pressure retarded osmosis
4-a506
9:2011:20ZAA315Permeation properties of Mixed Matrix Membrane with cyclodextrin
(Yamaguchi U.) *Masuda T., Wu T., Aida S., (NIT Ube) Yamasaki H., (Yamaguchi U.) Kumakiri I., Tanaka K., Kita H.
Cyclodextrin
Mixed Matrix Membrane
Gas separation
4-a517
9:2011:20ZAA316Ultrasonic irradiation on freeze concentration characteristics -Effect of dissolved oxygen concentration-
(Ehime U.) *Nasu Y., Kawasaki K., (Yamaguchi U.) Nakakura H.
Ultrasonic irradiation
Freeze concentration characteristics
Dissolved oxygen concentration
4-b514
9:2011:20ZAA317Constant-rate Filtration of Dilute Colloidal Suspension by Using Quantitative Filter Paper
(Osaka Pref. U.) *Manabe M., Shiomi S., Tanaka T., Iwata M.
Internal filtration
Quantitative filter paper
Constant-rate filtration
4-b735
9:2011:20ZAA318Influence of sodium hypochlorite addition and/or freezing and thawing operation to neutralization treatment of wastewater containing nickel ion
(Ehime U.) *Yamamoto T., Kawasaki K.
Nickel Ion Concentration
Neutralization Treatment
Solid Liquid Separation Characteristic
4-b282
9:2011:20ZAA319Development of floccuration tequnique by using D.C. electric field ~Effect of particle type on flocculation~
(Hosei U.) *Era Yusuke, Nagashima Hirotaka, Mori Takamasa
D.C. electric field
slurry
floccuration
4-b731
9:2011:20ZAA320Ceramic Membrane Filtration of Humic Acid Solution Applying the Calcium Ion Dissociated into Ions from the Calcium Carbonate Particles
(Yamaguchi U.) *Satoh Takuma, Watanabe Tomoaki, Nakakura Hideo, Kobuchi Shigetoshi, (Ehime U.) Kawasaki Kenji
humic acid
calcium ion
ceramic membrane
4-b694
9:2011:20ZAA321Fundamental study on CO2 responsive phase transition materials as draw solution for forward osmosis
(Kobe U./MaF Tech Center) *Nishimori Shihomi, Oishi Izumi, Takahashi Tomoki, (Daicel, R&D Headquarters Corporate Res. Center) Hamada Toyozo, (Kobe U./MaF Tech Center) Matsuyama Hideto
forward osmosis
draw solute
carbon dioxide
4-a804
9:2011:20ZAA322Study on driving force of solid-liquid separation using electric force
(Osaka Pref. U.) *Ito K., Sadai H., Tanaka T., Iwata M.
solid-liquid separation
electroforced sedimentation
electroosmotic dewatering
4-b736
9:2011:20ZAA323Adsorption Behavior of Cationic Polymeric Flocculant on PMMA Colloidal Particle under Intermittent Addition
(Osaka Pref. U.) *Miyajima T., Fujiwara R., Tanaka T., Iwata M.
Flocculation
Adsorption
Polyelectrolyte
4-b821
9:2011:20ZAA324Cross-flow Membrane Filtration Characteristics of Humic Acid Solution by Ceramic Membrane Applying the Calcium Carbonate Particles
(Yamaguchi U.) *Tokito Taturo, Watanabe Tomoaki, Yanagi Ryousuke, Nakakura Hideo
humic acid
crssflow filtration
calcium ion
4-b709
9:2011:20ZAA325Development of flow small-particle separator by dielectrophoresis
(Kyoto U.) *Tsubouchi K., Sano N., Tamon H.
particle separation
dielectrophoresis
silica particle
4-b665
9:2011:20ZAA326Effect of residence time distribution of water and gas in the absorption equipment having glass fiber filter on NOx absorption efficiency
(Osaka Pref. U.) *Daiyasu Akira, (Pollusion Prevention Apparatus Laboratory) Asano Hideaki, (Tada electric) Yamauchi Siro, (Osaka Pref. U.) Yasuda Masahiro, Ogino Hiroyasu
Residence time distribution of aqueous and gas phases
NOx absorption equipment
NOx removing efficiency
4-d320
9:2011:20ZAA327Relationships between CO2 absorption performance and shell-side convective mass transfer in a cross-flow structured hollow fiber membrane contactor
(Shinshu U.) *Takeuchi K., Shimada I., Osada M., Fukunaga H., Takahashi N.
chemical absorption
porous membrane
mass transfer coefficient
4-d871
9:2011:20ZAA328Effects of CO2 partial pressure on CO2 reversible absorption behavior of films of amine-containing gel particle
(Kyushu U.) *Hamasaki Akira, Yue Mengchen, Hoshino Yu, Miura Yoshiko
CO2 absorption
pKa
gel particle
4-d765
9:2011:20ZAA329Mechanochemical synthesis and granulation of ZIF-8 MOF
(Kansai U.) *Taniguchi T., Sakatoku T., Nishiyama T., Miyake Y., Tanaka S.
ZIF-8
mechanochemical synthesis
granulation
4-e706
9:2011:20ZAA330Ion exchange of Cs ion with Merlinoite
(Kansai U.) *Kakutani Yuki, Sano Makoto, Suzuki Toshimitu, Miyake Takanori
Cs removal
Merlinoite
Ion exchange
4-e745
9:2011:20ZAA331Preparation of adsorptive fiber for polyphenol and its performance evaluation
(Chiba U.) *Goto S., Kawamura R., Kawai-Noma S., Umeno D., Saito K., (KJK) Fujiwara K., Sugo T., (Kirin) Kudo A., Hioki J., Wakabayashi H.
adsorptive fiber
polyphenol
4-e750
9:2011:20ZAA332Preparation and Characterization of Porous Monolith for Palladium-Loaded Reactor
(Kyushu U.) *Matsumoto H., Seto H., Hoshino Y., Miura Y.
porous monolith
NIPAm gel
palladium
4-e472
9:2011:20ZAA333Continuous separation of phenol and dyes using carbon cryogels with a microhoneycomb structure
(Hokkaido U.) *Yoshida S., Iwamura S., Ogino I., Mukai S.
ice templating method
phenol separation
dye separation
4-e431
9:2011:20ZAA334Separation and recovery of tin and nickel from polishing sludge using ion exchange fiber
(NIT Nara) *Ameta Naoya, Hayashi Keita, Nakamura Hidemi
adsorption
ion exchange
metal recovery
4-e721
9:2011:20ZAA335Enhancement of amine density on amine-modified mesoporous materials for CO2 adsorption
(NAIST) *Tojo A., (RITE) Numaguchi R., Yamada H., Yogo K.
CO2 capture
amine
adsorption
4-e748
9:2011:20ZAA336Preparation of activated carbon by one-step carbonization / activation using superheated steam: application to Cs adsorbent
(NIT Wakayama) *Itani Shin, Kishimoto Noboru
superheated steam
activated carbon
cesium adsorption
4-e298
9:2011:20ZAA337Adsorption of Cs by Iron(III) Ferrocyanide Granulated by Thin-film Gel Coating Method
(Tokyo Tech RNLR) *Sakai Yusuke, Kanazawa Keita, Inaba Yusuke, Oaki Hiroshi, Takeshita Kenji
Iron ferrocyanide
Cs adsorption
Thin-film gel coating method
4-e316
9:2011:20ZAA338Separation and recovery of soft metal ion by Gel-liquid extraction using Chromatography
(Tokyo.Tech) *Kawamura Takuya, Takeshita Kenji
Extraction Chromatography
Polymer gel
Adsorption
4-e867
9:2011:20ZAA339Increase in adsorption capacity of sodium-titanate-impregnated fiber for removal of radioactive Sr from seawater
(Chiba U.) *Goto S., Katagiri M., Naruke S., (KJK) Fujiwara K., Sugo T., (Chiba U.) Kawai-Noma S., Umeno D., Saito K.
radioactive strontium removal
sodium titanate
adsorptive fiber
4-e561
9:2011:20ZAA340Enhancement of water adsorption-desorption performance of AlPO-5 substituted with several metals
(Tokushima U.) *Satoh A., Katoh M., Nakagawa K., Sugiyama S.
AlPO-5
Water adsorption-desorption performance
Substitution with several metals
4-e149
9:2011:20ZAA341Influence of denaturant in denatured protein adsorption using dialysis membrane
(NIT Nara) *Sato J., Chikayama Y., (Adv. Materials Res. Laboratories, Toray Industries) Ueno Y., Takahashi H., Yamada M., Fujieda H., (NIT Nara) Hayashi K., Nakamura H.
Dialysis membrane
Protein
Denaturation
4-e719
9:2011:20ZAA342Free-energy analysis of transfer of amino acid into AOT reverse micelle with all-atom molecular dynamics simulation.
(Osaka U.) *Nagao M., Date A., Ishizuka R., Matubayasi N.
Molecular dynamics
Reverse micelle
Free-energy analysis
4-f286
9:2011:20ZAA343Characterization of aggregated behavior of chlorophyll a in lipid membrane and application
(Osaka U.) *Taguchi Shogo, Suga Keishi, Okamoto Yukihiro, Umakoshi Hiroshi
chlorophyll a
liposome
lipid bilayer
4-f959
9:2011:20ZAA344Formation of aqueous biphasic system with Poloxamer
(Nagoya U.) *Hirayama Kazuki, Sawada Kayo, Enokida Youichi
Poloxamer
biphasic system
rhenium extraction
4-f184
9:2011:20ZAA345Modeling of solvent extraction equilibria of ammonia and nickel(II) with LIX84I
(AIST/CSU) *Wang Shubin, (CSU) Qiyuan Chen, (AIST) Narita Hirokazu, Tanaka Mikiya
solvent extraction
ammonia
LIX84I
4-f945
9:2011:20ZAA346Phase-diagram analysis on the effect of lipid membranes to lysozyme crystallization
(Okayama U.) *Shirahige Yuki, Shimanouchi Toshinori, Kimura Yukitaka
lysozyme
metastable zone
liposome
4-g958
9:2011:20ZAA347Carbon nanoparticle aerogel from supercritical carbon dioxide drying and its electrical characteristics
(Tokyo Tech) *Kunanusont N., Shimoyama Y.
supercritical carbon dioxide drying
carbon nanoparticle aerogel
electrical resistance
4-h640
9:2011:20ZAA348Polymer content profile and drying rate on porous material wetted with aqueous polymer solution
(Kobe U.) *Sokai Minako, Ishino Kyoko, Imakoma Hironobu, Horie Takafumi
Drying of porous material
Polymer content profile
Capillary force
4-h120
9:2011:20ZAA349Particle segregation model on dried surface of slurry coating with low particle concentration
(Kobe U.) *Sokai Minako, Taki Hiroshi, Imakoma Hironobu, Horie Takafumi
Drying model
Slurry coating
Particle segregation
4-h121
9:2011:20ZAA350Drying characteristics of frozen carrot in medium-fluidized bed under reduced pressure
(Shizuoka U.) *Hagimoto A., Tatemoto Y.
Drying
Fluidized bed
Carrot
4-h239
9:2011:20ZAA351Numerical analysis of drying characteristics of wet material immersed in fluidized bed of hygroscopic particle
(Shizuoka U.) *Koido A., Tatemoto Y.
Drying
Fluidized bed
DEM-CFD
4-h241
9:2011:20ZAA352Thermal analysis of frozen solutions for cocrystal production by freeze-drying
(NIHS) *Izutsu Ken-ichi, Yoshida Hiroyuki, Shibata Hiroko, Goda Yukihiro
Crystallization
Freeze-drying
Thermal Analysis
4-h758
9:2011:20ZAA353Control of drying history during vacuum foam drying via a needle-stimulation-induced foaming
(Okayama U.) *Hidaka Fumihiro, Takeda Koji, Imanaka Hiroyuki, Ishida Naoyuki, Imamura Koreyoshi
foam drying
needle stimulation
drying histroy
4-h401
9:2011:20ZAA354Study of fiber drying characteristics under vacuum drying conditions
(Tokushima U.) *Sakamoto H., Alcantara Avila Jr, Sotowa K., Horikawa T., (NIT Anan) Ichimori H.
Vacuum drying technology
Fiber drying
Drying rate
4-h855
Hall ZB, Day 3
9:2011:20ZBA301Permeation properties through ion exchanged zeolite membranes
(Shibaura Inst. Tech.) *Kitajima Motoki, Asou Takuya, Oura Kotone, Ikeda Ayumi, Nomura Mikihiro
MOR zeolite membrane
ion exchange
water permeation
4-a713
9:2011:20ZBA302Seeding-free preparation and gas permeation characteristics of ZIF-8 membranes
(Kansai U.) *Okubo K., Miyake Y., Tanaka S.
ZIF-8
membrane
in situ crystallization
4-a740
9:2011:20ZBA303Preparation and gas permeation properties of supported carbon molecular sieve membranes prepared from polyimides
(Yamaguchi U.) Sakamoto K., Kumakiri I., *Tanaka K., Kita H.
arbon molecular sieve membranes
polyimides
gas permeation
4-a896
9:2011:20ZBA304Evaluation and analysis of power generation in a large scale reverse electrodialysis system
(Yamaguchi U.) *Sakurada Tomoyuki, Kuno Masaya, Higa Mitsuru
ion exchange membrane
reverse electrodialysis
salinity gradient power
4-a899
9:2011:20ZBA305Preparation of carbon membrane by hydrothermal method
(Tokyo Tech) *Sano Shoya, Isobe Toshihiro, Matsushita Sachiko, Nakajima Akira
activated carbon
water/ethanol separation
glucose
4-a913
9:2011:20ZBA306CO2/CH4 separation by CHA zeolite membrane exchanged simultaneously with two cation
(Utsunomiya U.) *Kanno Yuhiro, Kato Takafumi, Sato Takafumi, Ito Naotsugu
zeolite
membrane
separation
4-a946
9:2011:20ZBA307Potential of methanol synthesis membrane reactor using Na-ZSM-5 membrane
(Waseda U./JST-CREST) Matsukata M., (Waseda U.) *Yoshida D., Hashizume Y., Seshimo M.
methanol synthesis
membrane reactor
Na-ZSM-5
4-a359
9:2011:20ZBA308Control of pore size on silicalite-1 membrane with pyrolytic carbon derived from xylene
(Waseda U.) Sakai M., *Tomaki K., (Waseda U./JST-CREST) Matsukata M.
silicalite-1 membrane
control pore size
carbon-deposition
4-a365
9:2011:20ZBA309Estimation of concentration dependence of CO2/CH4 permeance for zeolite membrane using CFD technique
(Utsunomiya U.) *Kato Takahumi, Kanno Yuhiro, Sato Takafumi, Ito Naotsugu
CFD
Zeolite
membrane
4-a949
9:2011:20ZBA310Preparation and characterization of antifouling PVC hollow fiber membrane by blending an amphiphilic copolymer
(Kobe U.) *Zhou Zhuang, Rajabzadeh Saeid, Matsuyama Hideto
PVC membrane
antifouling
blend ratio
4-a972
9:2011:20ZBA311Preparation of all-silica STT-type zeolite membrane
(Kansai U.) *Nakai T., Araki S., (Hitachizosen) Imasaka S., (AIST) Hasegawa Y., Sato K., (Kansai U.) Yamamoto H.
all silica zeolite
zeolite membrane
pervaporation
4-a202
9:2011:20ZBA312Influence of Transmembrane Pressure on Fouling Phenomena by Microfiltration of Microalgae
(Tohoku U.) *Yokomizo Madona, Tsutsumi Shun, Saito Yasuhiro, Matsushita Yohsuke, Aoki Hideyuki
microfiltration
microalgae
fouling
4-a267
9:2011:20ZBA313Effect of water vapor on CO2 recovery of the CO2 capture system by electrodialysis
(Kyushu U.) *Yamada Takahiro, (Kyushu U. WPI-I2CNER) Taniguchi Ikuo, (Yamaguchi U.) Higa Mitsuru
CO2 capture
Electrodialysis
Energy
4-a510
9:2011:20ZBA314Molecular simulation on the hydration behavior and microscopic interactions around CO2-switchable polymers
(NITech) *Ogita Atsushi, Nagumo Ryo, Iwata Shuichi, Mori Hideki
CO2 switchable
LCST
molecular dynamics
4-a174
9:2011:20ZBA315Study on the relationship between permeability and structure of ZSM-5 membrane
(Waseda U./JST-CREST) Matsukata M., (Waseda U.) *Matsumoto K., Seshimo M.
zeolite membrane
permeability
membrane structure
4-a367
9:2011:20ZBA316Synthesis of *BEA-type zeolite membrane without OSDA and its permeation properties of hydrocarbons
(Waseda U.) Sakai M., *Yasuda N., (Waseda U./JST-CREST) Matsukata M.
*BEA-type zeolite membrane
OSDA-free synthesis
permeation properties
4-a369
9:2011:20ZBA317Effect of surface modification of reverse osmosis membranes with hydrophilic polymer on bacterial adhesion
(Kobe U./MaF Tech Center) *Yonamine G., Saeki D., Matsuyama H.
Reverse osmosis membrane
Hydrophilic polymer
Bacterial adhesion
4-a398
9:2011:20ZBA318Relations between permeation flux and solvent parameters on forward osmosis using organic solvent
(Toshiba) *Ide Tomohito, Sano Kenji, Suzuki Akiko, Imada Toshihiro
Forward Osmosis
Draw Solution
4-a36
9:2011:20ZBA319Development of thin-film composite forward osmosis membrane with high water flux and high pressure resistance
(Kobe U./MaF Tech Center) *Mishima Shoji, Yasukawa Masahiro, Shibuya Masafumi, Takahashi Tomoki, Matsuyama Hideto
Forward osmosis membrane
Pressure resistance
Pressure retarded osmosis
4-a717
Hall ZC, Day 3
9:2011:20ZCA301Effect of insulators on temperature in hen house
(Gifu U.) *Ito Taiki, Kobayashi Nobusuke, (HYTEM CO.,LTD) Tsubai Yasushi, (Gifu U.) Itaya Yoshinori
heat transfer
insulator
hen house
3-a819
9:2011:20ZCA302Correction of the detailed kinetic mechanism about toluene and benzene during the pyrolysis of hydrocarbon feedstock
(Tohoku U.) *Shinohara Risa, Matsukawa Yoshiya, Saito Yasuhiro, Matsushita Yohsuke, Aoki Hideyuki
detailed kinetic mechanism
pyrolysis
synergetic effect
3-b212
9:2011:20ZCA303Numerical simulation of pulverized coal combustion considering the reactivity of chars obtained under different heating rates during pyrolysis
(Tohoku U.) *Tanimoto J., Akaotsu S., Soma T., Saito Y., Matsushita Y., Aoki H., (Kyushu U.) Nozawa S., (JFE Steel) Murao A.
Coal combustion
Numerical simulation
Reactivity
3-b175
9:2011:20ZCA304Simulation of a small-scale binary cycle power generation system using low temperature heat source
(Yamagata U.) *Dohmori Yuki, (ANEST IWATA Co.) Izumi Takaaki, Ito Hiroshi, Fujioka Tamotsu, (AIST) Maeda Tetsuhiko, (Yamagata U.) Matsuda Keigo
power generation
heat engine
simulation
3-d693
9:2011:20ZCA305Improving the efficiency of a heating process using Time-Temperature-Transformation diagram for conductive doped metal oxide powder
(Inst. Tech. Bandung/TUAT) Widiatmoko Pramujo, (TUAT) *Lenggoro Wuled
heat treatment
doping
particles
3-e931
9:2011:20ZCA306Separation of alkaline particles through inorganic nanofiltration membranes
(Shibaura Inst. Tech.) *Ikeda Ayumi, Sekimoto Takashi, Hirose Tomohisa, Takeuchi Toshitika, Kitao Hiroki, Nomura Mikihiro
counter diffusion CVD method
silica hybrid membranes
alkaline particles
4-a117
9:2011:20ZCA307Development of ultrahigh hydrogen flux zeolite membranes for separation from organic hydrides
(Shibaura Inst. Tech.) *Oura Kotone, Shirai Marina, Kitajima Motoki, Ikeda Ayumi, (Sumitomo Electric Industries) Saito Takehiro, Tawarayama Hiromasa, Ishikawa Shinji, Kuwahara Kazuya, (Shibaura Inst. Tech.) Nomura Mikihiro
MFI zeolite membrane
porous silica substrate
organic hydrides
4-a118
9:2011:20ZCA308Preparation and gas permeability of IRMOF-3 membrane prepared by solvothermal method
(Tokyo Tech) *Arai Yuka, Isobe Toshihiro, (NIMS) Yanagida Sayaka, (Tokyo Tech) Matsushita Sachiko, Nakajima Akira
porous membrane
CO2 separation
ceramics
4-a172
9:2011:20ZCA309Separation of ethanol with PVA-gelatin membrane including ionic liquid
(Doshisha U.) *Kita K., Matsumoto M., Kondo K.
Ionic liquid
Ethanol
Pervaparation
4-a179
9:2011:20ZCA310C3 hydrocarbons separation properties through FAU-type zeolite membrane under pressurized conditions
(Waseda U./JST-CREST) Matsukata Masahiko, (Waseda U.) *Sasaki Yasuhito, Sakai Motomu
FAU-type zeolite membrane
pressurized conditions
propylene separation
4-a346
9:2011:20ZCA311Synthesis of zeolite RHO membrane without OSDA and its permselectivity for small molecule mixture
(Waseda U.) Sakai M., *Tanji M., Ding X., (Waseda U./JST-CREST) Matsukata M.
zeolite
RHO membrane
synthesis
4-a347
9:2011:20ZCA312The effect of surface modification of resin substrate on Pd layer in the preparation of Pd composite membrane by photolithography
(Gifu U.) *Murase T., Miyamoto M., Oumi Y., Uemiya S., (Nagoya U.) Yamada H., Tagawa T.
Pd
Photolithography
Surface modification
4-a440
9:2011:20ZCA313Influence of porous support property on the synthesis of Silicalite-1 membrane
(Gifu U.) *Ueno Kyohei, (AIST) Negishi Hideyuki, (Sumitomo Electric Ind.) Saito Takehiro, Tawarayama Hiromasa, Ishikawa Shinji, (Gifu U.) Miyamoto Manabu, Uemiya Sigeyuki, Oumi Yasunori
zeolite membrane
separation
support
4-a513
9:2011:20ZCA314Influence of porous alpha-alumina support property on the *BEA type zeolite membrane performance
(Gifu U.) *Watanabe Toshinari, Ueno Kyohei, (AIST) Negishi Hideyuki, (Gifu U.) Miyamoto Manabu, Uemiya Sigeyuki, Oumi Yasunori
zeolite membrane
separation
*BEA zeolite
4-a532
9:2011:20ZCA315Investigation of process performance for saccharide up-concentration in forward osmosis
(Kobe U./MaF Tech Center) *Shibuya M., Yasukawa M., Tanaka Y., Takahashi T., Matsuyama H.
Forward osmosis
Up-concentration
Saccharide
4-a579
9:2011:20ZCA316Separation of aromatic hydrocarbons by vapor permeation thorough liquid membranes of ionic liquids
(Tokyo Tech) *Kamiya Tomoki, Ishikawa Daiki, Ito Akira
vapor permeation
hydrocarbons
ionic liquid
4-a647
9:2011:20ZCA317Transport of water molecule through in water channel of driven by pressure difference.
(Kogakuin U.) *Goto Taiki, Takaba Hiromitsu
Molecular dynamics
Aquaporin
Water channel
4-a684
9:2011:20ZCA318Study on separation and adsorption properties of CO2/CH4 through AlPO4-18 membrane
(Waseda U.) Sakai M., *Oshima Y., (Waseda U./JST-CREST) Matsukata M.
membrane separation
AlPO4-18
CO2/CH4
4-a351
9:2011:20ZCA319Synthesis of SAPO-18 membranes using precursor gel with high SiO2 content.
(Waseda U./JST-CREST) Matsukata Masahiko, (Waseda U.) *Ishiguro Sonosuke, Motokura Kei, Seshimo Masahiro
SAPO-18
Secondary-growth method
Si content
4-a354

Technical program
SCEJ 81st Annual Meeting (2016)

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Most recent update: 2016-02-26 18:17:04
For more information contact Organizing Committee, SCEJ 81st Annual Meeting (2016)
E-mail: inquiry-81awww3.scej.org
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