$BBh(B 1 $BF|(B
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$B9V1i(B $B;~9o(B | $B9V1i(B $BHV9f(B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $BJ,N`(B $BHV9f(B | $B$BHV9f(B | |
$BIt2q%;%C%7%g%s(B SE-15. <$BH?1~9)3XIt2q(B $B%]%9%?!<%;%C%7%g%s(B > ($B%U%i%C%7%eH/I=(B) |
(11:00$B!A(B12:00) ($B:BD9(B $B6a9>(B $BLwB'!&:4F#(B $B9d;K(B) |
11:00$B!A(B 12:00 | ZA1P01 | $B5<;w0\F0AX7?%/%m%^%HH?1~4o$rMQ$$$?%0%j%;%j%sF};@%(%9%F%k$NO"B39g@.(B
($B0l4X9b@l(B) ($B3X(B)$B!{@iMU(B $BN5GO(B$B!&(B $B9bEh(B $B$"$DLi(B$B!&(B $B4I(B $BN4$B!&(B ($B@5(B)$BJ!B<(B $BBnLi(B | Chromatographic reactor Simultaneous reaction and separation Glycerol
| SE-15 | 218 |
11:00$B!A(B 12:00 | ZA1P02 | $B;@E:2C%K%H%m%;%k%m!<%9$NH/G.5sF0$K5Z$\$9;nNAMF4oMFNL$N1F6A(B
($BJ!2,Bg9)(B) ($B3X(B)$B!{>.3^86(B $BM32B(B$B!&(B ($B@5(B)$B2CF#(B $B>!H~(B$B!&(B ($B@5(B)$BEl(B $B1Q;R(B$B!&(B ($BF|L}(B) ($BK!(B)$B@n8}(B $B<~J?(B | Nitrocellulose Spontaneous ignition Differential Scanning Calorimetry (DSC)
| SE-15 | 609 |
11:00$B!A(B 12:00 | ZA1P03 | $B%Y%s%<%s%8%*!<%k0[@-BN$NG.J,2r5!9=(B:$B
($B6eBgAmM}9)(B) ($B3X(B)$B!{8EC+(B $BM%$B!&(B $BML(B $B2ZH~(B$B!&(B ($B6eBg@hF38&(B) ($B@5(B)$B9)F#(B $B??Fs(B$B!&(B ($B@5(B)$BNS(B $B=a0lO:(B$B!&(B ($B@5(B)$BB'1J(B $B9TMG(B | resorcinol CO2 generation quantum chemical calculation
| SE-15 | 69 |
11:00$B!A(B 12:00 | ZA1P04 | $B%7%"%N%9%A%k%Y%sM6F3BN$N6E=8M65/H/8w$K4X$9$kM}O@E*8&5f(B
($B@iMU9)Bg(B) ($B3X(B)$B!{2,C+(B $BNhF`(B$B!&(B ($B@5(B)$B;3K\(B $BE5;K(B$B!&(B ($B6eBg(B) $B4XC+(B $BGn(B$B!&(B ($B@iMU9)Bg(B) ($B@5(B)$BHx>e(B $B70(B | Quantum Chemistry Aggregation Induced Emission
| SE-15 | 470 |
11:00$B!A(B 12:00 | ZA1P05 | $BC:AG7O8GBN;@$NE|2=@-G=$K4X$9$k8&5f(B
($BL>Bg1!9)(B) ($B3X(B)$B!{Bg>l(B $B0l51(B$B!&(B ($B@5(B)$BD.ED(B $BMN(B$B!&(B ($B@5(B)$BKYE:(B $B9@=S(B | carbon-based solid acid catalyst saccharification biomass
| SE-15 | 481 |
11:00$B!A(B 12:00 | ZA1P06 | $BI=LLFC@-$H:Y9&9=B$$r@)8f$7$?%^%$%/%m%O%K%+%`>uC:AG7O8GBN;@?(G^$N1UAjH?1~$X$NMxMQ(B
($BKLBg1!9)(B) ($B3X(B)$B!{NkLZ(B $BM$7<(B$B!&(B ($B@5(B)$B2.Ln(B $B7.(B$B!&(B ($B@5(B)$B8~0f(B $B?B(B | solid acid catalyst porous medium esterification
| SE-15 | 103 |
11:00$B!A(B 12:00 | ZA1P07 | $BC:AG7O:`NA$rMQ$$$?<+F0t2=?(G^$N3+H/(B
($BG@9)Bg9)(B) ($B3X(B)$B!{Cf@n(B $BJbH~(B$B!&(B ($B@5(B)$B:y0f(B $B@?(B$B!&(B ($B@5(B)$B55;3(B $B=(M:(B | Three-Way Catalyst carbon alloys off$B!>(Bgas cleanup
| SE-15 | 496 |
11:00$B!A(B 12:00 | ZA1P08 | $B6bB0C4;}&B7?%<%*%i%$%H?(G^$rMQ$$$?%P%$%*%*%$%k$N%"%C%W%0%l!<%I(B
($B90A0BgM}9)(B) ($B3$(B)$B!{(BWidayatno Wahyu B$B!&(B ($B90A0Bg?7%(%M!<8&(B) ($B@5(B)$B41(B $B9q@6(B$B!&(B ($B@5(B)$B0$I[(B $BN$Ds(B | Bio-oil $B&B(B-zeolite upgrading
| SE-15 | 82 |
11:00$B!A(B 12:00 | ZA1P09 | ZSM-5$B$rMQ$$$?N.F0AXH?1~4o$K$h$k%P%,%9M3Mh$N?];@$+$iK'9aB2C:2=?eAG$X$NE>2=H?1~(B
($B$B!&(B ($B@5(B)$BJ!N1(B $B7rB@(B$B!&(B ($B@5(B·$B5;4p(B)$B8^Eg(B $B?r(B$B!&(B ($B@5(B)$B?eED(B $B7I(B$B!&(B ($B@5(B)$BFs0f(B $B?8(B$B!&(B ($B@5(B·$B>e5;(B)$BE{0f(B $B=SM:(B | ZSM-5 acetic acid Fluidized bed reactor
| SE-15 | 471 |
11:00$B!A(B 12:00 | ZA1P10 | $B=a3jL}Cf$N;@2=KI;_:^$NO"B34T85:F@8$X$N%Q%i%8%&%`?(G^Kl$NMxMQ(B
($B1'ET5\Bg(B) ($B3X(B)$B!{BgEh(B $B8&;q(B$B!&(B ($B@5(B)$B:4F#(B $B9d;K(B$B!&(B ($B@5(B)$B0KF#(B $BD>$B!&(B ($B=P8w6=;:(B) $B@DLZ(B $B?5<#(B$B!&(B $B$B!&(B $B>.JL=j(B $B6)42(B | palladium membrane antioxidant kinetic analysis
| SE-15 | 366 |
11:00$B!A(B 12:00 | ZA1P11 | $B%Q%i%8%&%`?(G^Kl$rMQ$$$?%Y%s%<%sD>@\?e;@2=$NB.EYO@E*8!F$(B
($B1'ET5\Bg(B) ($B3X(B)$B!{9a86(B $B7r?M(B$B!&(B ($B3X(B)$B9bLZOB(B $BD>51(B$B!&(B ($B@5(B)$B:4F#(B $B9d;K(B$B!&(B ($B@5(B)$B0KF#(B $BD> | reaction kinetic direct hydroxylation Pd catalytic membrane reactor
| SE-15 | 430 |
11:00$B!A(B 12:00 | ZA1P12 | $B>K;@%0%"%K%8%s!?1v4p@->K;@F<:.9gJ*$NG3>F@-$*$h$SGS=P%,%9$N>t2=$K4X$9$k8&5f(B
($BJ!2,Bg9)(B) ($B3X(B)$B!{CfEg(B $BH~Jf(B$B!&(B $BHD1:(B $B9*8>(B$B!&(B ($B@5(B)$B2CF#(B $B>!H~(B$B!&(B ($B@5(B)$BEl(B $B1Q;R(B$B!&(B ($BF|K\2=Lt(B) ($BK!(B)$B=oJ}(B $BCRGn(B | Gas generator Airbag exhaust gas purification
| SE-15 | 616 |
11:00$B!A(B 12:00 | ZA1P13 | 1,3-$B%V%?%8%(%s9g@.MQ%S%9%^%9(B-$B%b%j%V%G%sJ#9g;@2=J*?(G^$X$N%;%j%&%`$NE:2C8z2L(B
($BFAEgBg1!@hC<650iIt(B) ($B3X(B·$B5;4p(B)$B!{:dK\(B $B>0N4(B$B!&(B $B1J0f(B $BM$Lo(B$B!&(B ($BFAEgBg1!@hC<650iIt(B/$B0$Fn2=@.(B) ($B@5(B)$BBgC](B $B>09'(B$B!&(B ($BFAEgBg1!(BSTS$B8&(B) ($B@5(B)$BCf@n(B $B7I;0(B$B!&(B ($B@5(B)$B2CF#(B $B2mM5(B$B!&(B ($B@5(B)$B?y;3(B $BLP(B | 1,3-butadiene Bi-Mo-oxide catalysts De-doping
| SE-15 | 167 |
11:00$B!A(B 12:00 | ZA1P14 | $BNW3&E@0J2<(B150$B!n$^$G;HMQ2DG=$J%Q%i%8%&%`J#9gKl$N:n@=$H@-G=I>2A(B
($B1'ET5\Bg(B) ($B3X(B)$B!{BgEg(B $B=_;V(B$B!&(B ($B@5(B)$B:4F#(B $B9d;K(B$B!&(B ($B@5(B)$B0KF#(B $BD> | Hydrogen Palladium Membrane
| SE-15 | 885 |
11:00$B!A(B 12:00 | ZA1P15 | $B?eJ,2r$K$h$k?eAG@=B$$N$?$a$NF<;@2=J*D4@=K!(B
($B1'ET5\Bg(B) ($B3X(B)$B!{2,Ln(B $B@5Lo(B$B!&(B ($B@5(B)$B:4F#(B $B9d;K(B$B!&(B ($B@5(B)$B0KF#(B $BD> | hydrogen production copper oxide water decomposition
| SE-15 | 459 |
11:00$B!A(B 12:00 | ZA1P16 | $B9bA*BrE*J*
($B:eBg1!4p9)(B) ($B3X(B)$B!{;0Bp(B $B9@;K(B$B!&(B ($B@5(B)$BW"ED(B $BM:0lO/(B$B!&(B ($B:eBg1!4p9)(B/JST$B$5$-$,$1(B) ($B@5(B)$BFbED(B $B9,L@(B$B!&(B ($B:eBg1!4p9)(B/JST-CREST) ($B@5(B)$B@>;3(B $B7{OB(B | catalyst zeolite core-shell
| SE-15 | 492 |
11:00$B!A(B 12:00 | ZA1P17 | $BAX>u%1%$;@1v$N9g@.$H5!G=2=(B
($B4tIlBg1!9)(B) ($B3X(B)$B!{9b66(B $BfFB@(B$B!&(B ($B4tIlBg9)(B) $B$B!&(B ($B;:Am8&(B) $BCSED(B $BBn;K(B$B!&(B ($B4tIlBg9)(B) ($B@5(B)$B5\K\(B $B3X(B$B!&(B ($B@5(B)$B>e5\(B $B@.G7(B$B!&(B ($B4tIlBg@8L?%;(B) ($B@5(B)$B6a9>(B $BLwB'(B | layered silicate zeolite catalysis
| SE-15 | 722 |
11:00$B!A(B 12:00 | ZA1P18 | $B%<%*%i%$%H(B/$B;@2=%+%k%7%&%`$rMQ$$$?%X%-%5%U%k%*%m%(%?%s$NJ,2r(B
($B4X@>Bg4DET9)(B) ($B3X(B)$B!{|b0f(B $B0l7{(B$B!&(B ($B@5(B)$B9SLZ(B $BDgIW(B$B!&(B ($B@5(B)$B;3K\(B $B=( | Hexafluoroethane Zeolite Calcium Oxide
| SE-15 | 826 |
11:00$B!A(B 12:00 | ZA1P19 | $BBeBX%U%m%s$+$i$N%U%C;@@=B$%W%m%;%9$N3+H/(B
($B4X@>Bg4DET9)(B) ($B3X(B)$B!{KYFb(B $BN6B@(B$B!&(B ($B3X(B)$B9SLZ(B $BDgIW(B$B!&(B ($B@5(B)$B;3K\(B $B=( | Distillation Hydrofluoric acid Sulfuric acid
| SE-15 | 842 |
11:00$B!A(B 12:00 | ZA1P20 | $B<<299g@.(BMg$B$*$h$S(BAl$B4^M-(BMCM-41$B$N?(G^:nMQ(B
($BKLBg1!Am2=(B) ($B3X(B)$B!{@%@n(B $B?8;J(B$B!&(B ($BKLBg1!9)(B) ($B@5(B)$BF#ED(B $B?J0lO:(B$B!&(B ($B@5(B)$B9S0f(B $B@5I'(B$B!&(B ($BKLBg1!Am2=(B) $B@nEh(B $BOB4n(B | mesoporous silica base catalyst acid catalyst
| SE-15 | 290 |
11:00$B!A(B 12:00 | ZA1P21 | An Improved Method for the Synthesis of TiO2-SiO2 Microhoneycomb Photocatalysts
($BKLBg1!9)(B) ($B3X(B)$B!{(BUrkasame Kasama$B!&(B ($B3X(B)Yoshida Seiichiro$B!&(B ($B@5(B)Iwamura Shinichiroh$B!&(B ($B@5(B)Ogino Isao$B!&(B ($B@5(B)Mukai Shin | ice-templating method microhoneycomb photocatalyst
| SE-15 | 264 |
11:00$B!A(B 12:00 | ZA1P22 | $BHsG.J?9U%W%i%:%^H?1~4o$rMQ$$$?(BTCE$BJ,2r$KBP$9$k9=@.EE6K>r7o$HEE8;<~GH?t>r7o$N1F6A(B
($BAO2ABg9)(B) ($B3X(B)$B!{EDO)(B $B?-0l(B$B!&(B ($BAO2ABgM}9)(B) ($B@5(B)$B1[CR(B $B@5@k(B$B!&(B ($B@5(B)$B0fED(B $B=\0l(B$B!&(B ($B@5(B)$B>>;3(B $BC#(B$B!&(B ($B@5(B)$B;3K\(B $B1QIW(B | Nonthermal plasma Surface discharge Trichloroethylene decomposition
| SE-15 | 804 |
11:00$B!A(B 12:00 | ZA1P23 | $BG.2=3X%5%$%/%k$rMxMQ$7$?!"B@M[8w!&?e!&6u5$$+$i$N%"%s%b%K%"@=B$$K4X$9$k8&5f(B
($BG@9)Bg9)(B) ($B3X(B)$B!{5H2,(B $B1M;R(B$B!&(B ($B@5(B)$B:y0f(B $B@?(B$B!&(B ($B@5(B)$B55;3(B $B=(M:(B$B!&(B ($B%"%k%^%$%H?(G^8&(B) Tran Thanh Phong | Ammonia Production Thermochemical Cycle Iron catalyst
| SE-15 | 632 |
11:00$B!A(B 12:00 | ZA1P24 | $B2D5UH?1~$rMQ$$$?Dc29G.8;MxMQ%7%9%F%`$N8!F$(B
($BG@9)Bg(B) ($B3X(B)$B!{?yED(B $BL$Mh(B$B!&(B ($B@5(B)$B:y0f(B $B@?(B$B!&(B ($B@5(B)$B55;3(B $B=(M:(B | Chemical heat pipe low-temperature heat source utilization reversible reaction
| SE-15 | 126 |
11:00$B!A(B 12:00 | ZA1P25 | $B%=!<%W%U%j!
($BEl3$Bg1!9)(B) ($B3X(B)$B!{>.CS(B $BOB(B$B!&(B ($BEl3$Bg9)(B) $B:4!9LZ(B $BN<(B$B!&(B $B?{2H(B $B?5Li(B$B!&(B $B0pMU(B $BM&5$(B$B!&(B ($BEl3$Bg1!9)(B) $B5H_7(B $BM5Li(B$B!&(B ($B@5(B)$B=);3(B $BBY?-(B | polystyrene fine particle soap-free emulsion polymerization
| SE-15 | 759 |
11:00$B!A(B 12:00 | ZA1P26 | $B6&C:2=K!$K$h$kC:2=J*$N:Y9&9=B$@)8f(B
($B4X@>Bg4DET9)(B) ($B3X(B)$B!{1F1:(B $BD>$B!&(B ($B@5(B)$BNS(B $B=g0l(B | resin carbide molecular sieve
| SE-15 | 904 |
$BIt2q%7%s%]%8%&%`(B SY-1. <$B@8J*>pJsMxMQ$N?JJb$H8=>u(B> |
(13:00$B!A(B13:40) ($B;J2q(B $BARED(B $BGnG7(B) |
13:00$B!A(B 13:40 | H113 | [$B>7BT9V1i(B] $B@8J*?J2=$r0z$-5/$3$7$?0dEA;R%9%Z%/%H%k$N?J2=E*JQ2=(B
($BKLBg>pJs(B) $B1sF#(B $B=SFA(B | $B?J2=(B $B%2%N%`(B $BBe | SY-1 | 550 |
(13:40$B!A(B14:20) ($B:BD9(B $B@6?e(B $B9@!&Bl8}(B $B>:(B) |
13:40$B!A(B 14:00 | H115 | $BCN<1%Y!<%92%G!<%?2r@O$X$N1~MQ(B
($B@iMUBg1!1`7](B) ($B@5(B)$B!{9b66(B $B9-IW(B$B!&(B ($B9q$,$s8&%;%s(B) ($B@5(B)$B:dK\(B $BM5H~(B$B!&(B ($B@5(B)$B5HED(B $B51I'(B | biomedical informatics bioinformatics omics
| SY-1 | 58 |
14:00$B!A(B 14:20 | H116 | $B93BN@8;:6/2=$N$?$a$N(BCHO$B:YK&%a%?%\%m!<%`$NE}7W2r@O(B
($B6e9)Bg>p9)(B) Badsha Md Bahadur$B!&(B ($B@5(B)$B!{ARED(B $BGnG7(B$B!&(B (HMT) $BBg2l(B $BBs;K(B$B!&(B ($BFAEgBg9)(B) $B54DM(B $B@55A(B$B!&(B ($B:eBg9)(B) ($B@5(B)$BBg@/(B $B7r;K(B | CHO Trehalose LASSO
| SY-1 | 137 |
(14:20$B!A(B15:00) ($B;J2q(B $BBl8}(B $B>:(B) |
14:20$B!A(B 15:00 | H117 | [$B>7BT9V1i(B] $B
($B90A0BgG@3X@8L?2J3X(B) $BGpLZ(B $BL@;R(B | molecular evolution RNA bacteriophage
| SY-1 | 371 |
(15:00$B!A(B16:00) ($B:BD9(B $B9b66(B $B9-IW!&ARED(B $BGnG7(B) |
15:00$B!A(B 15:20 | H119 | 13C$B%U%i%C%/%92r@O$K4p$E$/%0%j%;%m!<%kC:AG8;$K$*$1$kBgD26]$NCf?uBe
($B:eBg1!>pJs(B) ($B@5(B)$B!{8MC+(B $B5HGn(B$B!&(B $BBg66(B $B=(8`(B$B!&(B ($B@5(B)$B@6?e(B $B9@(B | 13C-Metabolic flux analysis Glycerol Escherichia coli
| SY-1 | 687 |
15:20$B!A(B 15:40 | H120 | Synechocystis sp. PCC6803$B$N%(%?%N!<%k@8;:$K$*$1$kBe
($B:eBg%P%$%*>pJs(B) ($B@5(B)$B!{@6?e(B $B9@(B$B!&(B $B5H@n(B $B>!FA(B$B!&(B $BCgEh(B $BMc(B | cyanobacteria genome scale model ethanol production
| SY-1 | 480 |
15:40$B!A(B 16:00 | H121 | $BSL3P$N>pJs=hM}5!9=$r4p$K$7$?G]M\>uBVG'<1(B
($B6bBtBgM}9)(B) ($B@5(B)$B!{Bl8}(B $B>:(B$B!&(B ($B6bBtBg<+A38&(B) $BEDCf(B $B=Y2p(B$B!&(B ($B9-Bg9)(B) $BA>(B $BCR(B$B!&(B $BDT(B $BIRIW(B | biological information olfactory process state recognition
| SY-1 | 299 |
$BBh(B 2 $BF|(B
|
$B9V1i(B $B;~9o(B | $B9V1i(B $BHV9f(B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $BJ,N`(B $BHV9f(B | $B$BHV9f(B | |
$BIt2q%;%C%7%g%s(B SE-18. <$B4pACJ*@-It2q%;%C%7%g%s(B> |
(13:00$B!A(B14:40) ($B:BD9(B $B5\K\(B $BBY9T!&>.^<(B $BLP |
13:00$B!A(B 13:40 | H213 | [$B>7BT9V1i(B] $B3$MN%b%K%?%j%s%0$N$?$a$N3$?eL)EY!&6~@^N(7WB,5;=Q(B
($B;:Am8&(B) $B!{4!@n(B $BMNJ?(B$B!&(B $BF#ED(B $B2B9'(B$B!&(B ($B3$MN5!9=(B) $BFbED(B $BM5(B | Ocean monitoring Density Refractive index
| SE-18 | 511 |
13:40$B!A(B 14:00 | H215 | 298.2 K$B!$9b052<$K$*$1$k%*%l%$%s;@%a%A%k(B+$B%a%?%N!<%k7O$NL)EY$*$h$SG4EYB,Dj(B
($BF|Bg@8;:9)(B) ($B3X(B)$B!{:,K\(B $B0l53(B$B!&(B ($B@5(B)$BJ]2J(B $B5.N<(B$B!&(B $B;3@n(B $B0l;0CK(B$B!&(B ($B@5(B)$BDT(B $BCRLi(B$B!&(B ($B@5(B)$BF|=)(B $B=SI'(B$B!&(B ($BF1;VeLn(B $B@5>!(B | density viscosity high pressure
| SE-18 | 410 |
14:00$B!A(B 14:20 | H216 | $B9b299b05%"%k%3!<%k?eMO1U$NL)EYG4EYB,Dj$*$h$S(BEyring theory$B$K$h$k?d;;(B
($BElKLBg1!9)(B) ($B3X(B·$B5;4p(B)$B!{1+_7(B $BN<2p(B$B!&(B ($BElKLBg9)(B) $B7PED(B $BK((B$B!&(B ($BElKLBg1!9)(B) ($B@5(B)$B>.Ln(B $B9*(B$B!&(B ($B@5(B)$B:4F#(B $BA1G7(B$B!&(B ($B@5(B)$BCv8T(B $B9((B | alcohol+water mixture density viscosity
| SE-18 | 528 |
14:20$B!A(B 14:40 | H217 | $B9b05>r7o2<$K$*$1$k%]%j%^!
($B9-Bg1!9)(B) ($B3X(B·$B5;4p(B)$B!{I6(B $B9qL@(B$B!&(B ($B@5(B)$B=ULZ(B $B>-;J(B$B!&(B ($BElKLBg1!9)(B) ($B@5(B)$B:4F#(B $BA1G7(B$B!&(B ($B9-Bg1!9)(B) ($B@5(B)$BLZ86(B $B?-0l(B$B!&(B ($B@5(B)$BBlV:(B $BHK | polymer viscosity high pressure
| SE-18 | 300 |
(15:00$B!A(B17:00) ($B:BD9(B $B;y6L(B $BBgJe!&>>ED(B $B909,(B) |
15:00$B!A(B 15:40 | H219 | [$BE8K>9V1i(B] $B:.9g7OG.G^BN$N(BHelmholtz$B4X?t7?>uBVJ}Dx<0$N9b@:EY2=(B
($BIY;38)Bg(B) ($B@5(B)$B!{5\K\(B $BBY9T(B$B!&(B ($B6e;:Bg(B) $B@V:d(B $BN<(B | Equation of State Measurement Working Fluid
| SE-18 | 664 |
15:40$B!A(B 16:00 | H221 | $B2~NI(BWilson$B<0$K$h$k%"%k%+%s(B+$B%a%?%N!<%k(B+$BK'9aB2C:2=?eAG(B3$B@.J,7O1U1UJ?9U$N?d;;(B
($B;38}Bg1!M}9)(B) ($B@5(B)$B!{>.^<(B $BLP$B!&(B ($B3X(B)$B>eNI(B $B9d;K(B$B!&(B ($B6eBg1!9)(B) ($B@5(B)$BJF_7(B $B@a;R(B | Liquid-liquid equilibrium Modified Wilson equation Prediction
| SE-18 | 3 |
16:00$B!A(B 16:20 | H222 | $B6&J(:.9gMOG^$KJ.L8:^$H$7$F$N%8%a%A%k%(!<%F%k$^$?$O%W%m%Q%s$r2C$($?7O$NAjJ?9U(B
($BF|Bg@8;:9)(B) ($B3X(B·$B5;4p(B)$B!{2#0f(B $BBg8g(B$B!&(B ($B@5(B)$BJ]2J(B $B5.N<(B$B!&(B ($B@5(B)$BDT(B $BCRLi(B$B!&(B ($B@5(B)$BF|=)(B $B=SI'(B$B!&(B ($BElKLBgB?858&(B) ($B@5(B)$BIZED(B $BBgJe(B$B!&(B ($B@5(B)$B6,(B $B_c(B$B!&(B ($B@5(B)$B2#;3(B $B@i><(B | NRTL eq. ternary system azeotrope
| SE-18 | 297 |
16:20$B!A(B 16:40 | H223 | $BD>@\J,;RF0NO3X%7%_%e%l!<%7%g%s$K$h$k3hNL78?t%b%G%k$N8!F$(B
($B6eBg(B) ($B3X(B)$B!{EDB?(B $B9/M5(B$B!&(B ($B@5(B)$B4d0f(B $BK'IW(B | activity coefficient model athermal term molecular dynamics simulation
| SE-18 | 304 |
16:40$B!A(B 17:00 | H224 | $B
($BF|Bg@8;:9)(B) ($B3X(B)$B!{;T@n(B $B5.7<(B$B!&(B ($B@5(B)$BJ]2J(B $B5.N<(B$B!&(B ($B@5(B)$B:4F#(B $BIR9,(B$B!&(B ($B@5(B)$B2,ED(B $B>;$B!&(B ($B@5(B)$BF|=)(B $B=SI'(B | Biodiesel fuels Solid-liquid equilibrium Redlich-Kister equation
| SE-18 | 599 |
$BBh(B 3 $BF|(B
|
$B9V1i(B $B;~9o(B | $B9V1i(B $BHV9f(B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $BJ,N`(B $BHV9f(B | $B$BHV9f(B | |
$BIt2q%;%C%7%g%s(B SE-18. <$B4pACJ*@-It2q%;%C%7%g%s(B> |
(9:00$B!A(B10:20) ($B:BD9(B $B=ULZ(B $B>-;J!&6b5WJ](B $B8w1{(B) |
9:00$B!A(B 9:20 | H301 | $BM6EEJ*@-$rMxMQ$7$?1UBNCf$NHyNL?eJ,B,DjAuCV$N3+H/(B
($B2&;R%[!<%k%G%#%s%0%9(B) ($B@5(B)$B!{1JED(B $B?B0l(B$B!&(B $B_7K\(B $B1QCi(B$B!&(B $B(B$B!&(B $B?9@n(B $B5.;R(B$B!&(B $BNkLZ(B $BM35*;R(B | Moisture Measurement Dielectric Property Solvent
| SE-18 | 32 |
9:20$B!A(B 9:40 | H302 | $B%8%a%A%k%(!<%F%k(B+$B%/%m%m%[%k%`(B+$B%(%?%N!<%k:.9g7O$NM6EEN(B,Dj$H6I=jAH@.%b%G%k$K$h$kM6EEN($N?d;;(B
($BF|Bg@8;:9)(B) ($B3X(B·$B5;4p(B)$B!{:4F#(B $BOBHO(B$B!&(B ($B@5(B)$BJ]2J(B $B5.N<(B$B!&(B ($B@5(B)$BDT(B $BCRLi(B$B!&(B ($B@5(B)$BF|=)(B $B=SI'(B | dielectric constant ternary mixture local composition model
| SE-18 | 359 |
9:40$B!A(B 10:00 | H303 | Mass transfer coefficient of organic solvent in supercritical carbon dioxide drying
($BEl9)Bg1!M}9)(B) ($B3X(B)$B!{(BKunanusont Nattanai$B!&(B ($B3X(B)$BLZ2<(B $B85Bg(B$B!&(B ($B@5(B)$B2<;3(B $BM52p(B | supercritical carbon dioxide drying mass transfer coefficient
| SE-18 | 620 |
10:00$B!A(B 10:20 | H304 | 2$B@.J,7OF0G4EY$N(BEyring-Wilson$B<0$K$h$kAj4X(B
($BF|BgM}9)(B) ($B@5(B)$B!{FJLZ(B $B>!8J(B$B!&(B ($B@5(B)$B>>ED(B $B909,(B$B!&(B ($B@5(B)$B7*86(B $B@6J8(B$B!&(B ($BCf1{BgM}9)(B) ($B@5(B)$BA%B$(B $B=S9'(B$B!&(B (Panjab U.) Rattan V. K. | Kinematic Viscosity Eyring-Wilson equation Excess free energy at activated state
| SE-18 | 221 |
(10:40$B!A(B12:00) ($B:BD9(B $B< |
10:40$B!A(B 11:20 | H306 | [$B>7BT9V1i(B] $B%/%i%9%l!<%H%O%$%I%l!<%H$K$h$k%,%9CyB"$H@-G=I>2A(B
($B;:Am8&(B) $BC]C+(B $BIR(B | clathrate hydrate gas capacity
| SE-18 | 930 |
11:20$B!A(B 11:40 | H308 | $B%"%s%b%K%&%`1v6&B82<$K$*$1$k%a%?%s%O%$%I%l!<%H$NAjJ?9U>r7o$NB,Dj(B
($B;:Am8&(B) ($B@5(B)$B!{<$B!&(B ($B@5(B)$BA0@n(B $BN5CK(B$B!&(B ($B@5(B)$B;3K\(B $B2B9'(B | hydrate phase equilibrium methane
| SE-18 | 335 |
11:40$B!A(B 12:00 | H309 | $B%;%_%/%i%9%l!<%H@8@.7O(B(Nitrogen + Tetra-n-butylammonium Bromide + Water)$B$K$*$1$kCbAG%,%9$NMO2rEYB,Dj(B
($BIY;38)Bg(B) ($B3X(B)$B!{H<>l(B $BN$B!&(B $BNkLZ(B $B;VO:(B$B!&(B ($B;:Am8&(B) $B<$B!&(B ($BIY;38)Bg(B) ($B@5(B)$B5\K\(B $BBY9T(B$B!&(B ($B7DXfBgM}9)(B) $BBgB<(B $BN<(B | Tetra-n-butylammonium Bromide solubility measurement
| SE-18 | 780 |
(13:00$B!A(B14:40) ($B:BD9(B $BEl(B $B=(7{!&J]2J(B $B5.N<(B) |
13:00$B!A(B 13:40 | H313 | [$BE8K>9V1i(B] $B%;%_%/%i%9%l!<%H%O%$%I%l!<%H$NG.NO3XE*0BDj@-(B
($B;:Am8&(B) ($B@5(B)$B< | semiclathrate hydrate thermodynamic stability phase change material
| SE-18 | 372 |
13:40$B!A(B 14:00 | H315 | $B%7%"%N7O%$%*%s1UBN$NFs;@2=C:AG5[<}FC@-(B
($BF|Bg1!9)(B) ($B3X(B)$B!{EOn4(B $B@551(B$B!&(B ($BF|Bg9)(B) ($B@5(B)$B;y6L(B $BBgJe(B$B!&(B ($B;:Am8&(B) ($B@5(B)$BKRLn(B $B5.;j(B$B!&(B ($B@5(B)$B6b5WJ](B $B8w1{(B | ionic liquid carbon dioxide solubility
| SE-18 | 482 |
14:00$B!A(B 14:20 | H316 | $B?];@$r%"%K%*%s$H$9$k%$%*%s1UBN$N(BCO2$B5[<}FC@-(B
($B;:Am8&(B) ($B@5(B)$B!{KRLn(B $B5.;j(B$B!&(B ($B:42lBg1!9)3X7O(B) ($B@5(B)$BG_LZ(B $BC$Li(B$B!&(B ($B;37ABgM}(B) $B55ED(B $B63CK(B$B!&(B ($B;:Am8&(B) ($B@5(B)$B6b5WJ](B $B8w1{(B | ionic liquid CO2 acetate
| SE-18 | 294 |
14:20$B!A(B 14:40 | H317 | 2$B%j%&%`7O%$%*%s1UBN:.9gMO1U$NJ*M}2=3XE*@-2$B5[<}FC@-(B
($B;:Am8&(B) ($B@5(B)$B!{6b5WJ](B $B8w1{(B$B!&(B ($B@5(B)$BKRLn(B $B5.;j(B$B!&(B ($B:42lBg1!9)3X7O(B) ($B@5(B)$BG_LZ(B $BC$Li(B$B!&(B (JAXA) ($B@5(B)$B:y0f(B $B@??M(B | ionic liquids mixtures physical properties
| SE-18 | 365 |
(15:00$B!A(B16:00) ($B:BD9(B $BKRLn(B $B5.;j!&1JED(B $B?B0l(B) |
15:00$B!A(B 15:20 | H319 | CO2/isopentane$BFs@.J,:.9gJ*$N5$1UJ?9U@-
($BIY;38)Bg(B) ($B3X(B)$B!{>1;J(B $BM$$B!&(B ($B@5(B)$B5\K\(B $BBY9T(B | Recirculation method VLE Binary mixture
| SE-18 | 766 |
15:20$B!A(B 15:40 | H320 | $B>uBVJ}Dx<0$rMQ$$$?(BCO2+$B?eMO1U7O$NAjJ?9U$H(BpH$B$N?d;;(B
($BF|Bg@8;:9)(B) ($B3X(B)$B!{LP(B $B??M}F`(B$B!&(B ($B@5(B)$BJ]2J(B $B5.N<(B$B!&(B ($B@5(B)$BDT(B $BCRLi(B$B!&(B ($B@5(B)$BF|=)(B $B=SI'(B | Equation of state Carbon dioxide pH
| SE-18 | 472 |
15:40$B!A(B 16:00 | H321 | $B%/%i%9%?!<%b%G%k$K$h$k5$1UJ?9U$N?d;;(B
($BElM}BgM}(B) ($B@5(B)$BBg9>(B $B=$B$(B | cluster prediction vapor-liquid equilibrium
| SE-18 | 555 |