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(10:00$B!A(B10:40)$B!!(B($B:BD9(B $B@n:j7rFs(B) |
10:00$B!A(B 10:20 | A104 | $B?6$H$&<0E`7kG;=L$K$h$kMO1U$NG;=LJ,N%FC@-$N2r@O(B ($BL>Bg9)(B) $B!{(B($B@5(B)$BJR6M(B $B@?G7(B$B!&(B($B3X(B)$BLx(B $B7JZa(B$B!&(B($B@5(B)$BF~C+(B $B1Q;J(B | freeze concentration separation shaking
| S-16 | 625 |
10:20$B!A(B 10:40 | A105 | $BE`7kM;2rK!$K$h$kHyN3;R$r4^$`(BO/W$B%(%^%k%7%g%s$NJ,N%FC@-(B ($BL>Bg9)(B) $B!{(B($B3X(B)$BLx(B $B7JZa(B$B!&(B($B@5(B)$BJR6M(B $B@?G7(B$B!&(B($B@5(B)$BF~C+(B $B1Q;J(B | freeze-thaw separation emulsion
| S-16 | 623 |
(10:40$B!A(B11:20)$B!!(B($B:BD9(B $BCfB<0lJf(B) |
10:40$B!A(B 11:00 | A106 | $BJ#9g2=4629@-B?9& ($B9-Bg1!9)(B) $B!{(B($B@5(B)$B8eF#(B $B7rI'(B$B!&(B($B9-Bg9)(B) $BJ!ED(B $B?8Li(B$B!&(B($B9-Bg1!9)(B) ($B@5(B)$BGw86(B $B=$<#(B | Thermosensitive gel Organic Slurry Solid-liquid Separation
| S-16 | 909 |
11:00$B!A(B 11:20 | A107 | $B%+%A%*%s@-$*$h$S%"%K%*%s@-4629@-%]%j%^!<$NJ;MQ$K$h$k7|ByN3;R$N6E=8!&05L)(B ($B9-Bg1!9)(B) $B!{F|L>;R(B $BN<2p(B$B!&(B$B>eED(B $B1QB'(B$B!&(B($B@5(B)$BGw86(B $B=$<#(B | ionic thermosensitive polymer hydrophobic interaction compaction
| S-16 | 697 |
(11:20$B!A(B12:00)$B!!(B($B;J2q(B $BJR6M@?G7(B) |
11:20$B!A(B 12:00 | A108 | [$BE8K>9V1i(B] $BEE5$$a$C$-GS?e=hM}$K$*$1$k:G6a$N@6@!_I2a(B ($B;0?J@=:n=j(B) $B!{(B($B@5(B)$BJ!ED(B $B@5(B | electroplating filtration wastewater treatment
| S-16 | 642 |
(13:00$B!A(B13:40)$B!!(B($B;J2q(B $B_7ED(B $B>O(B) |
13:00$B!A(B 13:40 | A113 | [$BE8K>9V1i(B] $BN3;R!&N.BN7OJ,N%A`:n$K$*$1$k%=%U%H%3%m%$%I$N@:L)J,N%FC@-(B ($BL>Bg9)(B) $B!{(B($B@5(B)$BF~C+(B $B1Q;J(B | soft colloid solid-liquid separation compressibility
| S-16 | 637 |
(13:40$B!A(B14:40)$B!!(B($B:BD9(B $BEDCf9'L@(B) |
13:40$B!A(B 14:00 | A115 | $BKlLL79 ($B;38}Bg1!M}9)(B) $B!{(B($B@5(B)$BCfAR(B $B1QM:(B$B!&(B($B;38}Bg9)(B) $B@;@n(B $B@iCR(B | centrifugation ultrafiltration protein
| S-16 | 253 |
14:00$B!A(B 14:20 | A116 | $B1s?4>=@O$K$h$kHyN3%"%_%N;@7k>=$N@8@.!&J,N%2aDx(B ($BL>Bg9)(B) $B!{(B($B3X(B)$BE7Ln(B $BK>(B$B!&(B($B@5(B)$B8~0f(B $B9/?M(B$B!&(B($B@5(B)$BF~C+(B $B1Q;J(B | centrifugal force crystallization crystal size
| S-16 | 593 |
14:20$B!A(B 14:40 | A117 | $B%5%V%_%/%m%sN3;R= ($BL>Bg9)(B) $B!{(B($B@5(B)$B8~0f(B $B9/?M(B$B!&(B$B>.7*(B $B=(0lO:(B$B!&(B($B@5(B)$BF~C+(B $B1Q;J(B | microfiltration protein submicron particle
| S-16 | 592 |
(14:40$B!A(B15:20)$B!!(B($B:BD9(B $BCfAR1QM:(B) |
14:40$B!A(B 15:00 | A118 | $B%]%j%V%A%l%s%5%/%7%M!<%H_I2aKl$N3+H/(B ($B?73cBg9)(B) $B!{(B($B3X(B)$B9b66(B $B??5-(B$B!&(B$B@n8}(B $B<";R(B$B!&(B$Bc7F#(B $B9@(B$B!&(B($B@5(B)$BC+8}(B $B@5G7(B$B!&(B($B%F%-%5%9Bg9)(B) Lloyd D. R.$B!&(B($B?73cBg9)(B) ($B@5(B)$BEDCf(B $B9'L@(B | filter biodegradable plastics filtration
| S-16 | 3 |
15:00$B!A(B 15:20 | A119 | $BN.F0EE0LK!$K$h$k$m2a%1!<%/$NN3;R4V4V7d$NI>2A(B ($B2#9qBg(B) $B!{:4F#(B $B7<;K(B$B!&(B$BED8}(B $B??0lO:(B$B!&(B$B?7ED8+(B $B6)(B$B!&(B($B@5(B)$BCfB<(B $B0lJf(B$B!&(B($B@5(B)$B>>K\(B $B44<#(B | filter cake streaming potential cake structure
| S-16 | 107 |
(15:20$B!A(B16:20)$B!!(B($B:BD9(B $B8~0f9/?M(B) |
15:20$B!A(B 15:40 | A120 | $BM>>j3h@-1xE%$r9=@.$9$k3F ($B0&I2Bg9)(B) $B!{(B($B@5(B)$B@n:j(B $B7rFs(B$B!&(B$BC+K\(B $B$B!&(B$BD9:j(B $BN<(B$B!&(B($B@5(B)$B>>ED(B $B98(B | Activated Sludge Filtration Resistance Micro Filtration Membrane
| S-16 | 487 |
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| S-16 | 965 |
16:00$B!A(B 16:20 | A122 | $B@8J,2r@-%-%l!<%H:^$K$h$kM-326bB01x@wEZ>m$N=$I|(B ($B;:Am8&(B) $B!{(B($B@5(B)$B_7ED(B $B>O(B$B!&(B$BC$L&(B $B7{;J(B | harmful metal soil extraction
| S-16 | 672 |
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9:00$B!A(B 9:40 | B101 | [$BE8K>9V1i(B] $B%W%m%;%9A4BN$rPmbW$7$?>J;q8;!&>J%(%M%k%.!<$N ($B=P8w6=;:(B) $B!{(B($B@5(B)$BEDB<(B $B7 | resource saving energy saving process design and operation
| S-18 | 1106 |
(9:40$B!A(B11:00)$B!!(B($B:BD9(B $B>>ED7=8g(B) |
9:40$B!A(B 10:00 | B103 | $BFbItG.8r49>xN1Ec(B(HIDiC)$B$N5sF0(B ($BElM}Bg9)(B) $B!{(B($B@5(B)$BBg9>(B $B=$B$(B | HIDiC distillation energy saving
| S-18 | 214 |
10:00$B!A(B 10:20 | B104 | $BFbItG.8r497?>xN1Ec(B(HIDiC)$B$NIi2YJQF01?E>$N7k2L$K$D$$$F(B ($B4]A1@PL}2=3X(B) $B!{(B($B@5(B)$BKYFb(B $B6QJ?(B$B!&(B($B@5(B)$B0fFb(B $B8,Je(B$B!&(B($B4X@>2=3X(B) ($B@5(B)$BJR2,(B $BK.IW(B$B!&(B($B;:Am8&(B) ($B@5(B)$BCf4d(B $B>!(B | HIDiC Distillation Energy Saving
| S-18 | 322 |
10:20$B!A(B 10:40 | B105 | $B%W%l!<%H%U%#%s7?(BHIDiC$B$K$h$k6u5$J,N% ($BBgM[F|;@(B) $B!{(B($B@5(B)$B9>1[(B $B?.L@(B$B!&(B$B@P@n(B $B0l=S(B$B!&(B$B:d>e(B $B@?0l(B$B!&(B($B@5(B)$B@n>e(B $B9@(B | HIDiC cryogenic distillation air separation
| S-18 | 1032 |
10:40$B!A(B 11:00 | B106 | HIDiC$B2=:GE,%"%W%j%1!<%7%g%sA*Dj$H$=$N5;=QGX7J(B ($BElMN%(%s%8(B) ($B@5(B)$B_@B<(B $B8wMx(B$B!&(B$B!{$B!&(B$B6L1[(B $B> | Column Grand Composite Curve Component Pinch Energy Saving
| S-18 | 1102 |
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11:00$B!A(B 11:20 | B107 | Compressorless HIDiC$B%7%9%F%`$N2DG=@-(B ($B4X@>2=3X(B) ($B@5(B)$BLnED(B $B=(IW(B$B!&(B$B!{(B($B@5(B)$BJR2,(B $BK.IW(B$B!&(B($B@5(B)$B;3O)(B $B42;J(B$B!&(B($B@5(B)$BARC+(B $B?-9T(B$B!&(B($B@5(B)$B8~ED(B $BCi90(B$B!&(B($B@5(B)$B6bED(B $BK|J?(B$B!&(B($B4]A1@PL}(B) ($B@5(B)$BKYFb(B $B6QJ?(B$B!&(B($B;:Am8&(B) ($B@5(B)$BCf4d(B $B>!(B | Multi-component distillation Energy saving Compressorless HIDiC
| S-18 | 11 |
11:20$B!A(B 11:40 | B108 | $BBg8}7B(BHIDiC$B$N ($BLZB<2=9)(B) $B!{(B($BIt(B)$BCf@>(B $B=S@.(B$B!&(B$BB-N)(B $B>0fb(B$B!&(B($BIt(B)$B0$A>(B $B0l@5(B$B!&(B($B;:Am8&(B) ($BIt(B)$BCf4d(B $B>!(B$B!&(B($B;37ABg(B) ($BIt(B)$B>>ED(B $B7=8g(B$B!&(B($BLZB<2=9)(B) $B9b>>(B $BIp0lO:(B | HIDiC Distillation Experiment
| S-18 | 711 |
11:40$B!A(B 12:00 | B109 | $BBg8}7B(BHIDiC$B$N%7%_%e%l!<%7%g%s%b%G%k$N8!F$(B ($BLZB<2=9)(B) $B!{B-N)(B $B>0fb(B$B!&(B($BIt(B)$BCf@>(B $B=S@.(B$B!&(B($BIt(B)$B0$A>(B $B0l@5(B$B!&(B($B;:Am8&(B) ($BIt(B)$BCf4d(B $B>!(B$B!&(B($B;37ABg(B) ($BIt(B)$B>>ED(B $B7=8g(B$B!&(B($BLZB<2=9)(B) $B9b>>(B $BIp0lO:(B | HIDiC Distillation Simulation
| S-18 | 722 |
(13:00$B!A(B13:40)$B!!(B($B;J2q(B $BCf4d(B $B>!(B) |
13:00$B!A(B 13:40 | B113 | [$B>7BT9V1i(B] Energy Saving by Heat Integration in Distillation Process ($BKL5~2=9)Bg(B) $B!{(B($B@5(B)$B2+(B $B9n6`(B | energy saving heat integration control
| S-18 | 631 |
(13:40$B!A(B14:40)$B!!(B($B:BD9(B $B?9(B $B=( |
13:40$B!A(B 14:00 | B115 | $BFbItG.8r497?>xN1Ec$N9=B$$*$h$S1?E>$HB?=EDj>o>uBV(B ($B5~Bg9)(B) $B!{(B($B3X(B)$B4,ED(B $B9@(B$B!&(B($B@5(B)$B2CG<(B $B3X(B$B!&(B($B@5(B)$BD9C+It(B $B?-<#(B | heat integrated distillation column multiple steady states operation and control
| S-18 | 50 |
14:00$B!A(B 14:20 | B116 | HIDiC$B%7%9%F%`$N(BgPROMS$B$K$h$k%b%G%j%s%0(B ($B%T!<%(%9%$!<%8%c%Q%s(B) $B!{(B($B@5(B)$BGp20(B $B<"(B | modeling exergy analysis HIDiC
| S-18 | 603 |
14:20$B!A(B 14:40 | B117 | $B%W%l!<%H7?G.8r494o9=B$$rM-$9$k(BHIDiC$B$K$h$k%W%m%;%96/2=(B ($B;37ABg1!M}9)(B) $B!{(B($B@5(B)$B>>ED(B $B7=8g(B$B!&(B($B;:Am8&(B) ($B@5(B)$B4dJI(B $B9,;T(B$B!&(B($B@5(B)$BCf4d(B $B>!(B | plate heat exchanger heat integration process intensification
| S-18 | 24 |
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14:40$B!A(B 15:00 | B118 | $BFbItG.8r497?>xN1Ec(B(HIDiC)$B$K$*$1$kJ* (E&E$B%W%i%K%s%0(B) $B!{(B($B@5(B)$B4dJI(B $B9,;T(B$B!&(B($B;37ABg1!M}9)(B) ($B@5(B)$B>>ED(B $B7=8g(B$B!&(B($B;:Am8&(B) ($B@5(B)$BCf4d(B $B>!(B$B!&(B($B;0I)2=3X(B) $B5WJ](B $BOBLi(B$B!&(B$BKY8}(B $B>=IW(B$B!&(B($B;:Am8&(B) ($B@5(B)$B;3K\(B $BBs;J(B$B!&(B($B@5(B)$BJR2,(B $B>M(B$B!&(B($B@5(B)$BBg?9(B $BN4IW(B | HIDiC distillation heat transfer
| S-18 | 539 |
15:00$B!A(B 15:20 | B119 | $BB.EYO@%b%G%k$K4p$E$/FbItG.8r497?>xN1Ec(BHIDiC$B$N2r@O(B ($BL>9)Bg(B) $B!{(B($B3X(B)$BA0ED(B $BCRMN(B$B!&(B($B@5(B)$B?9(B $B=($B!&(B($B@5(B)$B4dED(B $B=$0l(B$B!&(B($B7 | HIDiC Distillation Rate based model
| S-18 | 729 |
15:20$B!A(B 15:40 | B120 | $B ($BL>9)Bg(B) ($B@5(B)$B?9(B $B=($B!&(B$B!{(B($B3X(B)$B9CHe(B $B=V(B$B!&(B($B@5(B)$B4dED(B $B=$0l(B$B!&(B($B7 | Rate based model Vapor/Liquid contacting Device Simulation
| S-18 | 732 |
(15:40$B!A(B16:40)$B!!(B($B:BD9(B $B_@B<8wMx(B) |
15:40$B!A(B 16:00 | B121 | $BH?1~>xN1%W%m%;%9$NB.EYO@%b%G%k$K$h$k2r@O(B ($BL>9)Bg(B) ($B@5(B)$B?9(B $B=($B!&(B$B!{(B($B3X(B)$BEgED(B $BBgJe(B$B!&(B($B@5(B)$B4dED(B $B=$0l(B$B!&(B($B7$B!&(B($B;0I)2=9)5!(B) $BLn:d(B $B4p(B | Reactive Distillation Rate Based Model Simulation
| S-18 | 739 |
16:00$B!A(B 16:20 | B122 | $B>xN1(B-$BJ,N%Kl%O%$%V%j%C%I%W%m%;%9$K$h$kB?@.J,7OJ,N%(B ($BEl9)BgM}9)(B) $B!{(B($B@5(B)$B>.?{(B $B?M;|(B$B!&(B($BEl9)Bg9)(B) ($B3X(B)$B0$It(B $B9@G7(B | Simulation distillation membrane
| S-18 | 1048 |
16:20$B!A(B 16:40 | B123 | $BD60!NW3&%W%m%Q%s$K$h$k%P%$%*%(%?%N!<%k$N>J%(%MC&?e%W%m%;%9$N:GE,2=(B($B$=$N(B2) ($BL>Bg1!9)(B) $B!{(B($B3X(B)$BBg5WJ](B $B7D0l(B$B!&(B($B@5(B)$B0BED(B $B7<;J(B$B!&(B($B@5(B)$BKYE:(B $B9@=S(B | Supercritical Extraction Dehydration Ethanol
| S-18 | 94 |
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10:00$B!A(B 10:20 | C104 | Development of CO2 selective membrane used in high temperature condition for application to membrane reactor ($B%k%M%C%5%s%9!&%(%J%8!$B!&(B($B@5(B)$B;{K\(B $B@5L@(B$B!&(B$BI10f(B $B9@L@(B$B!&(B$B2,ED(B $B<#(B$B!&(B($B?@8MBg1!9)(B) ($B@5(B)$BA>C+(B $BCN90(B$B!&(B($B@5(B)$BBgB<(B $BD>?M(B$B!&(B($B@5(B)$B>>;3(B $B=(?M(B | facilitated transport membrane membrane reactor carbon dioxide
| S-19 | 502 |
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| S-19 | 165 |
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| S-19 | 640 |
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11:00$B!A(B 11:20 | C107 | $B<+F0tMQ%"%_%s7O3&LL3h@-:^Cf%(%^%k%8%g%sL}J,=|5n$X$N%/%m%9%U%m!<$m2aK!$N8!F$(B ($BF|K\%]!<%k(B) $B!{(B($B@5(B)$BFqGH(B $BC]Va(B$B!&(B($B@5(B)$B3Q20(B $B@5?M(B$B!&(B($B@5(B)$B>B8}(B $BE0(B | Cross flow Parts washing fluid Oil removal
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| S-19 | 810 |
(13:00$B!A(B14:20)$B!!(B($B:BD9(B $B@V>>7{ |
13:00$B!A(B 13:20 | C113 | $BF};@H/9Z1U@:@=$K$*$1$k5U?;F)KlK!$N8!F$(B ($B;37ABg9)(B) $B!{(B($B3X(B)$B;{ED(B $BM:0l(B$B!&(B($B@5(B)$B8c6?(B $B7r0l(B$B!&(B$BElET(B $B2mE5(B$B!&(B($B@5(B)$B9b66(B $B9,;J(B | Lactic acid Reverse osmosis Electrodialysis
| S-19 | 57 |
13:20$B!A(B 13:40 | C114 | $BDc05(BRO$BKl$K$h$kG@Lt1x@wGS?e$NKlJ,N%FC@-(B ($B9)3X1!Bg9)(B) $B!{(B($B@5(B)$B@P@n(B $BE0(B | membrane filtration agrochemical waste water
| S-19 | 920 |
13:40$B!A(B 14:00 | C115 | $B9b@E?e052<$G$N9bJ,;RKl$N?eCfMOB8%a%?%sF)2aFC@-(B ($B;38}Bg9)(B) $B!{(B($B@5(B)$BEDCf(B $B0l9((B$B!&(B($B@5(B)$B4nB?(B $B1QIR(B$B!&(B($B%(%s%8%K%"%j%s%0?66=6(2q(B) $B2EG<(B $B9/Fs(B$B!&(B($B@P@nEg8!::7WB,(B) $B23C+(B $BG=;K(B$B!&(B$B?<_7(B $B6/(B | dissolved methane hydraulic pressure silicone rubber
| S-19 | 1038 |
14:00$B!A(B 14:20 | C116 | $B%Q%i%8%&%`Kl$K$h$k?eAGJ,N%$X$N6&B85$BN$N1F6A(B ($BFAEgBg1!(B) $B!{(B($B3X(B)$BD9_@(B $B9(0l(B$B!&(B($B@5(B)$B2CF#(B $B2mM5(B$B!&(B($B3X(B)$B:dED(B $B1YH~(B$B!&(B($B@5(B)$BKY2O(B $B=S1Q(B$B!&(B($B@5(B)$BIZED(B $BB@J?(B | palladium membrane hydrogen separation hydrogen permeation
| S-19 | 171 |
(14:20$B!A(B15:40)$B!!(B($B:BD9(B $B@P@n(B $BE0(B) |
14:20$B!A(B 14:40 | C117 | $BBP8~3H;6(BCVD$BK!$K$h$k?eAGF)2a%7%j%+Kl$N9bF)2aN(2=$HBQG.@-(B ($B%N%j%?%1%+%s%Q%K!<%j%_%F%I(B) $B!{5HLn(B $BBY(B$B!&(B$B0BF#(B $BBYE5(B$B!&(B($B1'ET5\Bg(B) ($B@5(B)$B0KF#(B $BD> | Silica membrane Hydrogen separation Counter diffusion CVD
| S-20 | 6 |
14:40$B!A(B 15:00 | C118 | $B%J%NB?9&@-%A%?%K%"Kl$N:n@=$HEE2r ($B9-Bg1!9)(B) $B!{(B($B3X(B)$B>.@n(B $BOB5W(B$B!&(B($B@5(B)$BETN1(B $BL-N;(B$B!&(B($B@5(B)$B5H2,(B $BJ~5W(B | nanofiltration titania membrane salt retention
| S-19 | 723 |
15:00$B!A(B 15:20 | C119 | CO2$B?FOB@-$rIUM?$7$??75,%+!<%\%sKl$N3+H/$H(BCO2$BJ,N%FC@-(B (RITE) $B!{(B($B@5(B)$B9CHe(B $B>HI'(B$B!&(BChowdhury F. A.$B!&(B($B@5(B)$BIw4V(B $B?-8c(B$B!&(B($B@5(B)$BF#2,(B $BM40l(B | carbon membrane carbon dioxide affinity
| S-20 | 309 |
15:20$B!A(B 15:40 | C120 | $B%j%0%K%sM6F3BN$rA06nBN$H$9$k6bB04^M-C:AGKl$NF)2aJ*@-(B ($B;38}Bg1!M}9)(B) $B!{(B($B3X(B)$BF#Ln(B $B6G@.(B$B!&(B($B@5(B)$B8E2l(B $BCR;R(B$B!&(B($B@5(B)$B?"B<(B $B0l9-(B$B!&(B($B@5(B)$BEDCf(B $B0l9((B$B!&(B($B@5(B)$B4nB?(B $B1QIR(B$B!&(B($B;0=EBg@8J*;q8;(B) ($B@5(B)$BgU2,(B $B@58w(B | Lignin Molecular sieve carbon membrane Gas separation
| S-19 | 470 |
(15:40$B!A(B17:00)$B!!(B($B:BD9(B $B9CHe>HI'(B) |
15:40$B!A(B 16:00 | C121 | PTFE$BB?9&e$G$N%+!<%\%sKl$N:n@=$HJ,N%@-G=$NI>2A(B ($BElBg@88&(B) $B!{(B($B@5(B)$BK>7n(B $BOBGn(B$B!&(B($B@5(B)$BGwED(B $B>O5A(B | carbon membrane microporous membrane pervaporation
| S-20 | 998 |
16:00$B!A(B 16:20 | C122 | MFI$B%<%*%i%$%HKl$N8e=hM}K!$N8!F$(B ($B$B!&(B$B5HNI(B $B2mI'(B$B!&(B$B?9(B $BAo;R(B$B!&(B$BFbED(B $B9-3$(B$B!&(B$BLg4V(B $B7DB@(B | MFI zeolite membrane counter diffusion CVD method High temperature gas separation
| S-20 | 182 |
16:20$B!A(B 16:40 | C123 | PHI$BKl$rMQ$$$??;F)5$2=K!$K$h$kM-5!MOG^$+$i$NC&?e9)Dx$N2=3X%W%m%;%9$X$N1~MQ(B ($BF|Bg9)(B) $B!{(B($B3X(B)$B:,K\(B $BM:B@(B$B!&(B($B6&(B)$B@>=P(B $BMx0l(B$B!&(B($B;:Am8&(B) ($B6&(B)$B0f>e(B $BJ~Li(B$B!&(B($B@5(B)$BD9@%(B $BB?2C;R(B$B!&(B($B@5(B)$BD9C+@n(B $BBY5W(B$B!&(B($B@5(B)$B@6=;(B $B2EF;(B | zeolite membrane pervaporation Esterification
| S-20 | 655 |
16:40$B!A(B 17:00 | C124 | $B%^%$%/%mGH2CG.$K$h$k(BX$B7?%<%*%i%$%HKl$N@=Kl$H?;F)5$2=J,N%(B ($B;38}Bg1!M}9)(B) $B!{(B($B3X(B)$B>>;3(B $BIROB(B$B!&(B($B@5(B)$B?"B<(B $B0l9-(B$B!&(B($B@5(B)$BEDCf(B $B0l9((B$B!&(B($B@5(B)$B4nB?(B $B1QIR(B | pervaporation zeolite membrane
| S-19 | 865 |
D$B2q>l(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 | |
$B%7%s%]%8%&%`(B $B!c%(%M%k%.!<$NI/Gw$r?7$?$J%$%N%Y!<%7%g%s$N%P%M$H$9$k%(%M%k%.!<5;=Q3+H/!d(B |
(9:20$B!A(B10:40)$B!!(B($B:BD9(B $BCf@n9@9T(B) |
9:20$B!A(B 9:40 | D102 | $B%^%$%/%m%?!<%S%s$rMQ$$$?(BDME$B2=3X:F@8H/EE;n83(B ($BAaBgAOB$M}9)(B) $B!{(B($B@5(B)$BCf3@(B $BN4M:(B$B!&(B($BEl$B!&(B$B;3Cf(B $BLp(B$B!&(B($B4X@>EENO(B) $B:4F#(B $B=c0l(B$B!&(B$B:{It(B $BOB9((B$B!&(B$BEOn4(B $B91E5(B | steam reforming endothermic reaction chemical recuperation
| S-36 | 18 |
9:40$B!A(B 10:00 | D103 | $B%"%k%^%$%H?(G^$rMQ$$$?(BCO$B=|5n$K4X$9$k8&5f(B ($BElG@9)Bg9)(B) $B!{(B($B@5(B)$B:y0f(B $B@?(B$B!&(B$B:4!9LZ(B $B9(;R(B$B!&(B($B@5(B)$B55;3(B $B=(M:(B | alumite catalyst CO removal heat exchanger type reactor
| S-36 | 419 |
10:00$B!A(B 10:20 | D104 | $BDLEE2CG.%"%k%^%$%H?(G^$H(BCO2$B5[Ce%W%l!<%H$rMQ$$$?%P%$%*%(%?%N!<%k$+$i$N?eAG@=B$5;=Q$N8&5f3+H/(B ($BElG@9)Bg(B) $B!{(B($B3X(B)$B2OFb(B $B=(4n(B$B!&(B($B3X(B)$Bc7F#(B $BBgM4(B$B!&(B$BM{(B $B3$GH(B$B!&(B($B@5(B)$B]j(B $BMxJv(B$B!&(B($B@5(B)$BD%(B $B{-(B$B!&(B($B@5(B)$B:y0f(B $B@?(B$B!&(B($B@5(B)$B55;3(B $B=(M:(B | bio-ethanol unsteady reforming reaction CO2 adsorption
| S-36 | 783 |
10:20$B!A(B 10:40 | D105 | $B%*%k%=%A%?%s;@%P%j%&%`$rMQ$$$?9g@.%,%9$N(BCO$BG;EY8~>e(B ($BB$B!&(B$B7J;3(B $B7C2p(B$B!&(B$BBkLZ(B $BMN(B$B!&(B$B:dIt(B $B9TM:(B$B!&(B(KRI) ($B@5(B)$B6aF#(B $BK~(B$B!&(B($B@5(B)$B:e0f(B $BFX(B | CO2 adsorbent syngas
| S-36 | 105 |
(10:40$B!A(B12:00)$B!!(B($B:BD9(B $B:y0f(B $B@?(B) |
10:40$B!A(B 11:00 | D106 | $B%^%$%/%mGH2CG.$rMQ$$$?%U%'%N!<%k2A(B ($BL>Bg1!9)(B) $B!{(B($B3X(B)$BH*(B $BFF;K(B$B!&(B($B@5(B)$B7&ED(B $B8w9((B$B!&(B($B@5(B)$B>>ED(B $B?N | microwave activated carbon phenol resin
| S-36 | 116 |
11:00$B!A(B 11:20 | D107 | $B@PC:%,%92=%,%9@:@=5;=Q$N8&5f(B ($B@P@nEgGEKa=E9)6H(B) $B!{(B($B@5(B)$BBg86(B $B9(L@(B$B!&(B($B@5(B)$BCfB<(B $B;j9b(B$B!&(B($B@5(B)$B>>_7(B $B9nL@(B$B!&(B($B@5(B)$B?\ED(B $B=SG7(B | coal gasification tar
| S-36 | 166 |
11:20$B!A(B 11:40 | D108 | $B?eG.Cj=P(B-$B?eG.%,%92=$rMxMQ$7$?3lC:$N9b8zN(E>49%W%m%;%9$N3+H/(B ($B5~Bg4DJ]%;(B) $B!{(B($B@5(B)$BCf@n(B $B9@9T(B$B!&(B($B5~Bg1!9)(B) ($B3X(B)$B?9K\(B $B@5?M(B$B!&(B($B@5(B)$B;01:(B $B9'0l(B | brown coal upgrade hydrothermal gasification
| S-36 | 292 |
11:40$B!A(B 12:00 | D109 | $BJ4KvLZC:$+$iD4@=$5$l$k@.7?C:$NG3>FFC@-$K5Z$\$9%P%$%s%@!<$N1F6A(B ($B;37ABg9)(B) $B!{(B($B3X(B)$BB@ED(B $BNf(B$B!&(B($B@5(B)$BBgC](B $BE/Li(B$B!&(B($B@5(B)$B<58M(B $B>;9-(B | waste wood molded charcoal combustion characteristics
| S-36 | 339 |
(13:00$B!A(B13:40)$B!!(B($B;J2q(B $B:y0f(B $B@?(B) |
13:00$B!A(B 13:40 | D113 | [$BE8K>9V1i(B]$B%5%9%F%J%V%k$J;:6H!& ($B7P:Q;:6H>J(B) $B!{0B1J(B $BM59,(B | energy conservation eco innovation technological innovation
| S-36 | 1146 |
(13:40$B!A(B15:00)$B!!(B($B:BD9(B $B?92<2BBe;R(B) |
13:40$B!A(B 14:00 | D115 | $B%P%$%*%^%9?e>x5$%,%92=$K$*$1$k%A%c!<$rMQ$$$?%"%k%+%j!&%"%k%+%jEZN`6bB0$NJ,N%2s<}(B ($BElBg1!9)(B) $B!{(B($B3X(B)$BOBED(B $BJ~;R(B$B!&(B($B3X(B)$B9-H*(B $B=$(B$B!&(B($BElBg@88&(B) ($B@5(B)$BIz8+(B $B@i?R(B$B!&(B($B@5(B)$BDi(B $BFX;J(B | biomass gasification alkali
| S-36 | 382 |
14:00$B!A(B 14:20 | D116 | $B?e>x5$%,%92=$K$*$1$k(BAAEM$B$N%P%$%*%^%99=@.@.J,$NAj8_:nMQ$X$N1F6A(B ($BElBg1!9)(B) $B!{(B($B3X(B)$B@L(B $B;9;9(B$B!&(B($BElBg@88&(B) ($B@5(B)$BIz8+(B $B@i?R(B$B!&(B($BElBg1!9)(B) ($B3X(B)$BJR;3(B $B?78g(B$B!&(B($BElBg@88&(B) ($B@5(B)$BDi(B $BFX;J(B | biomass AAEM interaction
| S-36 | 805 |
14:20$B!A(B 14:40 | D117 | Biomass gasification integration recuperative gas turbine cycles and recuperative fuel cell integrated gas turbine cycles ($BElBg1!9)(B) $B!{(B($B3X(B)Lover Kristian$B!&(B(NTNU) Ivar Ertesvag$B!&(B($BElBg@88&(B) ($B@5(B)$BDi(B $BFX;J(B | Biomass gasification fuel cell gas turbine
| S-36 | 977 |
14:40$B!A(B 15:00 | D118 | $B%P%$%*%^%9%,%92=$K$*$1$k(BCo/MgO$B?(G^$K$h$k%?!<%k$N?e>x5$2~ ($BElBg1!9)(B) $B!{(B($B3X(B)$B9-H*(B $B=$(B$B!&(B($BElBg@88&(B) ($B@5(B)$BIz8+(B $B@i?R(B$B!&(B($B1'ET5\Bg9)(B) ($B@5(B)$B8E_7(B $B5#(B$B!&(B($B1'ET5\Bg1!9)(B) ($B@5(B)$BNkLZ(B $B>:(B$B!&(B($BElBg@88&(B) ($B@5(B)$BDi(B $BFX;J(B | biomass gasification tar catalyst
| S-36 | 573 |
(15:00$B!A(B16:00)$B!!(B($B:BD9(B $BLnEDNh<#(B) |
15:00$B!A(B 15:20 | D119 | Investigation on the gasification properties of the char derived from livestock manure ($B72GO8)(B) ($B@5(B)Zhang Shouyu$B!&(B$B!{(B($B@5(B)Li Liuyun$B!&(B($B72Bg9)(B) ($BIt(B)$B?92<(B $B2BBe;R(B$B!&(B($BIt(B)$BJuED(B $B63G7(B | livestock manure char gasification
| S-36 | 938 |
15:20$B!A(B 15:40 | D120 | Two-stage Fluidized Bed Gasification of Manure Compost at Low Temperature (Gunma Industry Support Organization) $B!{(B($B@5(B)Xiao Xianbin$B!&(B(Gunma U.) ($B@5(B)Morishita Kayoko$B!&(B($B3X(B)Le Duc Dung$B!&(B($B@5(B)Takarada Takayuki | Compost from livestock manure Two-stage fluidized bed gasification Low temperature
| S-36 | 958 |
15:40$B!A(B 16:00 | D121 | $BC\;:GQ4~J*$N@\?(%,%92=$K$*$1$k@8@.%,%9AH@.$KBP$9$k%,%92=>r7o$N1F6A(B ($B72GO8)(B) $B!{(B($B@5(B)Li Liuyun$B!&(B($B72Bg9)(B) ($BIt(B)$B?92<(B $B2BBe;R(B$B!&(B($BIt(B)$BJuED(B $B63G7(B | fuel gas production livestock waste low temperature
| S-36 | 1000 |
(16:00$B!A(B17:20)$B!!(B($B:BD9(B $BIz8+@i?R(B) |
16:00$B!A(B 16:20 | D122 | Catalytic reforming of tarry material from biomass in Fluidized Bed Gasifer at low temperature ($B72Bg9)(B) $B!{(B($B3X(B)Le Duc Dung$B!&(B($BIt(B)$B?92<(B $B2BBe;R(B$B!&(B($B72GO8)(B) ($B@5(B)Xiao Xianbin$B!&(B($B72Bg9)(B) ($BIt(B)$BJuED(B $B63G7(B | catalyst reforming fluidized bed
| S-36 | 906 |
16:20$B!A(B 16:40 | D123 | $BG4EZ7OGQ4~J*N.F0G^BN$K$h$k%P%$%*%^%9$N?e>x5$%,%92=%W%m%;%9$N9=C[(B ($B72Bg1!(B) $B!{(B($B@5(B)$BLnED(B $BNh<#(B$B!&(B($BElG@9)Bg(BBASE) $BCfB<(B $BE0(B$B!&(B(APEX) $BEDCf(B $BD>(B$B!&(B($BElG@9)Bg(BBASE) ($B@5(B)$BKYHx(B $B@5pW(B | Biomass gasification clay-derived catalyst fluidized bed
| S-36 | 1092 |
16:40$B!A(B 17:00 | D124 | $B7|By?(G^$rMxMQ$7$?7\J5$ND6NW3&?e%,%92=5;=Q$N3+H/(B ($BCf9qEENO(B) $B!{CfB<(B $B><;K(B$B!&(B$B@61J(B $B1Q;L(B$B!&(B$B;3B<(B $B9,@/(B$B!&(B$B@6?e(B $B2E5W(B$B!&(B($B9-Bg(B) ($B@5(B)$B>>B<(B $B9,I'(B$B!&(B($B;:Am8&(B) ($B@5(B)$BH~G;NX(B $BCRO/(B$B!&(B($BElMN9b05(B) $BLnED(B $BMNFs(B | Supercritical water gasification activated carbon catalyst
| S-36 | 1014 |
17:00$B!A(B 17:20 | D125 | $BN.F0AX$rMQ$$$?%j%0%K%s$N@\?(?e>x5$2~ ($B?.=#BgA!0](B) $B!{(B($B3X(B)$BKYIt(B $B989((B$B!&(B$B;3K\(B $BOBHO(B$B!&(B$B2<@n(B $BL@<"(B$B!&(B$BDT(B $B?-2p(B$B!&(B($B@5(B)$B?70f(B $B?FIW(B$B!&(B($B@5(B)$BJ!D9(B $BGn(B$B!&(B($B@5(B)$B9bDM(B $BF)(B | lignin catalytic steam reforming synthetic gas
| S-36 | 1065 |
E$B2q>l(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 | |
$B%7%s%]%8%&%`(B $B!cG3NAEECS!&?7EECS$*$h$S$=$N4XO"5;=Q$N?7E83+!d(B |
(9:00$B!A(B10:00)$B!!(B($B:BD9(B $B8E;3DL5W(B) |
9:00$B!A(B 9:20 | E101 | 1kW$B5i8GBN9bJ,;R7AG3NAEECS$N%9%?%C%/FC@-$*$h$S%(%M%k%.!<<};Y(B ($BC^GHBg%7%9>p(B) $B!{(B($B3X(B)$B>>2<(B $B5ACK(B$B!&(B($B@5(B)$B2,Eg(B $B7I0l(B | PEFC fuel cell stack efficiency
| S-37 | 265 |
9:20$B!A(B 9:40 | E102 | PEFC$B%9%?%C%/$K$*$1$k8N>c1F6AI>2A$N4pACE*8!F$(B ($BC^GHBg%7%9>p(B) $B!{(B($B@5(B)$B2,Eg(B $B7I0l(B$B!&(B($B3X(B)$B>>2<(B $B5ACK(B | PEFC fuel cell stack failure mode
| S-37 | 266 |
9:40$B!A(B 10:00 | E103 | $B8GBN9bJ,;R7A2D5U%;%k$N?eEE2r!&G3NAEECS@-G=$NI>2A(B ($B9b:=G.3X(B) $B!{(B($B@5(B)$B2CF#(B $BFX;K(B$B!&(B($B@5(B)$BA}ED(B $B@5IW(B$B!&(B($B@5(B)$B9b66(B $BFW(B$B!&(B($B%"%?%+Bg5!(B) $B5HED(B $BE/Li(B$B!&(B($B;:Am8&$D$/$P(B) $B0KF#(B $BGn(B$B!&(B($B;:Am8&4X@>(B) $B8^I4B"(B $BJY(B | United Reversible Cell Fuel Cell Oxygen Transfer
| S-37 | 1108 |
(10:00$B!A(B11:00)$B!!(B($B:BD9(B $B0f>e(B $B85(B) |
10:00$B!A(B 10:20 | E104 | $B9bJ,;R%_%/%m9=B$$K4p$E$/G3NAEECSMQ:Y9&%U%#%j%s%0EE2r ($BElBg1!9)(B) $B!{(B($B3X(B)$BK-ED(B $B>-J?(B$B!&(B($B3X(B)$B86(B $B?-@8(B$B!&(B($BEl9)Bg;q8;8&(B) ($B@5(B)$B0KF#(B $BBgCN(B$B!&(B($BEl9)Bg;q8;8&!&ElBg1!9)(B) ($B@5(B)$B;38}(B $BLT1{(B | polymer electrolyte membrane fuel cells pore-filling electrolyte membrane micro phase separated structure
| S-37 | 828 |
10:20$B!A(B 10:40 | E105 | PEFC$BMQ%-%c%C%T%s%0EE2r ($BElBg1!9)(B) $B!{(B($B3X(B)$BF#0f(B $B7$B!&(B($B3X(B)$BM{(B $BClL@(B$B!&(B($BEl9)Bg;q8;8&(B) ($B@5(B)$B0KF#(B $BBgCN(B$B!&(B($BEl9)Bg;q8;8&!&ElBg1!9)(B) ($B@5(B)$B;38}(B $BLT1{(B | PEFC capping nano-interface
| S-37 | 854 |
10:40$B!A(B 11:00 | E106 | Nafion$B$rMQ$$$?%-%c%C%T%s%0EE2r2A(B ($BElBg1!9)(B) $B!{(B($B3X(B)$BM{(B $BClL@(B$B!&(B($BEl9)Bg;q8;8&(B) ($B@5(B)$B0KF#(B $BBgCN(B$B!&(B($BEl9)Bg;q8;8&!&ElBg1!9)(B) ($B@5(B)$B;38}(B $BLT1{(B | Fuel Cells Proton conductor nano particles
| S-37 | 887 |
(11:00$B!A(B12:00)$B!!(B($B;J2q(B $BCf@n?B9%(B) |
11:00$B!A(B 12:00 | E107 | [$BE8K>9V1i(B]$B!!C:AG:`NA$K$h$kHsGr6b%+%=!<%I?(G^$X$ND)@o(B ($B72Bg1!9)(B) $B!{(B($B@5(B)$BHx:j(B $B=c0l(B | carbon electrode catalyst non platinum
| S-37 | 1104 |
(13:00$B!A(B14:00)$B!!(B($B:BD9(B $B2,Eg7I0l(B) |
13:00$B!A(B 13:20 | E113 | PEFC$BMQC:AGC4;}(BPt$B?(G^$N%7%j%+HoJ$$K$h$k(BPt$BMO=PBQ@-$N8~>e(B ($B6eBg1!9)(B) $B!{>>?9(B $BM5;K(B$B!&(B($B@5(B)$BCf@n(B $B7I;0(B$B!&(B($B@5(B)$B>>:,(B $B1Q$B!&(B($B@5(B)$BC]Cf(B $BAT(B$B!&(B($B@5(B)$B4_ED(B $B>;9@(B | PEMFC cathode catalyst dissolution of Pt silica-coated Pt supported carbon
| S-37 | 936 |
13:20$B!A(B 13:40 | E114 | PEFC$BMQC:AGC4;}(BPt$B?(G^$N%7%j%+HoJ$$K$h$k(BCO$BHoFGBQ@-$N8~>e(B ($B6eBg1!9)(B) $B!{M-2H(B $BN4J8(B$B!&(B($B3X(B)$B2OEg(B $B7r<#(B$B!&(B($B@5(B)$BCf@n(B $B7I;0(B$B!&(B($B@5(B)$B>>:,(B $B1Q$B!&(B($B@5(B)$BC]Cf(B $BAT(B$B!&(B($B@5(B)$B4_ED(B $B>;9@(B | PEFC carbon-supported Pt catalysts coverage of Pt catalysts with silica
| S-37 | 940 |
13:40$B!A(B 14:00 | E115 | PEFC$B%+%=!<%IGr6b?(G^>e;@AGAX7A@.5!9=$N2rL@(B ($BElBg1!(B) $B!{(B($B3X(B)$B@P@n(B $B=a(B$B!&(B($BEl9)Bg1!(B) ($B@5(B)$B0KF#(B $BBgCN(B$B!&(B($BElBg1!(B) ($B@5(B)$B;38}(B $BLT1{(B | polymer electrolyte fuel cell oxygen layer
| S-37 | 108 |
(14:00$B!A(B15:00)$B!!(B($B:BD9(B $B;38}LT1{(B) |
14:00$B!A(B 14:20 | E116 | $B;0 ($BElKLBg9)(B) $B!{(B($B@5(B)$B8E;3(B $BDL5W(B$B!&(B$BI~It(B $BC#:H(B$B!&(B$B>b(B $B7EJv(B$B!&(BSahnoun Riadh$B!&(B($B@5(B)$BDZ0f(B $B=(9T(B$B!&(B($B@5(B)$BH+;3(B $BK>(B$B!&(B($B@5(B)$B1sF#(B $BL@(B$B!&(B($B@5(B)$B9b1)(B $BMN=<(B$B!&(B($B@5(B)$B5WJ](B $BI4;J(B$B!&(BDel Carpio Carlos$B!&(B($BElKLBgL$Mh%;(B/$BElKLBg9)(B) ($B@5(B)$B5\K\(B $BL@(B | Porous Structure Simulator Porous Electrode Optimization
| S-37 | 76 |
14:20$B!A(B 14:40 | E117 | $BIT6Q0l6u7d9=B$$r9MN8$7$?(BPEFC$B3H;6AXFb$NFsAjN.2r@O(B ($B6eBg9)(B) $B!{(B($B@5(B)$B0f>e(B $B85(B$B!&(B($B3X(B)$B5H85(B $B5.;V(B$B!&(B($B@5(B)$B>>7((B $BMN2p(B$B!&(B($B@5(B)$BJw85(B $B2m | PEFC flooding gas diffusion layer
| S-37 | 867 |
14:40$B!A(B 15:00 | E118 | $B%9%i%j! ($B%N%j%?%1%+%s%Q%K!<%j%_%F%I(B) $B0KF#(B $B@?(B$B!&(B$B!{5H@n(B $BBg;N(B$B!&(B$B0BF#(B $BBYE5(B$B!&(B$BED8}(B $B5WIY(B | gas diffusion layer Electroconductive Polymer carbon fiber
| S-37 | 295 |
(15:00$B!A(B16:00)$B!!(B($B:BD9(B $BBgM'=g0lO:(B) |
15:00$B!A(B 15:20 | E119 | DMFC$B%"%N!<%I$N?(G^AX9=B$$HH?1~AG2aDx(B ($B?.=#BgA!0](B) $B!{(B($B3X(B)$B3wC+(B $BM*J?(B$B!&(B$B9bM|(B $BM:B@(B$B!&(B($B@5(B)$B?70f(B $B?FIW(B$B!&(B($B@5(B)$BJ!D9(B $BGn(B$B!&(B($B@5(B)$B9bDM(B $BF)(B$B!&(B($BElBg(B) ($B@5(B)$B;3ED(B $B6=0l(B | Direct Methanol Fuel Cell mercury porosimeter AC impedance
| S-37 | 1077 |
15:20$B!A(B 15:40 | E120 | $B%+!<%\%s%J%N%U%!%$%P! ($B72Bg1!(B) $B!{(B($B3X(B)$B2,ED(B $B>-6F(B$B!&(B$B:0ED(B $BM4M}(B$B!&(B($B@5(B)$BCfN$(B $BJY(B$B!&(B($B@5(B)$BLnED(B $BNh<#(B$B!&(B($B@5(B)$BCf@n(B $B?B9%(B | DMFC carbon nanofiber electrode structure
| S-37 | 418 |
15:40$B!A(B 16:00 | E121 | THE ROLE OF CARBON DIOXIDE LAYER PREPARED BY A POROUS CARBON PLATE IN A PASSIVE DMFC AS A MASS TRANSPORT BARRIER ($B72Bg1!(B) $B!{(B($B3X(B)Abdelkareem Mohammad$B!&(B($B@5(B)$BCf@n(B $B?B9%(B | DMFC mass transport porous carbon plate
| S-37 | 411 |
(16:00$B!A(B16:40)$B!!(B($B:BD9(B $BJ!D9(B $BGn(B) |
16:00$B!A(B 16:20 | E122 | DMFC$B$N$?$a$N9bL)EYNe5/8w$K$*$kI=LL2~2A(B ($B@EBg9)(B) $B!{(B($B3X(B)$BDT(B $B42(B$B!&(B$BHx4X(B $B>M(B$B!&(B($B@5(B)$B?\F#(B $B2mIW(B | DMFC Nafion Electron beam
| S-37 | 210 |
16:20$B!A(B 16:40 | E123 | $BCf29:nF0D>@\%(%?%N!<%k7AG3NAEECS$N%"%N!<%I?(G^$N9g@.$HEE6KH?1~FC@-(B ($B9)3X1!Bg1!9)(B) $B!{(B($B3X(B)$B2CF#(B $BGn9T(B$B!&(B($BElBg1!?7NN0h(B) ($B@5(B)$BBgM'(B $B=g0lO:(B$B!&(B($B@5(B)$BBgEg(B $B5A?M(B$B!&(B($B9)3X1!Bg9)(B) ($B@5(B)$BD9K\(B $B1Q=S(B | direct ethanol fuel cell intermediate temperature anode catalyst
| S-37 | 399 |
F$B2q>l(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 | |
$B%7%s%]%8%&%`(B $B!cG.9)3X%7%s%]%8%&%`!d(B |
(9:00$B!A(B10:40)$B!!(B($B:BD9(B $B;3K\(B $B9d(B) |
9:00$B!A(B 9:20 | F101 | $BH?1~G.NL7W$rMQ$$$?(BLiBr$B?eMO1U$NHfG.(B ($BH,8M9)Bg(B) $B!{(B($B3X(B)$BLnKY(B $B@2$B!&(B($B@5(B)$B9b66(B $B?8(B$B!&(B$BGr@P(B $BBY(B$B!&(B($B@5(B)$BLnED(B $B1QI'(B | absorption refrigeration working liquid specific heat
| S-14 | 800 |
9:20$B!A(B 9:40 | F102 | $B>uBVJ}Dx<0$K$h$k%U%l%*%s:.9gNdG^$N@_7W(B ($BK!@/Bg1!(B) $B!{(B($B3X(B)$B9uLZ(B $BM}Bg(B$B!&(B($BK!@/Bg(B) ($B@5(B)$B@>3$(B $B1QM:(B | EoS C.O.P refrigerant
| S-14 | 808 |
9:40$B!A(B 10:00 | F103 | 2$B?'(BLIF$B$N51EYI>2A$K$h$k1UAjFb29EY>l7WB,(B ($BIY;3Bg9)(B) ($B@5(B)$B;3:,(B $B3Y;V(B$B!&(B$B!{NkLZ(B $BD>$B!&(B$BIYED(B $BM4B$(B$B!&(B($B@5(B)$B5HED(B $B@5F;(B | Temperature measurement Laser Induced Fluorescence Visualization
| S-14 | 436 |
10:00$B!A(B 10:20 | F104 | $B?M9)GYMQG.8r494o$K$*$1$kFsAjN.$H?6F0$N8z2L(B ($B@EBg(B) $B!{(B($B3X(B)$B5WJ];3(B $B>4Li(B$B!&(B($B@5(B)$BLZB<(B $B85I'(B$B!&(B($B@5(B)$BBg66(B $BOB5A(B | heat exchanger vibration two phase flow
| S-14 | 914 |
10:20$B!A(B 10:40 | F105 | $B%^%$%/%mGH>Hl$K$*$1$k%J%NIC;~4VJ,2r7V8w0[J}@-$NB,Dj(B ($BL>Bg1!9)(B) $B?$B!&(B($B6bBtBg<+A38&(B) $B1JC+(B $B=(B@O:(B$B!&(B$B>.@>(B $B0&(B$B!&(B$B!{Hf9>Eh(B $BM42p(B$B!&(B($B@5(B)$B9b66(B $B7{;J(B | microwave anisotropy
| S-14 | 870 |
(10:40$B!A(B12:00)$B!!(B($B:BD9(B $B0$AIC+Mx8w(B) |
10:40$B!A(B 11:00 | F106 | W/O$BF}2=G3NAE)$N%_%/%mGzH/5sF0$K5Z$\$92CG.>r7o$N1F6A(B ($B9bCN9)Bg(B) $B!{(B($B3X(B)$B>>2,(B $B98(B$B!&(B($B3X(B)$BKLB<(B $BM4$B!&(B$Bc7F#(B $BM5?M(B$B!&(B$B@P86(B $B?5(B$B!&(B($B@5(B)$BN>3Q(B $B?NIW(B$B!&(B($B%(%L%(%U%8!<(B) $BK\4V(B $B5AO/(B | W/O emulsified fuel micro explosion heating condition
| S-14 | 699 |
11:00$B!A(B 11:20 | F107 | $BG3NA2aG;>r7o$K$*$1$k(BDME$BItJ,M=:.9gG3>F$K4X$9$k8&5f(B ($BL>Bg9)(B) $B!{(B($B3X(B)$B2Li(B$B!&(B($B3X(B)$BKYED(B $B9@?-(B$B!&(B($BL>Bg%(%3%H%T%"(B) ($B@5(B)$BKQ(B $B3$MN(B$B!&(B($B6&(B)$B5WJ](B $B5.(B$B!&(B($B@5(B)$B>.Eg(B $B5A90(B$B!&(B($B6&(B)$BD9C+@n(B $BK-(B$B!&(B($B@5(B)$BKL@n(B $BK.9T(B | DME Fuel-rich combustion Gas turbine
| S-14 | 900 |
11:20$B!A(B 11:40 | F108 | $B%a%?%s;@AGIY2=3H;6G3>F$K$*$1$k(BNO$B!"(BNO2$B$N@8@.NL$H;@AGG;EY$H$NAj4X(B ($B0&9)Bg9)(B) $B!{(B($B3X(B)$Bc7F#(B $B>4(B$B!&(B($BL>Bg(B) ($B@5(B)$B>.NS(B $B7I9,(B$B!&(B($B0&9)Bg9)(B) ($B@5(B)$B2MC+(B $B>;?.(B | Oxygen Combustion NOx
| S-14 | 185 |
11:40$B!A(B 12:00 | F109 | $B%@%V%k%W%m!<%VK!$K$h$kBg5$05;@AGG3>F%W%i%:%^$NEE;RJ*@-I>2A(B ($BL>Bg1!9)(B) $B!{(B($B3X(B)$BBg:d(B $BPR8c(B$B!&(B($BL>Bg%(%3%H%T%"(B) ($B@5(B)$B>.NS(B $B7I9,(B$B!&(B$BBgLn(B $BE/Lw(B$B!&(B($B0&9)Bg9)(B) $B9bB<(B $B=(0l(B$B!&(B($B6bBtBg<+A3(B) $BEDCf(B $B9/5,(B$B!&(B$B>e?y(B $B4nI'(B | oxy-combustion atmospheric pressure plasma RF inductive heat
| S-14 | 138 |
(13:00$B!A(B14:20)$B!!(B($B:BD9(B $B2,LnBYB'(B) |
13:00$B!A(B 13:20 | F113 | $B%,%92=H?1~?J9TCf$K$*$1$kHy;k9=B$$r9MN8$7$?%3!<%/%9?tCM:`NA;n83(B ($BElKLBg1!9)(B) $B!{(B($B3X(B)$B>e2,(B $B7rB@(B$B!&(B($B3X(B)$BNS:j(B $B=(9,(B$B!&(B($B@5(B)$B>>2<(B $BMN2p(B$B!&(B($B@5(B)$B@DLZ(B $B=(G7(B$B!&(B($B@5(B)$B;01:(B $BN4Mx(B$B!&(B($B?7F|oD(B) ($B@5(B)$BJ!ED(B $B9L0l(B$B!&(B($B4X@>G.2=3X(B) ($B@5(B)$B>>J?(B $B42;J(B | Multiscale simulation Gasification reaction Coke strength
| S-14 | 583 |
13:20$B!A(B 13:40 | F114 | $B%3!<%/%9O'AuC:2aDx$K$*$1$kH/@8%,%9NL$K4X$9$k?tCM2r@O(B ($BElKLBg1!9)(B) $B!{(B($B3X(B)$B8FOB(B $BEsNO(B$B!&(B($B@5(B)$B>>2<(B $BMN2p(B$B!&(B($B@5(B)$B@DLZ(B $B=(G7(B$B!&(B($B@5(B)$B;01:(B $BN4Mx(B | coal charge gas yield numerical analysis
| S-14 | 608 |
13:40$B!A(B 14:00 | F115 | $BD6NW3&Fs;@2=C:AG$rMQ$$$?G.%5%$%U%)%sFb$NEAG.FC@-(B ($B;37ABg1!M}9)(B) $B!{(B($B3X(B)$BBgM'(B $BM%(B$B!&(B($B;37ABg9)(B) ($B@5(B)$BLg3p(B $B=($B!&(B($B@5(B)$B86ED(B $B1QFs(B$B!&(B($B@5(B)$B7*;3(B $B2mJ8(B | Supercritical Carbon Dioxide
| S-14 | 100 |
14:00$B!A(B 14:20 | F116 | $B%U%m!<7?%^%$%/%mGH2=3XH?1~AuCV$N3+H/(B ($B%^%$%/%m2=3X%W%m%;%9(B) $B!{(B($B@5(B)$B>>_7(B $B8w9((B$B!&(B($BF|N)5!3#8&(B) ($B@5(B)$BIY3_(B $B@9E5(B$B!&(B($B5~Bg9)(B) ($B@5(B)$BD9C+It(B $B?-<#(B | Microwave Flow processing Chemical reactor
| S-14 | 675 |
(14:20$B!A(B15:40)$B!!(B($B:BD9(B $B>>2 |
14:20$B!A(B 14:40 | F117 | $BD6C;%Q%k%9%l!<%6!<$N%9%]%C%H>H ($B5~Bg9)(B) $B!{(B($B3X(B)$B9b;3(B $B1Q=S(B$B!&(B($B@5(B)$B4];3(B $BIRO/(B | heat conduction ultrashort laser laser processing
| S-14 | 644 |
14:40$B!A(B 15:00 | F118 | $B%/%i%C%AMQ<><0%Z!<%Q! ($B%(%U!&%7!-IR(B$B!&(B$B86(B $B9@$B!&(B$B:4!9LZ(B $BG&(B$B!&(B$B1|0f(B $B0lG7(B$B!&(B($B@EBg(B) ($B3X(B)$B@DLZ(B $BM&M4(B$B!&(B($B@EBgAO2J1!(B) ($B@5(B)$B2,Ln(B $BBYB'(B | Simulation heat transfer wet clutch
| S-14 | 577 |
15:00$B!A(B 15:20 | F119 | $BH>5eMF4oFb<+A3BPN.$N<'>l0u2C8z2L(B ($B6eBg9)(B) $B!{(B($B@5(B)$B6bED(B $B>;G7(B$B!&(B($B$B!&(B($B;37ABg9)(B) ($B@5(B)$B@V>>(B $B@5?M(B$B!&(B($B6eBg9)(B) ($B@5(B)$B?<0f(B $B=a(B | Magnetizing force natural convection hemisphere
| S-14 | 860 |
15:20$B!A(B 15:40 | F120 | FZ$BFb29EY:9!&G;EY:9%^%i%s%4%KBPN.$K4X$9$k(B3$B ($B@EBg1!(B) $B!{(B($B3X(B)$BJ?ED(B $BK.9I(B$B!&(B($B@EBg9)(B) $B@PED(B $BFX;R(B$B!&(B($B@EBgAO2J1!(B) ($B@5(B)$B2,Ln(B $BBYB'(B | Numerical simulation Marangoni convection Floating-zone method
| S-14 | 556 |
(16:00$B!A(B16:40)$B!!(B($B:BD9(B $B>.NS7I9,(B) |
16:00$B!A(B 16:20 | F122 | $BIwGH5$1U3&LL$rDL$7$F$NG.M"AwNL$NI>2A(B ($B5~Bg1!(B) $B!{(B($B3X(B)$BBgDZ(B $B<~J?(B$B!&(B$BH>ED(B $BOBBg(B$B!&(B($B5~Bg9)(B) ($B@5(B)$B>.?9(B $B8g(B | Heat Transfer Shear Flow Air-Water Interface
| S-14 | 884 |
16:20$B!A(B 16:40 | F123 | $BHyJ4C:G3>F>l$K$*$1$kmU ($B=P8w%(%s%8%K%"%j%s%0(B) $B!{(B($B@5(B)$B0$AIC+(B $BMx8w(B$B!&(B($B=P8w6=;:(B) ($B@5(B)$B;32<(B $B5|(B$B!&(B($BG3>FN.BN8&(B) ($B@5(B)$BIY1J(B $B9@>O(B$B!&(B($BL>Bg1!(B) ($B@5(B)$BHDC+(B $B5A5*(B$B!&(B($BL>BgL>M@65!(B | coal-combustion radiation simulation
| S-14 | 75 |
(16:40$B!A(B17:40)$B!!(B($B;J2q(B $BHDC+5A5*(BE$BCf@nFsI'(BE$B?<0f(B $B=a(B) |
16:40$B!A(B 17:40 | _ |
G$B2q>l(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 | |
$B%7%s%]%8%&%`(B $B!c5$K"EcA`:n$N%$%N%Y!<%7%g%s$rL\;X$7$F(B $B5$K"1?F0$N2r@O!"%^%$%/%m%P%V%k$*$h$S@8J*2=3XA`:n$N1~MQ$J$I!d(B |
(9:00$B!A(B10:00)$B!!(B($B:BD9(B $BB@ED8w9@(B) |
9:00$B!A(B 9:20 | G101 | $B@E;_$7$?%^%$%/%m%P%V%k$NMO2r$*$h$S<}=L(B ($B7DXfBgM}9)(B) $B!{(B($B3X(B)$B:4F#(B $B$f$jF`(B$B!&(B($B@5(B)$B;{:d(B $B9(0l(B$B!&(B($B@5(B)$B>.NS(B $BBgM4(B | Microbubble Gas absorption Shrinkage
| S-32 | 53 |
9:20$B!A(B 9:40 | G102 | $B>.7?%^%$%/%m%P%V%kH/@8AuCV7A>u$,@-G=$K5Z$\$91F6A(B ($BBgF19)Bg9)(B) ($B@5(B)$B>>1:(B $B>OM5(B$B!&(B$B!{(B($B3X(B)$BHx4X(B $BNII'(B$B!&(B$B:dED(B $B@58w(B | Micro-Bubble Generator
| S-32 | 857 |
9:40$B!A(B 10:00 | G103 | $B%^%$%/%m%P%V%kFC@-$K5Z$\$9H/@8J}<0$N1F6A(B ($B?)Am8&(B) $B!{(B($B@5(B)$B5v(B $B@2W^(B$B!&(B$BDGL>(B $BIpIW(B$B!&(B$BCfB<(B $B@k5.(B$B!&(B($BC^GHBg1!(B) ($B@5(B)$BCfEh(B $B8wIR(B | microbubble generation size distribution
| S-32 | 290 |
(10:00$B!A(B11:00)$B!!(B($B:BD9(B $B5\86IRO:(B) |
10:00$B!A(B 10:20 | G104 | $BL}AjCf$K$*$1$k%9%A!<%`%P%V%k$ND>@\@\?(6E=L$K$h$k%^%$%/%m%I%m%C%W$N@8@.(B ($B7DXfBgM}9)(B) $B!{(B($B3X(B)$B8MED(B $BM$(B$B!&(B($B@5(B)$B;{:d(B $B9(0l(B$B!&(B($B@5(B)$B>.NS(B $BBgM4(B | Microdroplet Microbubble W/O emulsion
| S-32 | 175 |
10:20$B!A(B 10:40 | G105 | $B%^%$%/%m%P%V%k$K$h$k1UAjCf$K7|By$7$?;@2=E4HyN3;R$NJ,N%(B ($B7DXfBgM}9)(B) $B!{(B($B3X(B)$B@DLZ(B $B=Y(B$B!&(B($B@5(B)$B;{:d(B $B9(0l(B$B!&(B($B@5(B)$B>.NS(B $BBgM4(B | Microbubble Flotation Iron oxide
| S-32 | 173 |
10:40$B!A(B 11:00 | G106 | $B?e9=B$$H?"J*:YK&Kl$KBP$9$k%-%;%N%s%,%9$N1F6A(B ($BJ<8K8)Bg1!@8L?M}3X(B) $B!{(B($B@5(B)$B4dED(B $BOB2B(B$B!&(B($B@]FnBgLt(B) $B:4Ln(B $BMN(B | xenon water nano-bubbles cell membrane
| S-32 | 478 |
(11:00$B!A(B12:00)$B!!(B($B:BD9(B $B;{:d9(0l(B) |
11:00$B!A(B 11:20 | G107 | Raschig ring$B= ($B2,;3M}Bg9)(B) $B!{(B($B@5(B)$B5\86(B $BIRO:(B$B!&(B$B1JC+(B $B>05*(B$B!&(B$BCSED(B $BN<(B$B!&(B$B>>ED(B $B??0a(B$B!&(B$BLpIt(B $B$B!&(B$B;3K\(B $BBY;N(B$B!&(B$BEOn4(B $BM5J?(B | bubble splitting micro bubble upper limit function
| S-32 | 254 |
11:20$B!A(B 11:40 | G108 | $B05NO?6F0>l$K@_CV$5$l$?C10lHy>.5$K"<~$j$NHs%K%e!<%H%sN.F02r@O(B ($BL>9)Bg(B) $B!{(B($B3X(B)$B9bEg(B $BE0(B$B!&(B($B3X(B)$BFbED(B $B?.8g(B$B!&(B($B@5(B)$B4dED(B $B=$0l(B$B!&(B($B@5(B)$B?9(B $B=( | Removing bubble Non-Newtonian Pressure-oscillation
| S-32 | 911 |
11:40$B!A(B 12:00 | G109 | Shear-thinning$BN.BNCf$r>e>:$9$k1UE)$N1?F0FC@-(B ($B<$B!&(B($B@5(B)$BB@ED(B $B8w9@(B$B!&(B($B@5(B)$B5HED(B $BK-(B | Shear-thinning fluid Modified dimensionless numbers Drop rise motion
| S-32 | 698 |
(13:00$B!A(B13:40)$B!!(B($B;J2q(B $BC]ED(B $B9((B) |
13:00$B!A(B 13:40 | G113 | [$BE8K>9V1i(B]$B;~4VJ?6Q$5$l$?(BNavier-Stokes$B<0$*$h$S%a%+%K%+%k%(%M%k%.!<%P%i%s%9<0$K4p$E$/5$1U:.AjN.F0$N354Q(B ($B:eBg9)(B) $B!{(B($B@5(B)$B>e;3(B $B0T0l(B | Research review Bubble column Gas-liquid flow
| S-32 | 1115 |
(13:40$B!A(B14:40)$B!!(B($B:BD9(B $B2O1[44CK(B) |
13:40$B!A(B 14:00 | G115 | $BC1=cQrCG>lCf$K$*$1$k1UE)<+M31?F0FC@-(B ($B<$B!&(B($B@5(B)$BB@ED(B $B8w9@(B$B!&(B($B@5(B)$B5HED(B $BK-(B | Shear flow Drop free motion Lift force
| S-32 | 690 |
14:00$B!A(B 14:20 | G116 | $BG4CF@-N.BNCf$r>e>:$9$k5$K"!&1UE)1?F0$NAj;w@-(B ($B<.Ln;{(B $B7L(B$B!&(B($B@5(B)$BB@ED(B $B8w9@(B$B!&(B($B@5(B)$B5HED(B $BK-(B$B!&(B(Florida State U.) Sussman M. | Viscoelastic fluid Bubble/drop rise motion Similarity dynamics
| S-32 | 693 |
14:20$B!A(B 14:40 | G117 | $BG4@-N.BNCf$r>e>:$9$k1UE)1?F0$X$NFsN.BNG4EY$N1F6A(B ($B<$B!&(B($B@5(B)$BB@ED(B $B8w9@(B$B!&(B($B@5(B)$B5HED(B $BK-(B | Drop rise motion Viscosity ratio Numerical analysis
| S-32 | 696 |
(15:00$B!A(B16:00)$B!!(B($B:BD9(B $B5HK\(B $B@?(B) |
15:00$B!A(B 15:20 | G119 | $B5$K"Ec=[4DN.F0>uBV$K$*$1$k1?F0%(%M%k%.!<<};Y(B ($B:eBg1!(B) $B!{(B($B@5(B)$B>e;3(B $B0T0l(B | $B%a%+%K%+%k%(%M%k%.!<%P%i%s%9(B $B;60o%(%M%k%.!<(B $BMpN.3H;6(B
| S-32 | 240 |
15:20$B!A(B 15:40 | G120 | $B3&LL3h@-:^:.F~$K$h$j@8$8$k5$1U4VAj8_43>D$NJQ2=(B ($B@EBg1!(B) $B!{(B($B3X(B)$B?9@n(B $B9/0l(B$B!&(B($B3X(B)$B1'ET5\(B $B@iGn(B$B!&(B($B3X(B)$B1:Ln(B $BHK9,(B$B!&(B($B@EBg9)(B) ($B@5(B)$B??ED(B $B=SG7(B$B!&(B($B@EBg1!(B) ($B@5(B)$Bc7F#(B $BN4G7(B | Bubble-liquid interaction Surfactant PIV
| S-32 | 830 |
15:40$B!A(B 16:00 | G121 | U-$B%A%e!<%V>t?e%*%>%s=hM}AuCV$K$*$1$kFb4I$N5$K"FC@-(B ($B4X@>Bg(B) $B!{(B($B3X(B)$B;3ED(B $BNK(B$B!&(B$B0KEl(B $BOBLi(B$B!&(B($B@5(B)$B<<;3(B $B>!I'(B | Bubble column dispersion property U-tube-reactor
| S-32 | 758 |
(16:00$B!A(B17:00)$B!!(B($B:BD9(B $B<<;3>!I'(B) |
16:00$B!A(B 16:20 | G122 | $B5$K"Ec$K$*$1$kH/K"@)8f(B ($B?73cBg9)(B) $B!{(B($B3X(B)$BK\4V(B $BAo(B$B!&(B($B3X(B)$B>.F|8~(B $BIwB@(B$B!&(B($B@5(B)$B5HED(B $B2mE5(B$B!&(B($B?73cBg<+A38&(B) ($B@5(B)$B;3:](B $BOBL@(B$B!&(B($B?73cBg9)(B) ($B@5(B)$BBg@n(B $B51(B | Mechanical foam-breaker Bubble column Foam control
| S-32 | 928 |
16:20$B!A(B 16:40 | G123 | $B%(%"%j%U%H7?5$K"EcFb$K7|By$5$;$?9ZAGIuF~%j%]%=!<%`$N0BDj@-$K5Z$\$95$1UN.F0$N1F6A(B ($B;38}Bg1!0e(B) $B!{(B($B@5(B)$B5HK\(B $B@?(B$B!&(B($B3X(B)$B:eK\(B $B1QG7(B$B!&(B($B;38}Bg1!M}9)(B) ($B@5(B)$BJ!1J(B $B8x$B!&(B($B;38}Bg(B) ($B@5(B)$BCfHx(B $B>!Ui(B | External loop airlift Enzyme-containing liposome Membrane stability
| S-32 | 204 |
16:40$B!A(B 17:00 | G124 | $B5$K"Ec$GG]M\$7$?(BAgaricus blazei$B6];eBN$NBe ($BF`NI9b@l(B) $B!{(B($B@5(B)$B2O1[(B $B44CK(B$B!&(B$B9b@%(B $BFA;R(B$B!&(B($B4X@>2=3X(B) ($B@5(B)$BLnED(B $B=(IW(B | Bubble column Submerged culture Agaricus blazei
| S-32 | 70 |
H$B2q>l(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 | |
$B%7%s%]%8%&%`(B $B!c>=@O9)3X$r4pHW$H$7$?9bIJ=AO@=$X$N?7D,N.!d(B |
(9:00$B!A(B9:40)$B!!(B($B:BD9(B $BBl;3Gn;V(B) |
9:00$B!A(B 9:20 | H101 | $B%[%9%H7k>=Fb%"%_%N%Y%s%<%s%9%k%[%s;@G[8~@)8f$K$h$k%j%s8wH/8w7k>=$NAO@=(B ($B4d$B!&(B$B6bK\(B $B??;R(B$B!&(B($B4d.@n(B $B70(B$B!&(B($B4d$B!&(B($B@5(B)$B2#ED(B $B@/>=(B$B!&(B($B@5(B)$B@6?e(B $B7r;J(B | Luminescent Characteristic Phosphorescence Organic/Inorganic Complex Crystal
| S-8 | 36 |
9:20$B!A(B 9:40 | H102 | $BD@EBK!$K$h$k@D?'7V8wBN@8@.$K$*$1$k%f!<%m%T%&%`I=LL%I!<%W$N:GE,2=(B ($BAaBg1!M}9)(B) $B!{(B($B3X(B)$B@uED(B $B2B@2(B$B!&(B($B3X(B)$BC*66(B $B>$B!&(B$BJ?NI(B $BCN(B$B!&(B($B@5(B)$BJ?Bt(B $B@t(B | blue phosphor precipitation gradient material
| S-8 | 157 |
(9:40$B!A(B10:20)$B!!(B($B:BD9(B $BKLB<8w9'(B) |
9:40$B!A(B 10:00 | H103 | $B%H%j%"%7%k%0%j%;%m!<%k$N7k>=2=$K5Z$\$905NO$N1F6A(B ($BJ!;3Bg@8L?9)(B) $B!{(B($B@5(B)$B;3K\(B $B1QFs(B$B!&(B($B@5(B)$B@PK\(B $BM50l(B$B!&(B($B@5(B)$B0BIt(B $B?-9((B$B!&(B($B@5(B)$B>>0f(B $B4tH~(B$B!&(B($B@5(B)$BBO(B$B!&(B($B@5(B)$B9b66(B $B=S2p(B | crystallization pressure triacylglycerol
| S-8 | 1043 |
10:00$B!A(B 10:20 | H104 | $B>=@O9)3X$KN)5S$7$?GS?eCf$N1"%$%*%s$N2s<}!&;q8;2=$N?7E83+(B ($BAaBg(B) $B!{(B($B@5(B)$BJ?Bt(B $B@t(B | Environmental Crystallization Anion Recovery Wastewater Treatment
| S-8 | 187 |
(10:20$B!A(B11:00)$B!!(B($B:BD9(B $B8^==Mr9,0l(B) |
10:20$B!A(B 10:40 | H105 | $B7|By>=@O$K$*$1$k6E=8N3;R$NKaLW!"GK2u%a%+%K%:%`$N2rL@(B ($BJ<8K8)Bg1!(B) $B!{(B($B@5(B)$BD+7'(B $BM52p(B$B!&(B($B3X(B)$B;{Eg(B $BCN?-(B$B!&(B($B3X(B)$BK\ED(B $B9bBg(B$B!&(B($B@5(B)$BA0ED(B $B8w<#(B$B!&(B($B%/%j%9%?%k%(%s%8%K%"%j%s%0(B) ($B@5(B)$B;0LZ(B $B=(M:(B$B!&(B($BJ<8K8)Bg1!(B) ($B@5(B)$BJ!0f(B $B7<2p(B | MSMPR secondary nucleation Microhardness
| S-8 | 93 |
10:40$B!A(B 11:00 | H106 | $BD@ECK!$K$h$k(BPDP$BMQ@V?'7V8wBN@8@.$K$*$1$k(BpH$BD4@0:^$H>F@.>r7o$N1F6A(B ($BAaBg1!M}9)(B) $B!{(B($B3X(B)$BC*66(B $B>$B!&(B$BCS86(B $BM??M(B$B!&(B$B0f>e(B $B449/(B$B!&(B($B@5(B)$BJ?Bt(B $B@t(B | red phosphor precipitation calcination
| S-8 | 156 |
(11:00$B!A(B11:40)$B!!(B($B:BD9(B $BJ?Bt(B $B@t(B) |
11:00$B!A(B 11:20 | H107 | $BHy>.1UE)IbMHAuCV$rMQ$$$?7k>=@.D92aDx$N4Q;!(B ($B72Bg9)(B) $B@n86(B $BMN;V(B$B!&(B($B72Bg1!9)(B) $B!{(B($B@5(B)$B86Ln(B $B0BEZ(B | Crystallization Electrodynamic Balance NaCl
| S-8 | 134 |
11:20$B!A(B 11:40 | H108 | CaCO3$BCl>uCf6uBN$NAO@=$K$*$1$k7A@.%a%+%K%:%`$N8!F$(B ($B1|B?K`9)6H(B) $B!{(B($B@5(B)$B:4!9LZ(B $BFX(B$B!&(B($B@5(B)$BEDCf(B $B9(0l(B$B!&(B$BKYFb(B $B1Q$B!&(B($B4d$B!&(B($B4d$B!&(B($B@5(B)$B2#ED(B $B@/>=(B$B!&(B($B@5(B)$B@6?e(B $B7r;J(B$B!&(B($B4d.@n(B $B70(B | crystallization hollow structure calcium carbonate
| S-8 | 206 |
(13:00$B!A(B13:40)$B!!(B($B;J2q(B $B@6?e7r;J(B) |
13:00$B!A(B 13:40 | H113 | $BE`7kM^@)%?%s%Q%/=@.D9@)8f5!9=(B ($BKLBgDc298&(B) $B!{8E@n(B $B5A=c(B | crystal growth ice antfreezeprotein
| S-8 | 1134 |
(13:40$B!A(B14:20)$B!!(B($B:BD9(B $B>>K\??OB(B) |
13:40$B!A(B 14:00 | H115 | $B41G=4pCV49$K$h$k(BBPT$BM6F3BN7k>=$N@O=P5sF0$J$i$S$K7k>=9=B$$X$N1F6A(B ($BJ<8K8)Bg9)(B) $B86(B $B?r9T(B$B!&(B($B3X(B)$BB-N)(B $B9@2p(B$B!&(B$B!{(B($B@5(B)$BKLB<(B $B8w9'(B | Crystallization Crystal structure Solvent effect
| S-8 | 215 |
14:00$B!A(B 14:20 | H116 | $BFC=@O4D6->l$rMxMQ$7$?FqMO2r@-%"%k%+%jEZN`6bB01v$NHyN3;R@)8f(B ($BAaBg@h?JM}9)(B) $B!{(B($B3X(B)$B;0>e(B $B5.;J(B$B!&(B($B3X(B)$BCSED(B $B>-B@(B$B!&(B($B@5(B)$BJ?Bt(B $B@t(B | crystallization field design monodispersed fine crystals precipitation
| S-8 | 228 |
(14:20$B!A(B15:00)$B!!(B($B:BD9(B $B9uC+@5Gn(B) |
14:20$B!A(B 14:40 | H117 | $B8w;RAj4XK!$K$h$k(BKCl$B4uGvMO2rEY?eMO1U$+$i$N7k>=3KH/@85sF0$NB,Dj(B ($BJ<8K8)Bg1!9)(B) ($B@5(B)$BJ!0f(B $B7<2p(B$B!&(B$B8w2,(B $B>;E5(B$B!&(B($B@5(B)$BD+7'(B $BM52p(B$B!&(B$B!{(B($B@5(B)$BA0ED(B $B8w<#(B | nuclei dilute solubility DLS
| S-8 | 232 |
14:40$B!A(B 15:00 | H118 | CFD$B$rMQ$$$?%/%l%O2#7?B?CJNd5Q>=@OAuCV(B(CDC)$B2~A1$N;n$_(B ($B%/%l%O%(%s%8%K%"%j%s%0(B) $B!{(B($B@5(B)$BBgED86(B $B7rB@O:(B$B!&(B$B_@E:(B $B??0lO:(B$B!&(B($B@5(B)$BKLB<(B $BIp?M(B | Crystal cooling multi-stage
| S-8 | 332 |
(15:00$B!A(B15:40)$B!!(B($B;J2q(B $BEZ4t5,?N(B) |
15:00$B!A(B 15:40 | H119 | $B0eLtIJM-8z@.J,(B($B86Lt(B)$B@=B$$K$*$1$k>=@OA`:n(B ($BBgK2LtIJ9)6H(B) $B!{D9Bt(B $B90;V(B | crystallization scale up batch
| S-8 | 1136 |
(15:40$B!A(B16:20)$B!!(B($B:BD9(B $BJ?Bt(B $B@t(B) |
15:40$B!A(B 16:00 | H121 | $B%"%_%N;@E:2C$K$h$kC:;@%+%k%7%&%`7k>=$N%b%k%U%)%m%8!<@)8f(B ($BJ<8K8)N)9)(B) $B!{(B($B@5(B)$BCf@n(B $B5fLi(B$B!&(B($B3X(B)$BKL@n(B $B519,(B$B!&(B($B@5(B)$BKLB<(B $B8w9'(B | calcium carbonate crystallization morphology
| S-8 | 376 |
16:00$B!A(B 16:20 | H122 | L-$B%"%i%K%s$N3KH/@85sF0(B ($B:e;TBg1!9)(B) $B!{(B($B3X(B)$BC]Fb(B $B@i?R(B$B!&(B($B@5(B)$B8^==Mr(B $B9,0l(B$B!&(B($B@5(B)$BBgEh(B $B42(B | L-alanine crystallization nucleation
| S-8 | 745 |
(16:20$B!A(B17:00)$B!!(B($B:BD9(B $BD+7'M52p(B) |
16:20$B!A(B 16:40 | H123 | $B=L5E:2C7O2sJ,Nd5Q>=@O$NL$K0OBA`:n$rMxMQ$7$?N37BJ,I[$N2~A1(B ($BElG@9)Bg1!(BBASE) $B!{(B($B3X(B)$B:#@.(B $B$B!&(B($BElG@9)Bg9)(B) $B9>@n(B $B0<2;(B$B!&(B($BElG@9)Bg1!(BBASE) ($B@5(B)$BBl;3(B $BGn;V(B | crystallization undersaturation CSD
| S-8 | 692 |
16:40$B!A(B 17:00 | H124 | $BM-5!2=9gJ*$N2aNd5QMO1U$KBP$9$kD62;GH>H ($BAaBg1!M}9)(B) $B!{(B($B3X(B)$B>.;{(B $B9'7{(B$B!&(B($B%"%9%F%i%9@=Lt(B) $B9uC+(B $B@5Gn(B$B!&(B($BAaBg1!M}9)(B) ($B@5(B)$BJ?Bt(B $B@t(B | crystallization ultrasonic irradiation primary nucleation
| S-8 | 620 |
(17:00$B!A(B18:00)$B!!(B($B:BD9(B $B;3K\1QFs(B) |
17:00$B!A(B 17:20 | H125 | $B3KH/@8$*$h$S7k>=@.D9$X$ND62;GH8z2L(B-$BL$K0OBNN0h$G$N8!F$(B- ($B9)3X1!Bg9)(B) $B!{(B($B3X(B)$B8eF#(B $BM:0l(B$B!&(B($B@5(B)$B2CF#(B $B>0Ip(B$B!&(B($BAaBg(B) ($B@5(B)$BJ?Bt(B $B@t(B | ultrasonic wave nucleation undersaturation
| S-8 | 140 |
17:20$B!A(B 17:40 | H126 | $B%"%_%N;@7ONd5Q>=@O$K$*$1$kD62;GH>H ($B%"%9%F%i%9@=Lt(B) $B!{9uC+(B $B@5Gn(B$B!&(B($BAaBg(B) $B3$O786(B $BAoH~(B$B!&(B($B@5(B)$BJ?Bt(B $B@t(B | crystallization ultrasound irradiation primary nucleation
| S-8 | 350 |
17:40$B!A(B 18:00 | H127 | CO2/N2$BHy:Y5$K"$rF1H<$7$??eMO1U$X$N%^%$%/%mGH>H ($B@iMU9)Bg9)(B) $B!{(B($B@5(B)$B>>K\(B $B??OB(B$B!&(B$BW"@%(B $BAT0lO:(B$B!&(B($B@5(B)$BHx>e(B $B70(B | microwave micro bubble lithium carbonate
| S-8 | 498 |
I$B2q>l(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 | |
$B%7%s%]%8%&%`(B $B!c:`NAAO@=$H3&LL8=>]!d(B |
(9:00$B!A(B10:00)$B!!(B($B:BD9(B $B4_ED>;9@(B) |
9:00$B!A(B 9:20 | I101 | TiO2$B%3!<%F%#%s%0N3;R$NDc29D4@=$HFC@-I>2A(B ($BAO2ABg9)(B) $B!{(B($B3X(B)$BF#0f(B $BM3Mx;R(B$B!&(B$B>.NS(B $B7r0l(B$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 | TiO$2$ sol-gel method photocatalytic
| S-6 | 192 |
9:20$B!A(B 9:40 | I102 | $BD@EBK!$K$h$kC1J,;6%7%j%+N3;R$X$N6bB0%3!<%F%#%s%0(B ($B;37ABg9)(B) $B!{(B($B3X(B)$BNkLZ(B $B<7=E(B$B!&(B($B@5(B)$BLZKs(B $B8w@5(B$B!&(B($B@5(B)$BD9C+@n(B $B@/M5(B$B!&(B($B%J%_%C%/%9(B) $B5HB<(B $B9@4n(B | Precipitation method Silica particle Metal coating
| S-6 | 737 |
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| S-6 | 169 |
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10:00$B!A(B 10:20 | I104 | $B%i%C%+!<%<8GDj2=%7%j%+HoJ$<'@-%J%NN3;R$NI=LL=$>~$N8z2L(B ($B6eBg1!9)(B) $B!{(B($B3X(B)$B0f%N>e(B $BMc(B$B!&(B($B@5(B)$B>>:,(B $B1Q$B!&(B($B@5(B)$BC]Cf(B $BAT(B$B!&(B($B@5(B)$B4_ED(B $B>;9@(B | magnetic nanobeads enzymatic reaction laccase
| S-6 | 110 |
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| S-6 | 481 |
10:40$B!A(B 11:00 | I106 | $B%+!<%\%s%J%N:Y9&$K$h$k?eAGCyB"(B ($B5~Bg9)(B) $B!{(B($B@5(B)$BEDCf(B $B=($B!&(B($B6&(B)$BJR;3(B $BMxI'(B$B!&(B($B@5(B)$B5\86(B $BL-(B | hydrogen storage quantum effects GCMC simulation
| S-6 | 1061 |
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| S-6 | 484 |
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| S-6 | 668 |
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| S-6 | 740 |
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| S-6 | 297 |
13:40$B!A(B 14:00 | I115 | $B6b%J%NN3;R$N2aEO5[<}JQ2=$HAjJQ2=8=>](B ($BElBg1!9)(B) $B!{(B($B@5(B)$B0p_7(B $B?8(B$B!&(B($B@5(B)$B?y;3(B $B@5OB(B$B!&(B($B@5(B)$BLnED(B $BM%(B$B!&(B($B@5(B)$B;38}(B $BM34tIW(B | laser gold nanoparticles transient absorption
| S-6 | 359 |
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| S-6 | 1118 |
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| S-6 | 363 |
15:00$B!A(B 15:20 | I119 | $B%U%'%N!<%k ($B4X@>Bg9)(B) $B!{(B($B3X(B)$BJR;3(B $BM*8c(B$B!&(B($B@5(B)$BEDCf(B $B=SJe(B$B!&(B($B@5(B)$B;0Bp(B $B5AOB(B | mesoporous carbon organic-organic composites phenolic resin
| S-6 | 353 |
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| S-6 | 541 |
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| S-6 | 540 |
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| S-6 | 476 |
16:40$B!A(B 17:00 | I124 | Dip-coating$B$K$h$jD4@=$5$l$?C1N3;RKl$NG[Ns5,B'@-$X$N4pHD?F?e@-$N1F6A$H$=$NI>2A(B ($B;37ABg9)(B) $BC0Ln(B $B@5$B!&(B$B!{(B($B@5(B)$B<58M(B $B>;9-(B | ordered monoparticulate film dip-coating hydrophilic substrate
| S-6 | 362 |
17:00$B!A(B 17:20 | I125 | $B4%<0%W%m%;%9$K$h$kC1J,;65e>uHyN3;R5,B'G[NsJ#9gN3;R$N:n@=(B ($B2V2&(B) $B!{(B($B@5(B)$BJ!ED(B $B8x0l(B$B!&(B($B@5(B)$BJw(B $B9@Fs(B$B!&(B($B@5(B)$B5WJ](B $B1QL@(B$B!&(B($BElBg1!9)(B) ($B@5(B)$BF#ED(B $B>;Bg(B$B!&(B($B@5(B)$B;38}(B $BM34tIW(B | dry process ordered array composite particle
| S-6 | 282 |
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17:20$B!A(B 17:40 | I126 | $B5U%*%Q!<%k9=B$$rMxMQ$7$?C:AG$*$h$SC:2=7>AG$N(B3$B ($BJ!=wBg?M4V4D6-(B) $B!{(B($B@5(B)$BApJI(B $B9n8J(B$B!&(B$BBg1`(B $B@D2C(B$B!&(B($B@5(B)$B-;L(B$B!&(B$B41(B $B9q@6(B | Opal Particles Carbon
| S-6 | 268 |
17:40$B!A(B 18:00 | I127 | $BBh;M5i%"%k%-%k%"%s%b%K%&%`$N<+8JAH?%2=$rMxMQ$7$?6d%J%N9=B$BN$NAO@=(B ($B6eBg1!9)(B) $B!{(B($B@5(B)$B>>:,(B $B1Q$B!&(B$BLZ2<(B $B=S51(B$B!&(B($B@5(B)$BC]Cf(B $BAT(B$B!&(B($B@5(B)$B4_ED(B $B>;9@(B | silver nanosheet self-assembly
| S-6 | 447 |
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| S-15 | 555 |
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| S-15 | 316 |
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| S-15 | 861 |
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| S-15 | 213 |
15:00$B!A(B 15:20 | J119 | $BGQ4~J*=hM}9)Dx$K$*$1$k2P:R!&GzH/;v8N(B ($B?@F`@n;:5;%;%s%?!<(B) $B!{(B($B@5(B)$B@6?e(B $BK'Ci(B$B!&(B($B@5(B)$B$B!&(B($B5~Bg(B) ($B@5(B)$BBg2<(B $BOBE0(B$B!&(B($B2#9qBg(B) ($B@5(B)$B;0Bp(B $B=_L&(B$B!&(B($BElBg(B) ($B@5(B)$B?70f(B $B=<(B | Waste disposal and treatment facilities Fire Explosion
| S-15 | 667 |
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| S-15 | 981 |
15:40$B!A(B 16:00 | J121 | $BGQ4~J*:o8:$N ($B;0I)2=3X(B) $B!{@>1`(B $BMxFA(B | Industrial Waste Activated Sludge process Equipment Environmental Measure
| S-15 | 331 |
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| S-15 | 560 |
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| S-9 | 674 |
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| S-9 | 20 |
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| S-9 | 398 |
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| S-9 | 651 |
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| S-9 | 1099 |
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| S-9 | 338 |
(15:40$B!A(B16:20)$B!!(B($B:BD9(B $BHS_79';J(B) |
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| S-9 | 645 |
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| S-9 | 647 |
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| S-9 | 901 |
(17:00$B!A(B18:00)$B!!(B($B:BD9(B $B0KF#BgCN(B) |
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| S-9 | 403 |
17:20$B!A(B 17:40 | K126 | $B?M9)?(3P>pJs$+$i$N:`NAFC@-I>2A!!(B-$BB?J,;6N37B$HI=LL7A>u(B- ($B2#9qBg4D6->pJs(B) $B!{(B($B@5(B)$B$B!&(B($B6&(B)$BCfLn(B $B7r(B$B!&(B$B$B!&(B($B5~Bg9)(B) ($B6&(B)$B;3K\(B $B9@;J(B | tactile sensing particle size polydispersity particles outline amorphism
| S-9 | 582 |
17:40$B!A(B 18:00 | K127 | $B9ZAGJ]8n5!G=9bJ,;R$rM-$9$k9ZAG8GDj2=C4BN$NHs?eG^BNCf$G$N9ZAG3h@-(B ($BKL6e=#9b@l(B) $B!{(B($B@5(B)$B8eF#(B $B=!<#(B$B!&(B($B:4BgM}9)(B) ($B@5(B)$B@n4nED(B $B1Q9'(B$B!&(B($BKL6e;TBg9q:]4D6-9)(B) ($B@5(B)$B>e9>='(B $B0lLi(B$B!&(B($B6eBg9)(B) ($B@5(B)$B8eF#(B $B2m9((B | Polymer brush Enzyme immobilization Esterification
| S-9 | 311 |
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$B%7%s%]%8%&%`(B $B!cH?1~9)3X$N?7$7$$E83+!d(B |
(9:00$B!A(B10:00)$B!!(B($B:BD9(B $B;32<7r0l(B) |
9:00$B!A(B 9:20 | L101 | $B%^%$%/%m%j%"%/%?! ($B4X@>Bg(B) $B!{(B($B3X(B)$BG5B<(B $B@@(B$B!&(B($B@5(B)$B2,ED(B $BK' | Microreactor Raman microscopic spectrometer Mass transport
| S-34 | 665 |
9:20$B!A(B 9:40 | L102 | $B6k7A%^%$%/%m%A%c%M%kFb$K$*$1$kAXN.N.BN$N29EYJ,I[$H>:292aDx(B ($B;:Am8&(B) $B!{(B($B@5(B)$B;38}(B $B2B;R(B$B!&(B($B@5(B)$BCfB<(B $B9@G7(B$B!&(B($B@5(B)$B8E20(B $BIp(B$B!&(B$BA0ED(B $B1QL@(B | microchannel temperature distribution computational fluid dynamics
| S-34 | 581 |
9:40$B!A(B 10:00 | L103 | $B%^%$%/%mN.O)$rMxMQ$7$?%$%*%sG;=L2s<}$K$*$1$kN.O)7A>u$HG;=LEY$N4X78(B ($BFAEgBg1!@hC<650iIt(B) $B!{(B($B3X(B)$B9bLZ(B $BMW(B$B!&(B($BFAEgBg9)(B) $B;38}(B $B?JB@O:(B$B!&(B($BFAEgBg(BSTS$B8&(B) ($B@5(B)$B30NX(B $B7r0lO:(B$B!&(B($B@5(B)$B?y;3(B $BLP(B$B!&(B($B@5(B)$BCf@n(B $B7I;0(B | microchannel electrophoresis ion enrichment
| S-34 | 441 |
(10:00$B!A(B11:00)$B!!(B($B:BD9(B $BJR2,(B $B>M(B) |
10:00$B!A(B 10:20 | L104 | $B%^%$%/%mN.BNCf$K$*$1$k(BDNA$B$N(B2$BK\:?7A@.$NG.NO3XE*@- ($B;:Am8&%J%N%F%/%N%m%8!<8&5fItLg(B) $B!{(B($B@5(B)$B;32<(B $B7r0l(B$B!&(B($B@5(B)$B5\:j(B $B??:4Li(B$B!&(B($B@5(B)$B;38}(B $B2B;R(B$B!&(B($B@5(B)$BCfB<(B $B9@G7(B$B!&(B($B@5(B)$BA0ED(B $B1QL@(B | laminar flow microchannel conformational entropy
| S-34 | 547 |
10:20$B!A(B 10:40 | L105 | $B%^%$%/%mN.O)$rMxMQ$7$?B?CJ>xN1$N8!F$(B ($BFAEgBg1!@hC<650iIt(B) $B!{(B($B3X(B)$BJ!?9(B $B9'E5(B$B!&(B($BFAEgBg9)(B) $BM'@.(B $B4nBeH~(B$B!&(B($BFAEgBg(BSTS$B8&(B) ($B@5(B)$B30NX(B $B7r0lO:(B$B!&(B($B@5(B)$B?y;3(B $BLP(B$B!&(B($B@5(B)$BCf@n(B $B7I;0(B | microchannel distillation phase separation
| S-34 | 764 |
10:40$B!A(B 11:00 | L106 | $B%^%$%/%m%_%-%5!<$rMQ$$$?F}2=%W%m%;%9$N@_7W(B ($B2V2&(B) $B!{(B($B@5(B)$B>>;3(B $B0lM:(B$B!&(B($B@5(B)$BJw(B $B9@Fs(B$B!&(B($B@5(B)$B5WJ](B $B1QL@(B$B!&(B($B5~Bg9)(B) ($B@5(B)$BA0(B $B0lW"(B | emulsification micromixer convection mixing
| S-34 | 580 |
(11:00$B!A(B12:00)$B!!(B($B:BD9(B $B>>;30lM:(B) |
11:00$B!A(B 11:20 | L107 | $B%^%$%/%m%j%"%/%?$rMQ$$$?F<%J%N%3%m%$%I$ND4@=(B ($B;37ABg9)(B) $B!{(B($B3X(B)$BHx7A(B $B7IB@(B$B!&(B($B@5(B)$B<58M(B $B>;9-(B$B!&(B($B@5(B)$BBgC](B $BE/Li(B | microreactor copper nanoparticle stability of colloid
| S-34 | 356 |
11:20$B!A(B 11:40 | L108 | $B%^%$%/%m6u4V$rMQ$$$?%j%A%&%`%^%s%,%s%9%T%M%k%J%NN3;R$N9g@.(B ($BEl9)Bg(B) $B!{(B($B@5(B)$BC+8}(B $B@t(B$B!&(B($B@5(B)$BLpLn(B $BB@O/(B | microspace spray pyrolysis lithium manganese spinel
| S-34 | 548 |
11:40$B!A(B 12:00 | L109 | $B%^%$%/%mN.O)Fb$N1UE)$rMxMQ$7$?9bJ,;R=E9g$H9bJ,;RHyN3;R@=B$K!$N8!F$(B ($B5~Bg1!9)(B) ($B@5(B)$BKR(B $BBYJe(B$B!&(B$B!{(B($B3X(B)$BNS(B $BC#Li(B$B!&(B($B3X(B)$BCf@>(B $BJ8?M(B$B!&(B($B@5(B)$BBg5WJ](B $B>0?M(B$B!&(B($B@5(B)$BA0(B $B0lW"(B | $B%^%$%/%mH?1~9)3X(B $B=E9gH?1~(B $B9bJ,;RN3;R(B
| S-34 | 73 |
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13:00$B!A(B 13:20 | L113 | $B%^%$%/%m%A%c%s%M%k$rMQ$$$?EE;R%Z!<%Q! ($BAn8&2=3X(B) $B!{BlBt(B $BMF0l(B$B!&(B($B@5(B)$B9b66(B $B9'FA(B$B!&(B($BEl9)Bg(B) ($B@5(B)$B@>Gw(B $B5.;V(B$B!&(B($BElBg1!(B) ($B@5(B)$BD;5o(B $BE0(B | microchannel electronics paper particles
| S-34 | 145 |
13:20$B!A(B 13:40 | L114 | $B%a%=B?9&BN$rC4;}$7$?%^%$%/%m%j%"%/%?!<$N:n@=$HH?1~FC@-(B ($B;:Am8&(B) $B!{(B($B@5(B)$BJR2,(B $B>M(B$B!&(B($B@5(B)$B1sF#(B $BL@(B$B!&(B$B86ED(B $BFX90(B$B!&(B$B0pLZ(B $BM35*(B$B!&(B($B@5(B)$B;3K\(B $BBs;J(B$B!&(B($B@5(B)$BCf4d(B $B>!(B$B!&(B($B@5(B)$BBg?9(B $BN4IW(B | microreactor mesoporous catalytic reaction
| S-34 | 954 |
(13:40$B!A(B14:20)$B!!(B($B:BD9(B $BKR(B $BBYJe(B) |
13:40$B!A(B 14:00 | L115 | $B%^%$%/%m%j%"%/%?$rMxMQ$7$?%"%8%s9g@.K!$N8!F$(B ($BFAEgBg1!@hC<650iIt(B) $B!{(B($B3X(B)$BH*Ln(B $B=$0l(B$B!&(B$B@>B<(B $BJ~98(B$B!&(B($BFAEgBg9)(B) $B:{;3(B $B2F:Z(B$B!&(B($BFAEgBg(BSTS$B8&(B) ($B@5(B)$B30NX(B $B7r0lO:(B$B!&(B($BBgDM2=3X(B) $BC+8}(B $B@5=S(B$B!&(B$B?9(B $B9@;J(B$B!&(B($BFAEgBg(BSTS$B8&(B) ($B@5(B)$B?y;3(B $BLP(B$B!&(B($B@5(B)$BCf@n(B $B7I;0(B | microchannel azine synthesis
| S-34 | 776 |
14:00$B!A(B 14:20 | L116 | $B%^%$%/%m%A%e!<%V%j%"%/%?!<$K$h$k2a;@2=?eAG$N9g@.(B ($BJ!=wBg?M4V4D6-(B) $B!{(B($B@5(B)$BApJI(B $B9n8J(B$B!&(B$BA086(B $B>^;R(B$B!&(B$B41(B $B9q@6(B$B!&(B($B@5(B)$B-;L(B | Hydrogen peroxide Electrolysis Catalytic reaction
| S-34 | 267 |
(14:20$B!A(B15:20)$B!!(B($B:BD9(B $BApJI9n8J(B) |
14:20$B!A(B 14:40 | L117 | $B%^%$%/%mN.O)$K$*$1$kL52A(B ($BF|N)!&EE3+8&(B) $B!{(B($B@5(B)$BGr@P(B $BJ~;K(B$B!&(B($B@5(B)$B6aF#(B $B7rG7(B$B!&(B($B@5(B)$B2OB<(B $BJY(B$B!&(B($BF|N)%W%i%s%H%F%/%N%m%8!<(B) $B>.ED(B $B>-;K(B | microreactor consecutive reaction mixing-reaction number
| S-34 | 907 |
14:40$B!A(B 15:00 | L118 | $BMpN.3H;6$rMQ$$$?%^%$%/%m%j%"%/%?$K$*$1$kH?1~<}N(I>2A(B ($BF|N)!&EE3+8&(B) $B!{(B($B@5(B)$B6aF#(B $B7rG7(B$B!&(B($B@5(B)$BGr@P(B $BJ~;K(B$B!&(B($B@5(B)$B2OB<(B $BJY(B$B!&(B($BF|N)%W%i%s%H%F%/%N%m%8!<(B) ($B@5(B)$B>.ED(B $B>-;K(B | microreactor dimensionless number turbulent diffusion
| S-34 | 912 |
15:00$B!A(B 15:20 | L119 | $BB?CJ?WB.A`:n$KBP1~$7$?5!G=%"%;%s%V%k7?%^%$%/%m%j%"%/%?!<$N3+H/(B ($B5~Bg9)(B) $B!{(B($B3X(B)$B0KEl(B $B@i=U(B$B!&(B$BKLEg(B $BN$B!&(B($B@5(B)$B@DLZ(B $B@kL@(B$B!&(B($B@5(B)$BA0(B $B0lW"(B | unit assemble microreactor multistage rapid operation
| S-34 | 12 |
(15:20$B!A(B16:20)$B!!(B($B:BD9(B $B>>2,C$O:(B) |
15:20$B!A(B 15:40 | L120 | C12A7$B$+$iJ|=P$5$l$k;@AGIi%$%*%s$KM3Mh$9$k3h@-2=3X ($BElBg1!9)(B) $B!{(B($B@5(B)$B;3K\(B $B8wIW(B$B!&(B($B9)3X1!Bg9)(B) ($B@5(B)$BDjJ}(B $B@55#(B | C12A7 oxygen anion radical species
| S-34 | 752 |
15:40$B!A(B 16:00 | L121 | $BBg5$05$K$*$1$k(BC12A7$BM3Mh5$Aj3h@-;@AG ($B;:Am8&(B) $B!{(B($B@5(B)$B@>2,(B $B>-51(B$B!&(B($BElKL3X1!Bg(B) $BD9ED(B $B?-:H(B$B!&(B($B;:Am8&(B) $B3k@>(B $B??6W(B | C12A7 active oxygen species silicon oxydation
| S-34 | 685 |
16:00$B!A(B 16:20 | L122 | $B%^%$%/%m%P%k%V$K$h$k%9%i%0N.$NH/@8$HCj=P%W%m%;%9$X$NE,MQ(B ($B2,;3Bg1!(B) $B!{(B($B@5(B)$BIpF#(B $BL@FA(B$B!&(B($B2,;3Bg9)(B) $BIp@n(B $BM5H~(B$B!&(B($B2,;3Bg1!(B) $BCfJ?(B $BBn?C(B$B!&(B$BNk?9(B $B9/0l(B$B!&(B$B?@ED(B $B3YJ8(B$B!&(B($B6(OB%U%!%$%s%F%C%/(B) $BLgOF(B $B?.7f(B | slug flow micro valve extraction
| S-34 | 324 |
(16:20$B!A(B17:20)$B!!(B($B:BD9(B $BHx>e(B $B70(B) |
16:20$B!A(B 16:40 | L123 | $BD62;GH>H2A(B ($BElKLBg9)(B) $B!{(B($B3X(B)$B4X8}(B $BOB9((B$B!&(B($B@5(B)$B5WJ](B $B@5$B!&(B($B@5(B)$BJFK\(B $BG/K.(B | ultrasound irradiation hydroxyl radical Electron Spin Resonance
| S-34 | 352 |
16:40$B!A(B 17:00 | L124 | $BM-5!MOG^7O$K$*$1$k%=%N%j%"%/%?!<$N@-G=I>2A$N8!F$(B ($BL>Bg1!9)(B) $B!{(B($B3X(B)$BJ!IZ(B $BAo(B$B!&(B($BK\B?EE;R(B) ($BIt(B)$BD+AR(B $B5A9,(B$B!&(B($BL>>kBgG@(B) ($BIt(B)$BA0NS(B $B@590(B$B!&(B($BL>Bg1!9)(B) ($BIt(B)$B>>2,(B $BC$O:(B$B!&(B($BIt(B)$B9aED(B $BG&(B | onochemical reactor cavitation organic solvent
| S-34 | 224 |
17:00$B!A(B 17:20 | L125 | $B%;%k%m!<%9$NM-8zMxMQ$N$?$a$N%=%N%W%m%;%9(B ($BL>Bg1!9)(B) $B!{(B($B3X(B)$BEOJU(B $B??Li(B$B!&(B($B@5(B)$BFs0f(B $B?8(B$B!&(B($B3X(B)$B9b0B(B $BH~Li;R(B$B!&(B($B@5(B)$B>>2,(B $BC$O:(B$B!&(B($B@5(B)$B9aED(B $BG&(B | cellulose ultrasonic separation
| S-34 | 561 |
(17:20$B!A(B18:00)$B!!(B($B:BD9(B $B@>2,>-51(B) |
17:20$B!A(B 17:40 | L126 | $B;@AG%W%i%:%^$HC:2=?eAGJ,;R$H$N@\?(H?1~(B ($B@iMU9)Bg9)(B) $B!{(B($B3X(B)$BJ!2,(B $BBgJe(B$B!&(B($B@5(B)$BD9E:(B $B42(B$B!&(B($B@5(B)$B>.NS(B $B4p$B!&(B($B@5(B)$BHx>e(B $B70(B | microwave plasma oxidation
| S-34 | 501 |
17:40$B!A(B 18:00 | L127 | $B5$1UJ|EE$K$h$k%U%'%N!<%kJ,2r(B ($BK!@/Bg(B) $B!{(B($B3X(B)$BK\ED(B $BJ87I(B$B!&(B($B@5(B)$B@>3$(B $B1QM:(B | phenol discharge water
| S-34 | 762 |
M$B2q>l(B
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9:00$B!A(B 9:20 | M101 | $B5.6bB0F3F~%P%J%8%s;@%^%0%M%7%&%`?(G^$K$h$k%W%m%Q%s$N;@2=C&?eAGH?1~(B ($BFAEgBg1!@hC<650iIt(B) $B!{(B($B3X(B)$BJ?ED(B $BM45,(B$B!&(B($B;0I)%l%$%h%s(B) $BA086(B $B7K;R(B$B!&(B$B0B@n(B $BH;Li(B$B!&(B$BFs5\(B $B9R(B$B!&(B($BFAEgBg1!(BSTS$B8&(B) ($B@5(B)$BCf@n(B $B7I;0(B$B!&(B($B@5(B)$B30NX(B $B7r0lO:(B$B!&(B($B@5(B)$B?y;3(B $BLP(B | oxidative dehydrogenation propane magnesium vanadates
| S-34 | 318 |
9:20$B!A(B 9:40 | M102 | $BC4;}(BSn-Pt2$B857O?(G^>e$G$N%/%m%H%s%"%k%G%R%I$NA*BrE*?eAG2=(B ($B?@8MBg1!<+(B) $BCfHx(B $B7=B@(B$B!&(B$BFbF#(B $B?8Li(B$B!&(B($B?@8MBg1!9)(B) $B;T66(B $BM40l(B$B!&(B($B?@8MBg4D6-4IM}%;%s%?!<(B) $B!{(B($B@5(B)$B@>;3(B $B3P(B$B!&(B($B?@8MBg9)(B) $BDaC+(B $B<"(B | metal-supported catalyst hydrogenation reaction engineering
| S-34 | 1114 |
(9:40$B!A(B10:40)$B!!(B($B:BD9(B $B@>;3(B $B3P(B) |
9:40$B!A(B 10:00 | M103 | $B%3%P%k%H!&%b%j%V%G%sCb2=?(G^$NI=LLFC@-$H?eAG2=C&N2Nt2=5sF0(B ($BElG@9)Bg(B) $BIZ1J(B $B90G7(B$B!&(B$B9CHe(B $BLP9b(B$B!&(B$B!{(B($B@5(B)$B1J0f(B $B@5IR(B | nitrided CoMo/Al$2$O$3$ catalyst Hydrodesulfurization Deactivation
| S-34 | 895 |
10:00$B!A(B 10:20 | M104 | $BFsCJ?(G^AXH?1~4o$rMQ$$$?%W%m%Q%s$NItJ,;@2=(B ($BEl9)Bg1!M}9)(B) ($B@5(B)$B:4F#(B $BM42p(B$B!&(B$B!{(B($B@5(B)$BKY9>(B $B9';K(B$B!&(B($B@5(B)$BAjED(B $BN4;J(B | catalysis two-layered catalyst bed propane oxidation
| S-34 | 1017 |
10:20$B!A(B 10:40 | M105 | $B%7%j%+%i%$%H(B/ZSM-5$B?(G^$rMQ$$$?%Q%i%-%7%l%s$NA*BrE*9g@.(B (RITE) $B!{(B($B@5(B)$B5\K\(B $B3X(B$B!&(B($B:eBg1!4p9)(B) Vu Van Dung$B!&(B($B@5(B)$B@>;3(B $B7{OB(B$B!&(B($B@5(B)$B9>F,(B $BLw9,(B$B!&(B($B@5(B)$B>e;3(B $B0T0l(B | ZSM-5 Silicalite-1 p-xylene
| S-34 | 875 |
(10:40$B!A(B11:20)$B!!(B($B:BD9(B $B4_ED>;9@(B) |
10:40$B!A(B 11:00 | M106 | $B%Q%i%8%&%`%a%s%V%l%s%j%"%/%?!<$rMQ$$$?2a;@2=?eAGD>@\9g@.H?1~(B ($B;:Am8&(B) $B!{(B($B@5(B)$B0f>e(B $BJ~Li(B$B!&(B($BElKLBg(B) $BEDCf(B $BM$E5(B$B!&(B($B;:Am8&(B) Tanaka David A. P.$B!&(B$BNkLZ(B $BIR=E(B$B!&(B$B:4F#(B $B9d0l(B$B!&(B($B@5(B)$B_@@n(B $BAo(B$B!&(B($B@5(B)$B?e>e(B $BIY;NIW(B | palladium membrane reactor direct hydrogen peroxide synthesis reaction scheme analysis
| S-34 | 122 |
11:00$B!A(B 11:20 | M107 | $BGr6b?(G^$rMQ$$$?%"%;%A%l%s?eAG2=H?1~$K$*$1$k?eAG%W%i%:%^$N6&B88z2L(B ($B@iMU9)Bg9)(B) $B!{(B($B@5(B)$BD9E:(B $B42(B$B!&(B$BNkLZ(B $BNIE5(B$B!&(B($B@5(B)$B>.NS(B $B4p$B!&(B($B@5(B)$BHx>e(B $B70(B | hydrogen plasma platinum catalyst
| S-34 | 281 |
(11:20$B!A(B12:00)$B!!(B($B;J2q(B $BA}EDN4IW(B) |
11:20$B!A(B 12:00 | M108 | [$BE8K>9V1i(B]$B?(G^H?1~%W%m%;%9$N3W?7(B-$B%V%?%8%(%s$N%"%;%H%-%72=H?1~$rNc$H$7$F(B- ($B;0I)2=3X(B) $B!{4d:e(B $BMN;J(B$B!&(B$BCfB<(B $B9(J8(B$B!&(B($B@5(B)$B9b66(B $BOB@.(B | Industrialization acetoxylation innovation
| S-34 | 1111 |
(13:00$B!A(B13:40)$B!!(B($B;J2q(B $B8^==MrE/(B) |
13:00$B!A(B 13:40 | M113 | [$BE8K>9V1i(B] $BE7A3%,%9M-8zMxMQ$N$?$a$N?(G^!"%W%m%;%93+H/(B ($B@iBeED2=9)7z@_(B) $B!{;VB<(B $B8wB'(B$B!&(B$BH,LZ(B $BE_$B!&(B$B3'8+(B $BIp;V(B$B!&(B$B3a;3(B $BN40lO:(B$B!&(B$B;07*C+(B $BCRG7(B | Synthesis Gas CO2 Reforming Catalytic Partial Oxidation
| S-34 | 844 |
(13:40$B!A(B14:40)$B!!(B($B:BD9(B $BJ!86D9 |
13:40$B!A(B 14:00 | M115 | $B?75,(BNi$B7O?(G^$rMQ$$$?%a%?%s$N?e>x5$2~ ($BL>Bg1!9)(B) $B!{(B($B3X(B)$B?9K\(B $B9'5.(B$B!&(B($B@5(B)$BED@n(B $BCRI'(B$B!&(B($B@5(B)$B;3ED(B $BGn;K(B | methane partial oxidation steam reforming
| S-34 | 346 |
14:00$B!A(B 14:20 | M116 | $B%a%?%s$N?e>x5$2~ ($BElG@9)Bg9)(B) $B!{(B($B3X(B)$B<~(B $BO$(B$B!&(B$BH+;3(B $B=c(B$B!&(B$BH,LZ(B $B>;9T(B$B!&(B$B:4F#(B $B=(L@(B$B!&(B($B@5(B)$BD%(B $B{-(B$B!&(B$B3T(B $B%f(B$B!&(B($B@5(B)$B:y0f(B $B@?(B$B!&(B($B@5(B)$B55;3(B $B=(M:(B | Alumite catalyst Nickel SMR reaction
| S-34 | 584 |
14:20$B!A(B 14:40 | M117 | $B%^%$%/%m%j%"%/%?!<$K$h$k9bI=LL@Q(BZnO$B$NO"B39g@.$N;n$_(B ($B9)3X1!Bg9)(B) $B;0;^(B $B9(;J(B$B!&(B$B!{(B($B@5(B)$B8^==Mr(B $BE/(B | Microreactor Catalyst support High surface area ZnO
| S-34 | 586 |
(14:40$B!A(B15:40)$B!!(B($B:BD9(B $B:y0f(B $B@?(B) |
14:40$B!A(B 15:00 | M118 | $B%a%?%N!<%k$N%,%92=MQ%^%$%/%m%A%e!<%V7?(BNi$B7O?(G^$NAO@=$H$=$NH?1~FC@-(B ($B@EBg9)(B) $B!{(B($B@5(B)$BJ!86(B $BD9$B!&(B($BH,8M9)Bg1!(B) $BEDC<(B $B3X(B | methanol decomposition microchannel Ni-Zn catalyst
| S-34 | 469 |
15:00$B!A(B 15:20 | M119 | $B%7%j%+HoJ$%K%C%1%k?(G^>e$G$N%W%m%Q%s2~ ($B6eBg1!9)(B) $B@^ED(B $BK'$B!&(B$BG_NS(B $B9-(B$B!&(B($B@5(B)$B>>:,(B $B1Q$B!&(B($B@5(B)$BC]Cf(B $BAT(B$B!&(B$B!{(B($B@5(B)$B4_ED(B $B>;9@(B | silica-coated Ni steam reforming of propane hydrogen
| S-34 | 317 |
15:20$B!A(B 15:40 | M120 | $BC:2=%b%j%V%G%s7O?(G^$rMQ$$$?%P%$%*%(%?%N!<%k$N?e>x5$2~ ($BElG@9)Bg1!@8J*%7%9%F%`1~MQ2J3X@l96(B) $B!{(B($B3X(B)$B5\K\(B $B9,9(!&(B($BElG@9)Bg(BBASE) ($B@5(B)$B1J0f(B $B@5IR(B | ethanol steam reforming molybdenum carbide
| S-34 | 659 |
(15:40$B!A(B16:40)$B!!(B($B:BD9(B $B1J0f@5IR(B) |
15:40$B!A(B 16:00 | M121 | $BDLEE2CG.%"%k%^%$%H?(G^$rMQ$$$?EtL}$N?e>x5$2~ ($BElG@9)Bg9)(B) $B!{(B($B3X(B)$BM{(B $B2ZGH(B$B!&(B($B3X(B)Dang Ba Khoi$B!&(B$BD%(B $B{-(B$B!&(B$B3T(B $B%f(B$B!&(B($B@5(B)$B:y0f(B $B@?(B$B!&(B($B@5(B)$B55;3(B $B=(M:(B | Alumite catalyst kerosene Steam reforming
| S-34 | 596 |
16:00$B!A(B 16:20 | M122 | $B%"%k%^%$%HJ|EEEE6K$rMQ$$$?%W%i%:%^H?1~4o$K$h$k?eAG@=B$$K4X$9$k8&5f(B ($BElG@9)Bg9)(B) $B!{5((B $BJu1I(B$B!&(B$BJ?0f(B $BN4@2(B$B!&(BTran Than Phon$B!&(B$B3T(B $B%f(B$B!&(B($B@5(B)$B:y0f(B $B@?(B$B!&(B($B@5(B)$B55;3(B $B=(M:(B | Alumite catalyst Plasma discharge hydrogen production
| S-34 | 567 |
16:20$B!A(B 16:40 | M123 | $B;@2=E4$K$h$k?eAGCyB"$N$?$a$N5<;w0\F0AX7?H?1~4o@_7W(B -$B2D5UH?1~$r9MN8$7$?>l9g(B- ($BEl9)Bg(B) $B!{(B($B3X(B)$B:#@>(B $B9(FA(B$B!&(B($B;0I)EE5!(B) $BA0ED(B $B98(B$B!&(B$BA0@n(B $BIpG7(B$B!&(B$B>>Ln(B $BHK(B$B!&(B($BEl9)Bg(B) ($B@5(B)$BAjED(B $BN4;J(B | hydrogen storage reactor modeling iron oxide
| S-34 | 390 |
(16:40$B!A(B17:20)$B!!(B($B:BD9(B $BEDEhD> |
16:40$B!A(B 17:00 | M124 | $BN3>uHs@~7A8w3X:`$H2D;kC_8w:`$K$h$k;g30J,;68w8;$rMQ$$$kD69bB.2D;k6nF08w?(G^H?1~%W%m%;%9(B ($BL>Bg9)(B) $B!{(B($B@5(B)$B=P8}(B $B@60l(B$B!&(B($BL>Bg%(%3%H%T%"(B) ($B@5(B)$B>.NS(B $B7I9,(B$B!&(B($BL>Bg9)(B) $B9a7n(B $BNIB@(B$B!&(B($B3X(B)$B?y1:(B $B2BH~(B | photocatalytic water purification nonlinear optic effect visible light system
| S-34 | 8 |
17:00$B!A(B 17:20 | M125 | $BO"B35[C&CeG;=L$H8w?(G^J,2r$rJ;MQ$7$?6u5$@6>t5!$N>.7?2=$H$=$N@-G=I>2A(B ($B6eBg%P%$%*%"!<%/(B) ($B@5(B)$BGr@P(B $BJ8=((B$B!&(B$B!{(B($B3X(B)$B>.ED(B $B9/M5(B$B!&(B$B@P>>(B $B9'>O(B$B!&(B($B%"%$%/%)!<%/(B) $BN)@P(B $B7{<#(B$B!&(B($B%"%k%9%j%5!<%A(B) $B;3K\(B $B=(G7(B | air cleaner photocatalytic decomposition toluene
| S-34 | 247 |
(17:20$B!A(B18:00)$B!!(B($B:BD9(B $B=P8}@60l(B) |
17:20$B!A(B 17:40 | M126 | $B%U%i!<%l%s2D;k8w?(G^$K$h$k%U%'%N!<%kJ,2rB.EY(B ($BK!@/Bg1!(B) $B!{(B($B3X(B)$B3Q@P(B $BM3H~;R(B$B!&(B($B3X(B)$B@.ED(B $BAG;R(B$B!&(B($B@5(B)$B@>3$(B $B1QM:(B | fullerene photocatalysis
| S-34 | 815 |
17:40$B!A(B 18:00 | M127 | $B%J%N79 ($BEl$B!&(B$BEZJ}(B $B>oIW(B$B!&(B$B:#(B $B2mIW(B$B!&(B$BEOJU(B $B7{<#(B$B!&(B($B1'It6=;:(B) $B;32,(B $BM59,(B | $BA!0]7?8w?(G^(B POPs DMSO
| S-34 | 636 |
N$B2q>l(B
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(9:00$B!A(B10:00)$B!!(B($B:BD9(B $BJ!CO8-<#(B) |
9:00$B!A(B 9:20 | N101 | $B1v2=%"%s%b%K%&%`(B+$B%"%s%b%K%":.9g7O$K$*$1$k>x5$05B,Dj(B ($BElKLBgB?858&(B) $B!{(B($B3X(B)$BNkLZ(B $B9,2p(B$B!&(B($B@5(B)$BIZED(B $BBgJe(B$B!&(B$B2CF#(B $BM:0l(B$B!&(B($B@5(B)$B2#;3(B $B@i><(B | ammonia equation of state vapor pressure
| S-11 | 716 |
9:20$B!A(B 9:40 | N102 | $B%$%*%s1UBN$N(BPVT$B$KBP$9$k%+%A%*%sB&:?$N1F6A(B ($BElKLBg1!4D6-(B) $B!{(B($B3X(B)$BED8}(B $BN<2p(B$B!&(B($BElKLBg1!9)(B) ($B@5(B)$BD.ED(B $BMN(B$B!&(B($BElKLBg(B) ($B@5(B)$B:4F#(B $BA1G7(B$B!&(B($BElKLBg1!4D6-(B) ($B@5(B)Richard Smith | ionic liquid specific volume high pressure
| S-11 | 929 |
9:40$B!A(B 10:00 | N103 | $B9b052<$G$N?eAGMO2rEYB,DjAuCV$N=`Hw>u67(B ($B6eBg9)(B) $B!{(B($B@5(B)$B0KF#(B $B9UJ?(B$B!&(B($B;:Am8&(B) $B>kED(B $BG@(B$B!&(B($B6eBg9)(B) $B:#ED(B $BCRG7(B$B!&(B($B;:Am8&(B) $BBlED(B $B@i2F(B$B!&(B($B6eBg9)(B) $B9bED(B $BJ]G7(B$B!&(B($B;:Am8&(B) $BF#0f(B $BP#IW(B | Hydrogen Solubility Measurement
| S-11 | 1109 |
(10:00$B!A(B11:00)$B!!(B($B:BD9(B $B2#;3@i><(B) |
10:00$B!A(B 10:20 | N104 | $B%(%?%N!<%k(B,$B?e(B,$B%W%m%T%l%s%0%j%3!<%k$+$i@.$k5$1UJ?9UB,Dj(B ($BF|Bg@8;:9)(B) $B!{(B($B@5(B)$B2qED(B $B7K;R(B$B!&(B$B9bLZ(B $B4nOB;R(B$B!&(B($BF|BgAm8&Bg1!(B) ($B3X(B)$B:4F#(B $BIR9,(B$B!&(B($B@5(B)$BCfB<(B $B6G;R(B$B!&(B($BF|Bg@8;:9)(B) ($B@5(B)$BF+(B $B5f(B$B!&(B($B@5(B)$BDT(B $BCRLi(B$B!&(B($BL>9)Bg(B) ($B@5(B)$B?9(B $B=($B!&(B($BF|Bg@8;:9)(B) ($B@5(B)$BF|=)(B $B=SI'(B | Vapor-liquid Equilibria Isobaric systems Activity coefficients
| S-11 | 704 |
10:20$B!A(B 10:40 | N105 | $B9-$$29EY0h$N%X%-%5%G%+%sCf%"%k%+%s$NL58B4u ($B1'It6=;:(B) $B!{(B($B@5(B)$B<<9-(B$B!&(B($B@5(B)$B2#ED(B $B$B!&(B($B1'It9b@l(B) ($B3X(B)$B:d:,(B $BN4Lo(B$B!&(B($BARI_7]2JBg(B) ($B@5(B)$B5\Ln(B $BA1@9(B$B!&(B($B1'It9b@l(B) ($B@5(B)$BJ!CO(B $B8-<#(B | infinite dilution activity coefficient wide range temperature alkane
| S-11 | 66 |
10:40$B!A(B 11:00 | N106 | $B?eCf$NHyNLM-32J* ($B1'It9b@l(B) $B!{(B($B3X(B)$B:d:,(B $BN4Lo(B$B!&(B($B@5(B)$B;05H(B $B9n8J(B$B!&(B($B;38}Bg1!(B) ($B@5(B)$B>.^<(B $BLP$B!&(B($B1'It9b@l(B) ($B@5(B)$BJ!CO(B $B8-<#(B | infinite dilution activity coefficient water toxic substance
| S-11 | 67 |
(11:00$B!A(B12:00)$B!!(B($B:BD9(B $BBlV:HK |
11:00$B!A(B 11:20 | N107 | $B%F%H%i%R%I%m%T%i%s$r4^$`(B2$B@.J,7O5$1UJ?9U$N7hDj$*$h$S(BASOG$B$K$h$k?d;;(B ($BF|BgM}9)(B) $B!{(B($B3X(B)$B1'Ln(B $BHKM}(B$B!&(B($B@5(B)$B>>ED(B $B909,(B$B!&(B($B@5(B)$B7*86(B $B@6J8(B$B!&(B($B@5(B)$BFJLZ(B $B>!8J(B$B!&(B($BARI_7]2JBg@8L?(B) ($B@5(B)$B5\Ln(B $BA1@9(B$B!&(B($B$B!&(B($B> | vapor-liquid equilibria tetra hydro pyran ASOG
| S-11 | 313 |
11:20$B!A(B 12:00 | N108 | [$BE8K>9V1i(B]$B%1%b%$%s%U%)%^%F%#%C%/%9$rMQ$$$?J*@-?d;;$H5U@_7W(B ($B00>K;R(B) $B!{;3K\(B $BGn;V(B | Chemoinformathics QSPR neural network
| S-11 | 242 |
(13:00$B!A(B13:40)$B!!(B($B:BD9(B $B2<;3M52p(B) |
13:00$B!A(B 13:20 | N113 | Exce$B$K$h$kJ*@-?d;;%W%m%0%i%`$N3+H/(B ($BF|BgM}9)(B) $B!{(B($B3X(B)$B0BF#(B $B2EI'(B$B!&(B($B@5(B)$B>>ED(B $B909,(B$B!&(B($B@5(B)$B7*86(B $B@6J8(B$B!&(B($B@5(B)$BFJLZ(B $B>!8J(B | Physical Property Group Contribution Method Prediction
| S-11 | 96 |
13:20$B!A(B 13:40 | N114 | $B5$1UJ?9U$K$*$1$k1v8z2L$N?d;;K!(B ($BElM}Bg9)(B) $B!{(B($B@5(B)$BBg9>(B $B=$B$(B$B!&(B($B@5(B)$B>.Ln(B $BM&(B | salt effect vapor-liquid equiribrium solvation
| S-11 | 217 |
(13:40$B!A(B14:20)$B!!(B($B;J2q(B $BFJLZ>!8J(B) |
13:40$B!A(B 14:20 | N115 | [$BE8K>9V1i(B]Molecular Modeling of Complex Fluids and Materials (Vanderbilt U.) Zhao Honggang$B!&(Bdos Ramos Maria Carolina$B!&(B$B!{(BMcCabe Clare | SAFT molecular simulation phase behavior
| S-11 | 216 |
(14:20$B!A(B15:20)$B!!(B($B:BD9(B Richard Smith) |
14:20$B!A(B 14:40 | N117 | Prediction of High Pressure Vapor-Liquid Equilibria for Supercritical Fluid + Vegetable Oil Derivative System using COSMO Theory (Kyushu U.) $B!{(B($B@5(B)Shimoyama Yusuke$B!&(B($B3X(B)Abeta Toshio$B!&(B($B@5(B)Iwai Yoshio$B!&(B(Nihon U.) ($B@5(B)Tsuji Tomoya$B!&(B($B@5(B)Hiaki Toshihiko | vapor-liquid equilibrium COSMO theory vegetable oil
| S-11 | 405 |
14:40$B!A(B 15:00 | N118 | Prediction of Critical Constants and Acentric Factor Using Antoine Constants ($BF|BgM}9)(B) $B!{(B($B@5(B)$BFJLZ(B $B>!8J(B$B!&(B($B00>K;R(B) $B;3K\(B $BGn;V(B$B!&(B($BF|BgM}9)(B) ($B3X(B)$B0BF#(B $B2EI'(B | Critical Constants Antoine Constants Thermoinformatics
| S-11 | 87 |
15:00$B!A(B 15:20 | N119 | Design of Hydrogen Recovery System in a Fuel Cell using a New Hydrogen Storage Medium, Cyclic Aliphatic Hydrocarbons (Nihon U.) $B!{(B($B@5(B)Tsuji Tomoya$B!&(B($B@5(B)Hiaki Toshihiko$B!&(B(Utsunomiya U.) ($B@5(B)Itoh Naotsugu | fuel cell H$2$ solubility adsorption
| S-11 | 299 |
(15:20$B!A(B16:00)$B!!(B($B:BD9(B $BBg9>=$B$(B) |
15:20$B!A(B 15:40 | N120 | Volumetric behavior of methanol, ethanol, and 1-propanol aqueous solutions in supercritical region ($BElKLBg1!9)(B) $B!{(B($B@5(B)Hoshina Taka-aki$B!&(B($B3X(B)Ono Takumi$B!&(B($B@5(B)Ota Masaki$B!&(B($B@5(B)Watanabe Masaru$B!&(B($B@5(B)Sato Yoshiyuki$B!&(B($B@5(B)Inomata Hiroshi | density alcohol aqueous solutions supercritical region
| S-11 | 633 |
15:40$B!A(B 16:00 | N121 | Development of Environmentally Benign Heat Supply System Using Heats of Mixing in Critical Region of Carbon Dioxide ($BF|BgM}9)(B) $B!{(B($B@5(B)Matsuda Hiroyuki$B!&(B($B3X(B)Hirano Tomohiro$B!&(B($B3X(B)Ikegami Daiya$B!&(B($B@5(B)Kurihara Kiyofumi$B!&(B($B@5(B)Ochi Kenji | Heat Supply System Carbon Dioxide Heat of Mixing
| S-11 | 1088 |
(16:00$B!A(B17:00)$B!!(B($B:BD9(B $BK\4VE/M:(B) |
16:00$B!A(B 16:20 | N122 | $B?eG.K!$K$h$k%?%s%?%k;@%"%k%+%j8w?(G^HyN3;R$N9g@.(B ($BF|Bg@8;:9)(B) $B!{(B($B3X(B)$BK*C+(B $BFA;R(B$B!&(B$B=);3(B $BM39a(B$B!&(B$BH*;3(B $BF`J];R(B$B!&(B($B;:Am8&(B) ($B@5(B)$BNS(B $BBsF;(B$B!&(B($BF|BgAm8&Bg1!(B) ($B3X(B)$B:4F#(B $BIR9,(B$B!&(B($BF|Bg@8;:9)(B) ($B@5(B)$B2qED(B $B7K;R(B$B!&(B($BF|BgAm8&Bg1!(B) ($B@5(B)$BCfB<(B $B6G;R(B$B!&(B($BF|Bg@8;:9)(B) ($B@5(B)$BF+(B $B5f(B$B!&(B$BEDCf(B $BCR(B$B!&(B($B@5(B)$BF|=)(B $B=SI'(B | Photocatalyst Hydrothermal synthesis Perovskite
| S-11 | 244 |
16:20$B!A(B 16:40 | N123 | $BN.DL<0?eG.K!$K$h$k%^%0%M%?%$%H%J%NN3;R9g@.(B ($BF|Bg@8;:9)(B) $B!{(B($B3X(B)$BI~It(B $BH;?M(B$B!&(B$B2,:j(B $B$"$:$5(B$B!&(B($B@5(B)$BF+(B $B5f(B$B!&(B($BF|BgAm8&Bg1!(B) ($B3X(B)$B:4F#(B $BIR9,(B$B!&(B($BF|Bg@8;:9)(B) $BEDCf(B $BCR(B$B!&(B($BF|BgAm8&Bg1!(B) ($B@5(B)$BCfB<(B $B6G;R(B$B!&(B($BF|Bg@8;:9)(B) ($B@5(B)$B2qED(B $B7K;R(B$B!&(B($B@5(B)$BF|=)(B $B=SI'(B | Hydrothermal synthesis Nanoparticles Magnetite
| S-11 | 248 |
16:40$B!A(B 17:00 | N124 | $B?(G^L5E:2C$ND6NW3&?eCf$K$*$1$k(B1-$B%X%-%;%s$NH?1~(B ($BF|Bg@8;:9)(B) $B!{(B($B3X(B)$B:#Ln(B $BN$9a(B$B!&(B$B1);3(B $B9'B'(B$B!&(B$B?9ED(B $B98>O(B$B!&(B($B3X(B)$BI~It(B $BH;?M(B$B!&(B($B@5(B)$B2qED(B $B7K;R(B$B!&(B($BF|BgAm8&Bg1!(B) ($B@5(B)$BCfB<(B $B6G;R(B$B!&(B($BF|Bg@8;:9)(B) ($B@5(B)$BF+(B $B5f(B$B!&(B($B@5(B)$BF|=)(B $B=SI'(B | Supercritical water 1-Hexene Reaction mechanism
| S-11 | 238 |
(17:00$B!A(B18:00)$B!!(B($B:BD9(B $B:4F#9d;K(B) |
17:00$B!A(B 17:20 | N125 | $B?e$N5!G=@-!&FC0[@-$rMxMQ$7$?O"B3M-5!9g@.(B ($B;:Am8&(B) $B!{(B($B@5(B)$B:4F#(B $B@5Bg(B$B!&(B($BKL9);n(B) ($B@5(B)$B>>Eh(B $B7J0lO:(B$B!&(B($B;:Am8&(B) ($B@5(B)$B@nGH(B $BH%(B$B!&(B($B6&(B)$B2#;3(B $BIRO:(B$B!&(B($B@5(B)$BARED(B $BNIL@(B$B!&(B($B@5(B)$B@8Eg(B $BK-(B | water organic synthesis peculiarity
| S-11 | 4 |
17:20$B!A(B 17:40 | N126 | QM/MM$BK!$rMQ$$$?D6NW3&?eCf$G$N%0%j%;%k%"%k%G%R%I$NJQ49H?1~(B ($BH,8M9b@l(B) $B!{(B($B3X(B)$B8SED(B $B2m=S(B$B!&(B($B@5(B)$BK\4V(B $BE/M:(B$B!&(B($B%3%s%]%s8&(B) ($B@5(B)$BLnCf(B $BMxG7(B$B!&(B$BEDEh(B $B@;I'(B$B!&(B($B@5(B)$BI~It(B $B=(M:(B$B!&(B($BElKLBg1!4D6-(B) ($B3X(B)$BAjED(B $BBn(B$B!&(B($B@5(B)Smith Richard$B!&(B($BElKLBg1!9)(B) ($B@5(B)$BCv8T(B $B9((B$B!&(B($B;:Am8&%3%s%Q%/%H2=3X(B) ($B@5(B)$B?70f(B $BK.IW(B | QM/MM Simulation activation energy carbohydrate
| S-11 | 1050 |
17:40$B!A(B 18:00 | N127 | $B9b299b05?e$K$*$1$k%Y%s%<%s$N%K%H%m2=(BII ($B;:Am8&%3%s%Q%/%H2=3X%W%m%;%98&5f%;%s%?!<(B) $B!{(B($B@5(B)$BH*ED(B $B@6N4!&(B($B@5(B)$BNkLZ(B $BL@(B$B!&(B($B@5(B)$B$B!&(B$B$B!&(B($B@5(B)$B@nyu(B $B?50lO:(B | Supercritical water nitration nitrobenzene
| S-11 | 530 |
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| S-10 | 1011 |
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| S-10 | 1015 |
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| S-10 | 99 |
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| S-10 | 17 |
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| S-10 | 905 |
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| S-10 | 969 |
(11:20$B!A(B12:00)$B!!(B($B;J2q(B $B2<%v662m |
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| S-10 | 1121 |
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| S-10 | 31 |
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| S-10 | 849 |
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| S-10 | 245 |
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| S-10 | 323 |
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| S-10 | 760 |
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| S-10 | 843 |
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| S-10 | 953 |
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| S-10 | 1010 |
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| S-10 | 251 |
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| S-10 | 660 |
16:20$B!A(B 16:40 | O123 | $B%S!<%kGtM3Mh$N3h@-C:$rMQ$$$k?eMO1UCf$NHyNLM-32M-5!J*$N=|5n%W%m%;%9(B ($B4X@>Bg9)(B) $B!{(B($B@5(B)$BB<;3(B $B7{90(B$B!&(B$BJ?Ln(B $BM$$B!&(B$BM{(B $B5|9@(B$B!&(B($B@5(B)$B | activated carbon beer lees harmful organic compounds
| S-10 | 291 |
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16:40$B!A(B 17:00 | O124 | $B?e;@2=E47O5[Ce:^$N1"%$%*%s5[CeFC@-$K$D$$$F(B ($BF|E49[6H(B) $B!{(B($B@5(B)$B>e2,(B $BMN2p(B$B!&(B($B@5(B)$BC+B<(B $BM5$B!&(B($BElBg(B) $B%I%I%S%P(B $B%8%g%&%k%8(B$B!&(B$BF#ED(B $BK-5W(B | Waste Water Treatment Iron($B-7(B) Removal
| S-10 | 472 |
17:00$B!A(B 17:20 | O125 | $B%.%V%5%$%HM3Mh?75,0!%R;@=|5n:^$N3+H/(B ($B6a5&BgLt(B) $B!{(B($B3X(B)$B=oJ}(B $BJ8I'(B$B!&(B($B@5(B)$B@n:j(B $BD>?M(B$B!&(B($B@5(B)$B9b66(B $B9,;0(B$B!&(B($B@5(B)$B3]Hu(B $B0l98(B$B!&(B($B@5(B)$BC*ED(B $B@.5*(B | gibbsite calcination arsenic
| S-10 | 271 |
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| S-10 | 275 |
17:40$B!A(B 18:00 | O127 | $BEE2r$K$h$kGS?eCf$NCbAG=|5n%W%m%;%9$N8!F$(B ($BF|E49[6H(B) $B!{(B($B@5(B)$B0C:j(B $B2m>O(B$B!&(B$BEDCf(B $B9(;K(B | Electrolysis Nitrogen Removal Flow Rate
| S-10 | 483 |
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13:00$B!A(B 13:20 | P113 | [$BM%=(O@J8>^(B]$B8G1UYxYBAe$K$*$1$kN3;R$H%$%s%Z%i$N>WFMAj4X<0(B ($B=P8w6=;:(B) ($B@5(B)$B0K:4CO(B $B$B!&(B($BEl9)Bg1!M}9)(B) ($B@5(B)$BBg@n86(B $B??0l(B$B!&(B$B!{(B($B@5(B)$B>.@n(B $B9@J?(B | solid-liquid mixing impact sound Wavelet analysis
| S-39 | 46 |
13:20$B!A(B 13:40 | P114 | [$BM%=(O@J8>^(B]$BEE5$1KF0$K$h$kHy@8J*8GDj2=6u4VFb$N4pe(B ($BAaBgM}9)(B) $B!{(B($B@5(B)$B>oED(B $BAo(B$B!&(B$B2lPT(B $B<~0l(B$B!&(B$BNS(B $B9@;V(B$B!&(B$BBg6z(B $BAo(B$B!&(B($B@5(B)$B;{ED(B $B>$B!&(B($B@5(B)$BJ?ED(B $B>4(B | Denitrification Electrophoresis Immobilized Bacteria
| S-39 | 47 |
13:40$B!A(B 14:00 | P115 | [$BM%=(O@J8>^(B]$B%9%k%[%s2=%]%j%$%_%I$rA06nBN$H$9$kDc29>F@.Kl$NAO@=$HF)2aJ*@-(B ($B;38}Bg1!M}9)(B) $B!{(B($B@5(B)$B4nB?(B $B1QIR(B$B!&(BMd Nurul Islam$B!&(B($B@5(B)$BEDCf(B $B0l9((B$B!&(B($B@5(B)$B2,K\(B $B7r0l(B | Sulfonated polyimide Membrane separation Gas separation
| S-39 | 572 |
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| S-39 | 49 |
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| S-39 | 52 |
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| S-39 | 143 |
15:00$B!A(B 15:20 | P119 | [$BM%=(O@J8>^(B]$B2=3XE*HsJ?9U%b%G%k$K$h$kM6F37k9g7?G.%W%i%:%^$KBP$9$k;@AG%$%s%8%'%/%7%g%s$N8z2L(B ($BElKLBg9)(B) $BLPED(B $B@5:H(B$B!&(B($BEl9)BgM}9)(B) $B8|CO(B $B?.I'(B$B!&(B($BEl9)BgAmM}9)(B) $B!{(B($B@5(B)$BEOJU(B $BN49T(B | Thermal plasma Induction plasma Modeling
| S-39 | 48 |
(15:20$B!A(B16:20)$B!!(B($B;J2q(B $BBgB?M(B) |
15:20$B!A(B 16:20 | P120 | [$B>7BT9V1i(B]$B1Q8l$G9M$($k!&F|K\8l$G9M$($k(B ($BElG@9)Bg1!9)(B) $B!{(B($B@5(B)$B>>2,(B $B@5K.(B | understandable writing straightforward grammar
| S-39 | 162 |
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| S-10 | 694 |
13:20$B!A(B 13:40 | Q114 | $B0BA4$JJ4C:G3NA$N3+H/(B-I.$B?)IJGQ4~J*7O%P%$%*%^%9$+$i$NJ4C:G3NA$N@=B$2DG=@-(B ($BElG@9)Bg(BBASE) $B!{(B($B3X(B)Sysanet Chanounla$B!&(B$B1:>e(B $B7DL1(B$B!&(B$B2qED(B $B@iDE;R(B$B!&(B($BElG@9)Bg1!6&@82J3X5;8&5f1!(B) ($B@5(B)$BKYHx(B $B@5pW(B | Biomass Waste Wood Charcoal
| S-10 | 728 |
13:40$B!A(B 14:00 | Q115 | $B0BA4$JJ4C:G3NA$N3+H/(B-$B-6(B.$BQrDj;^$+$i$NJ4C:G3NA$N@=B$2DG=@-(B ($BElG@9)Bg(BBASE) $B!{1:>e(B $B7DL1(B$B!&(B($B3X(B)Sysanet Chanounla$B!&(B$B2qED(B $B@iDE;R(B$B!&(B($BElG@9)Bg1!6&@82J3X5;8&5f1!(B) ($B@5(B)$BKYHx(B $B@5pW(B | biomass charcoal pesticide
| S-10 | 823 |
(14:00$B!A(B15:00)$B!!(B($B:BD9(B $BG.EDMN0l(B) |
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14:20$B!A(B 14:40 | Q117 | $B2C059b29=hM}$K$h$kLZ ($BBgJ,Bg9)(B) $B!{(B($B3X(B)$B0f>e(B $B5.8x(B$B!&(B($B@5(B)$BJ?2,(B $BFX(B$B!&(B($B@5(B)$BT"J,(B $B=$;0(B$B!&(B($B@5(B)$BDL:e(B $B1I0l(B$B!&(B($B@5(B)$BJ?ED(B $B@?(B$B!&(B($BBgJ,Bg(B) ($B@5(B)$B1)Ln(B $BCi(B | combined treatment of high pressure and heat waste wood recycled board
| S-10 | 984 |
14:40$B!A(B 15:00 | Q118 | $B7k>=@-%;%k%m!<%9$NG.J,2r5sF0$K5Z$\$9J4:U8z2L(B ($B:eI\Bg9)(B) $B!{(B($B@5(B)$B4d:j(B $BCR9((B$B!&(B$B86(B $BM3;R(B$B!&(B($B@5(B)$BLJLn(B $BE/(B | crystallinity cellulose grinding
| S-10 | 198 |
(15:00$B!A(B15:40)$B!!(B($B:BD9(B $B9>F,Lw9,(B) |
15:00$B!A(B 15:20 | Q119 | $BD62;GH$rMxMQ$7$??e;@2=%J%H%j%&%`?eMO1UCf$N%;%k%m!<%9J,2r(B ($BL>Bg9)(B) $B!{(B($B3X(B)$B9b0B(B $BH~Li;R(B$B!&(B($B@5(B)$B>>2,(B $BC$O:(B$B!&(B($B@5(B)$BFs0f(B $B?8(B$B!&(B($B@5(B)$B9aED(B $BG&(B | cellulose ultrasound sodium hydroxide
| S-10 | 473 |
15:20$B!A(B 15:40 | Q120 | $B;@@-%$%*%s1UBN6&B82<$K$*$1$k%X%-%=!<%9$+$i$N(B5-$B%R%I%m%-%7%a%A%k%U%k%U%i!<%k$N@=K!(B ($BElKLBgB?858&(B) $B!{(B($B3X(B)$BJq(B $BA44n(B$B!&(B$B6,(B $B_c(B$B!&(B($B@5(B)$BIZED(B $BBgJe(B$B!&(B($B@5(B)$B2#;3(B $B@i><(B | 5-hydroxymethylfurfural ionic liquid supercritical carbon dioxide
| S-10 | 819 |
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16:00$B!A(B 16:20 | Q122 | $B@>9k=#4%AgCO$K$*$1$kBg5,LO%P%$%*%^%9@8;:%7%9%F%`$N$?$a$N5;=Q3+H/(B ($B?.=#BgA!0](B) $B!{(B($B@5(B)$B9b66(B $B?-1Q(B$B!&(B($B:eBg4p9)(B) ($B@5(B)$B9>F,(B $BLw9,(B | arid land afforestation biomass energy regeneration
| S-10 | 529 |
16:20$B!A(B 16:40 | Q123 | $B4%AgCO$K$*$1$kBg5,LO%P%$%*%^%9@8;:%7%9%F%`$N7P:Q@-I>2A(B ($B:eBg4p9)(B) $B!{(B($B@5(B)$B9>F,(B $BLw9,(B$B!&(B($B?.=#BgA!0](B) ($B@5(B)$B9b66(B $B?-1Q(B | arid land afforestation biomass energy cost estimation
| S-10 | 676 |
16:40$B!A(B 17:00 | Q124 | $B8zN(E*$JJ*u$H2]Bj(B ($BK-665;Bg(B) $B!{(B($B@5(B)$B5L(B $BN40l(B$B!&(B($B@5(B)$BG.ED(B $BMN0l(B$B!&(B($B@5(B)Anugerah Widiyanto$B!&(B($B@5(B)$BBgLg(B $BM5G7(B$B!&(B($B@5(B)$B8eF#(B $B>090(B$B!&(B($B@5(B)$BF#9>(B $B9,0l(B | Plantation Material flow Fertilization
| S-10 | 821 |
(17:00$B!A(B18:00)$B!!(B($B:BD9(B $B |
17:00$B!A(B 17:20 | Q125 | $B%$%s%I%M%7%"$N@=E|9)>l$K$*$1$k%(%M%k%.!2A$*$h$S(BCDM$B%]%F%s%7%c%k$N8!F$(B ($BK-665;Bg(B) $B!{(B($B@5(B)Anugerah Widiyanto$B!&(B($B@5(B)$BG.ED(B $BMN0l(B$B!&(B($B@5(B)$B5L(B $BN40l(B$B!&(B($B@5(B)$BBgLg(B $BM5G7(B$B!&(B($B@5(B)$B8eF#(B $B>090(B$B!&(B($B@5(B)$BF#9>(B $B9,0l(B | Sugarcane Bagasse Energy utilization
| S-10 | 999 |
17:20$B!A(B 17:40 | Q126 | $B%$%s%I%M%7%"$K$*$1$k%"%0%m%$%s%@%9%H%j!<$N%(%M%k%.! ($BK-665;Bg(B) $B!{(B($B@5(B)$BG.ED(B $BMN0l(B$B!&(B($B@5(B)Anugerah Widiyanto$B!&(B($B@5(B)$B5L(B $BN40l(B$B!&(B($B@5(B)$BBgLg(B $BM5G7(B$B!&(B($B@5(B)$B8eF#(B $B>090(B$B!&(B($B@5(B)$BF#9>(B $B9,0l(B | Biomass Utilization Biorefinery Agro-industry
| S-10 | 976 |
17:40$B!A(B 18:00 | Q127 | $B9SGyCO$K$*$1$kBg5,LO%(%M%k%.!<%W%i%s%F!<%7%g%s5Z$SG3NA2=%W%m%;%9$N%(%M%k%.!2A(B ($B@.l~Bg(B) ($B3X(B)$BDi(B $BM':H(B$B!&(B$BN$@n(B $B=EIW(B$B!&(B($B;:Am8&(B) $BED86(B $B@;N4(B$B!&(B($B@.l~Bg(B) $B!{(B($B@5(B)$B>.Eg(B $B5*FA(B | Biomass CO2 emission plantation
| S-10 | 189 |
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9:00$B!A(B 9:20 | R101 | $B@{2sMIF03IYB$K$*$1$k%P%C%U%kIU1_E{Ae$NN.F0FC@-(B ($BL>9)Bg(B) ($B@5(B)$B2CF#(B $BDw?M(B$B!&(B$B!{(B($B3X(B)$B0f>e(B $B??H~(B$B!&(B($B@5(B)$BB?ED(B $BK-(B$B!&(B($B@5(B)$BD9DE(B $BM:0lO:(B | Mixing Agitation Shaking
| S-31 | 90 |
9:20$B!A(B 9:40 | R102 | $BAeDl7A>u$N0[$J$k3IYBAe$K$*$1$kJP?43IYB(B ($B;37ABg9)(B) $B!{(B($B3X(B)$B<286(B $BBgJe(B$B!&(B($B@5(B)$B9b66(B $B9,;J(B | mixing eccentric impeller bottom shape
| S-31 | 86 |
9:40$B!A(B 10:00 | R103 | $B79 ($B;37ABg1!M}9)(B) $B!{(B($B3X(B)$Bi.:,(B $BBg4u(B$B!&(B($B@5(B)$BLg3p(B $B=($B!&(B($B@5(B)$B86ED(B $B1QFs(B$B!&(B($B@5(B)$B7*;3(B $B2mJ8(B
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| S-31 | 103 |
(10:00$B!A(B11:00)$B!!(B($B:BD9(B $B2CF#Dw?M(B) |
10:00$B!A(B 10:20 | R104 | $BAXN.>e26F0YxYB$K$*$1$k@^$j$?$?$_:.9g5!9=$N2r@O(B ($B:eBg4p(B) $B!{(B($B3X(B)$B9b2,(B $BBg(B$B!&(B(JFE$B%1%_%+%k(B) $B:nK\(B $BOB=((B$B!&(B($B85:eBg4p(B) ($B@5(B)$BJ?ED(B $BM:;V(B$B!&(B($B:eBg4p(B) ($B@5(B)$B0f>e(B $B5AO/(B | reciprocating disk agitator unstable manifold mixing
| S-31 | 257 |
10:20$B!A(B 10:40 | R105 | $BHsDj>o3IYB$K$*$1$k9bG4@-N.BN$N:.9g(B ($B;37ABg1!M}9)(B) $B!{(B($B3X(B)$B7*:e(B $B0l@.(B$B!&(B($BBgF|K\%$%s%-(B) ($B@5(B)$B4X:,(B $B6Q(B$B!&(B($B;37ABg1!M}9)(B) ($B@5(B)$B9b66(B $B9,;J(B | mixing unsteady mixing high viscosity
| S-31 | 576 |
10:40$B!A(B 11:00 | R106 | $B3Q?6F03IYBMc$K$h$k9bG4EY%K%e!<%H%sG4@-1U$NAXN.:.9g(B ($B?73cBg9)(B) $B!{(B($B3X(B)$B1J0f(B $B9/G7(B$B!&(B($B@5(B)$B5HED(B $B2mE5(B$B!&(B($B?73cBg<+A38&(B) ($B@5(B)$B;3:](B $BOBL@(B$B!&(B($B?73cBg9)(B) ($B@5(B)$BBg@n(B $B51(B$B!&(B($BEg:j@=:n=j(B) ($B@5(B)$B | Lipuid phase mixing Angularly oscillating impeller Laminar flow
| S-31 | 963 |
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11:00$B!A(B 11:20 | R107 | $B%9%W%l!<<0:.9g%7%9%F%`$rMQ$$$?(BO/W$B%(%^%k%7%g%s$ND4@=(B ($BElM}Bg9)(B) $B!{(B($B3X(B)$B$B!&(B($B@5(B)$B>1Ln(B $B8|(B$B!&(B($B@5(B)$BBgC](B $B>!?M(B$B!&(B($B@5(B)$B:4F#(B $B0l>J(B$B!&(B($B%H%j%K%F%#!<%i%\(B) ($B@5(B)$BLnB<(B $B=SIW(B$B!&(B($B%P%$%*%a%G%#%"(B) $B1) | emulsion spray droplet
| S-31 | 835 |
11:20$B!A(B 11:40 | R108 | $B0[$J$k7A>u$NuBV(B ($BElM}Bg9)(B) $B!{(B($B3X(B)$BIpED(B $BH%(B$B!&(B$B4dK\(B $B?rM5(B$B!&(B($B@5(B)$BK>7n(B $B2mJ8(B$B!&(B($BAn8&2=3X(B) ($B@5(B)$B100f(B $B>OFA(B | mixing liquid-liquid dispersion baffle
| S-31 | 81 |
11:40$B!A(B 12:00 | R109 | $BJ#9gN.7?3IYBMcLL>e$N05NOJ,I[$HEAC#F0NO(B ($BElM}Bg9)(B) ($B3X(B)$B9b66(B $BM':H(B$B!&(B$B!{(B($B3X(B)$B0BF#(B $B?r9T(B$B!&(B($B@5(B)$BK>7n(B $B2mJ8(B$B!&(B($B:4C]2=3X5!3#(B) $B1v86(B $B9n8J(B | mixing pressure distribution CFD
| S-31 | 37 |
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13:00$B!A(B 13:40 | R113 | [$BE8K>9V1i(B]$B2D;k2= ($B2#9qBg9)(B) $B!{(B($B@5(B)$B>e%N;3(B $B<~(B | mixing technology CFD ERT
| S-31 | 378 |
(13:40$B!A(B14:40)$B!!(B($B:BD9(B $B>1Ln(B $B8|(B) |
13:40$B!A(B 14:00 | R115 | $B%l!<%6!<;6Mp8w7WB,$rMQ$$$?2sJ,<0>=@OAe$K$*$1$k0ll7WB,K!$N8!F$(B ($B2#9qBg1!9)(B) $B!{(B($B3X(B)$B;3ED(B $BBg$B!&(B($B@5(B)$B;03Q(B $BN4B@(B$B!&(B($B@5(B)$B?N;V(B $BOBI'(B$B!&(B($B@5(B)$B>e%N;3(B $B<~(B | mixing crystallization primary nucleation
| S-31 | 489 |
14:00$B!A(B 14:20 | R116 | $B%I%i%U%H%A%e!<%VIU3IYB7?>xH/@=1vAe$K$*$1$k7k>=@.D92aDx$K5Z$\$9A`:n>r7o$N1F6A(B ($B2#9qBg1!9)(B) $B!{(B($B3X(B)$BK-ED(B $BCR8<(B$B!&(B($B@5(B)$B;03Q(B $BN4B@(B$B!&(B($B@5(B)$B?N;V(B $BOBI'(B$B!&(B($B@5(B)$B>e%N;3(B $B<~(B | mixing crystallization crystal size distribution
| S-31 | 375 |
14:20$B!A(B 14:40 | R117 | $B@xG.M"Aw?eOBJ*$N7k>=@O=P$K5Z$\$93IYB>r7o$N1F6A(B ($B?@8MBg1!9)(B) $B!{(B($B3X(B)$B;38}(B $B?NH~(B$B!&(B($B@5(B)$B8VED(B $B1YG7(B$B!&(B($B@5(B)$BNkLZ(B $BMN(B$B!&(B($B@5(B)$BGv0f(B $BMN4p(B | crystallization mixing particle diameter
| S-31 | 935 |
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14:40$B!A(B 15:00 | R118 | $BB?MM2=$9$k8G!>1U7O3IYB$rBP>]$H$7$?3IYB ($B:4C]2=3X5!3#9)6H(B) $B!{:4F#(B $B@?(B$B!&(B$B6b?9(B $B5W9,(B$B!&(B($B@5(B)$B2CF#(B $B9%0l(B | Mixing Solid-Liquid Dispersion
| S-31 | 25 |
15:00$B!A(B 15:20 | R119 | $BB?MM2=$9$k8G!>1U7O3IYB$rBP>]$H$7$?3IYB ($B:4C]2=3X5!3#9)6H(B) $B!{:4F#(B $B@?(B$B!&(B$B6b?9(B $B5W9,(B$B!&(B($B@5(B)$B2CF#(B $B9%0l(B | Mixing Solid-Liquid Suspension
| S-31 | 26 |
15:20$B!A(B 15:40 | R120 | $B8G1UYxYB$K$*$1$k ($B%@%$%;%k2=3X(B) ($B@5(B)$B550f(B $BEP(B$B!&(B($BL>9)Bg(B) ($B@5(B)$B2CF#(B $BDw?M(B$B!&(B$B!{(B($B3X(B)$B0BF#(B $B=_0l(B$B!&(B($B@5(B)$BB?ED(B $BK-(B$B!&(B($B@5(B)$BD9DE(B $BM:0lO:(B | mixing solid-liquid mass transfer baffle
| S-31 | 89 |
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15:40$B!A(B 16:00 | R121 | $BA:@-%9%i%j!<$HDcG4EY1U$N?WB.:.9g%O%$%V%j%C%IMc$N3+H/(B ($BEl9)Bg1!M}9)(B) $B!{(B($B@5(B)$B>.@n(B $B9@J?(B$B!&(B($B@5(B)$BBg@n86(B $B??0l(B$B!&(B($B002=@.(B) ($B@5(B)$BNS(B $BE/9-(B$B!&(B($B:4C]2=3X5!3#9)6H(B) ($B@5(B)$B1v86(B $B9n8J(B | Bingham fluid hybrid impeller high speed mixing
| S-31 | 21 |
16:00$B!A(B 16:20 | R122 | $B3IYBF0NO@~?^$K4p$E$/O"B3<0G^BN3IYB%_%k$N=jMWF0NO?d;;(B ($B2#9qBg1!9)(B) $B!{(B($B@5(B)$B?N;V(B $BOBI'(B$B!&(B$BLn8}(B $B5AE5(B$B!&(B($B@5(B)$B;03Q(B $BN4B@(B$B!&(B($B@5(B)$B>e%N;3(B $B<~(B$B!&(B($B0f>e@=:n=j(B) $B0f>e(B $BK'N4(B$B!&(B$BNkLZ(B $B9';J(B | grinding media agitated mill power consumption
| S-31 | 377 |
16:20$B!A(B 16:40 | R123 | PVC$B$rLO5<$7$?(BDC$B7|By=E9g$K$*$1$k=E9gBN$NJ4BNFC@-$K5Z$\$93IYB>r7o$N1F6A(B ($BEE5$2=3X9)6H(B) $B!{(B($B@5(B)$B86ED(B $B2B>0(B$B!&(B$B:=ED(B $B7i(B$B!&(B$BA};R(B $BK'90(B$B!&(B($B2#9qBg1!9)(B) ($B@5(B)$B>e%N;3(B $B<~(B$B!&(B($B@5(B)$B?N;V(B $BOBI'(B$B!&(B($B@5(B)$B;03Q(B $BN4B@(B | poly vinyl chloride mixing polymerization
| S-31 | 686 |
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9:00$B!A(B 9:20 | S101 | $B%^%$%/%m%A%c%s%M%kFb$NN3;R4V$*$h$SN3;RJILL4V>WFM8=>]$N5<;wE*(BDNS$B2r@O(B ($BEl9)Bg1!M}9)(B) $B!{(B($B@5(B)$BBg@n86(B $B??0l(B$B!&(B(Ansys Inc) Agrawal Madhusuden$B!&(B(Fluent AP) Street David$B!&(B($BEl9)Bg1!M}9)(B) ($B@5(B)$B>.@n(B $B9@J?(B | microchannel particle collision
| S-5 | 474 |
9:20$B!A(B 9:40 | S102 | $B?tCM%7%_%e%l!<%7%g%s$K$h$kB?AX%U%#%k%`MOM;2!=P%W%m%;%9$NG4CF@-2r@O(B ($B6eBg1!9)(B) $B!{(B($B3X(B)$B>>Hx(B $BM:Fs(B$B!&(B($B@5(B)$BL>2E;3(B $B>MLi(B$B!&(B($B@5(B)$B3a86(B $BL->0(B | multi-layer film coextrusion polymer melt flow
| S-5 | 767 |
9:40$B!A(B 10:00 | S103 | CO2$B2=3X5[<}%W%m%;%9$K$*$1$k1UB&J* (RITE) $B!{(B($B@5(B)$B8eF#(B $BOBLi(B$B!&(B$B2,It(B $B90F;(B$B!&(B$B@6?e(B $B?.5H(B$B!&(B$B>.LnED(B $B@5L&(B | chemical absorption carbon dioxide mass transfer coefficient
| S-5 | 833 |
(10:00$B!A(B11:00)$B!!(B($B:BD9(B $B2O9g=( |
10:00$B!A(B 10:20 | S104 | $B%^%$%/%m%A%c%M%k$rM-$9$k%/%m%9%U%m(B-$B8B30_I2aAuCVFb$N0\F08=>](B ($BEl9)BgM}9)(B) $B!{(B($B@5(B)$B5H@n(B $B;KO:(B$B!&(B($B85El9)BgM}9)(B) ($B3X(B)$BEg:j(B $BBY(B | Microchannel Ultrafiltration Cross Flow
| S-5 | 628 |
10:20$B!A(B 10:40 | S105 | $B3J;R%\%k%D%^%sK!$K$h$k(BCarreau$B%b%G%kN.BNN.$l$N?tCM2r@O(B ($B<$B!&(B($B@5(B)$BB@ED(B $B8w9@(B$B!&(B($B@5(B)$B5HED(B $BK-(B$B!&(B($B6eBg1!9)(B) ($B@5(B)$B>>7((B $BMN2p(B | Lattice Boltzmann method Shear-thinning fluid Carreau model
| S-5 | 705 |
10:40$B!A(B 11:00 | S106 | $B1UE)$N>WFM$rH<$&5$1U3&LL$rDL$7$F$NJ* ($B5~Bg9)(B) $B!{(B($B3X(B)$B9b3@(B $BD>>0(B$B!&(B($B@5(B)$B>.?9(B $B8g(B | mass transfer air-water interface droplet
| S-5 | 39 |
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11:00$B!A(B 11:20 | S107 | $B9bG4@-N.BNCf$NHyN3;RJ,;65sF0$K4X$9$k%b%G%k2r@O(B ($B?@8MBg1!(B) $B!{(B($B3X(B)$BD9C+@n(B $B3(H~(B$B!&(B($B@5(B)$B55;3(B $B2BF`;R(B$B!&(B($B?@8MBg1!9)(B) ($B@5(B)$BNkLZ(B $BMN(B$B!&(B($B@5(B)$B8VED(B $B1YG7(B$B!&(B($B@5(B)$BGv0f(B $BMN4p(B | dispersion characteristics of fine particles model analysis
| S-5 | 435 |
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| S-5 | 831 |
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| S-12 | 774 |
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| S-12 | 691 |
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| S-12 | 614 |
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| S-12 | 1020 |