
A $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 | |
| $B!Z3X@8>^9V1i![G.9)3X(B/$BH?1~9)3X(B/$B%(%l%/%H%m%K%/%9(B/$B:`NA!&3&LL(B | |||||
| (10:00$B!A(B11:30) ($B:BD9(B $B0p3@(B $BF`ET;R!&7,@^(B $BF;:Q(B) | |||||
| A101 | $BM6F32CG.$rMQ$$$?6bB0GvKl:`NA$N2CG.%W%m%;%9$N?tCM2r@O(B | nduction Heating Hydrogen Separation Membrane Comsol | 3-a | 22 | |
| A102 | $B%U%'%N!<%k$N8w?(G^J,2rH?1~$NJ,2rB.EY$KA`:n>r7o$,$*$h$\$91F6A(B | Photocatalytic decomposition Phenol Degradation rate | 5-a | 12 | |
| A103 | $B%+!<%\%s%J%N%A%e!<%V$+$i$N4%<0?(G^=|5n$K$*$1$k1vAG!"=-AG!"%h%&AG$NHf3S$H5!9=2r@O(B | carbon nanotube purification halogen vapors | 5-h | 26 | |
| A104 | $BD62;GH%?%s%G%`F}2=K!$rMQ$$$?7|By=E9g$K$*$$$FD62;GH<~GH?t$,N3;R7B$KM?$($k1F6A(B | Ultrasound Droplet Syze Polymer Particle Size | 12-d | 11 | |
| A105 | $B%a%i%_%s%U%)!<%`$rMQ$$$?E`7kH?1~>l$NJ,3d$K$h$k%]%j%^!<%J%NN3;R$NI=LLEE2Y$N@)8f(B | polymer nanoparticles ice reactor surface charge | 12-d | 29 | |
| A106 | $BHy>.1UE)$H(BUV$B>H | Microdroplet Titanium Dioxide Phenol | 5-c | 8 | |
| $B0U8+8r492q(B | |||||
| $BCk5Y$_(B | |||||
| (13:15$B!A(B14:45) ($B:BD9(B $B=)7n(B $B?.!&@6?e(B $BCiL@(B) | |||||
| A111 | $BFsCJ3,%^%$%/%mN.BN%G%P%$%9$rMQ$$$?%^%k%A%3%"Fs=E1UE)$ND4@=$HHyN3;R9g@.(B | Microfluidics Double emulsion droplets Microparticles | 5-f | 4 | |
| A112 | $B%U%'%N!<%k$ND62;GHJ,2r$K$*$1$k3h@-2=%(%M%k%.!<$N<~GH?t0MB8@-(B | Ultrasonic decomposition Rate constant Activation energy | 5-b | 10 | |
| A113 | $B79 | colloidal photonic crystal Bragg reflection structual color | 12-j | 43 | |
| A114 | $B;@2=J*J#9gBN$N?eOB$K$h$kAX>u(BZn-Al$BJ#?e;@2=J*?(G^$N9g@.$H%Y%s%>%$%s;@2=H?1~$X$N1~MQ(B | Layered Double Hydroxide (LDH) Memory Effect Oxidative dehydrogenation of benzoin | 5-a | 33 | |
| A115 | $B2>A[2=9gJ*6u4V$+$i$N?75,%$%*%sEAF3@-%]%j%^!<$N9=B$@_7W(B | Sodium-ion battery Computational chemistry Single-ion conducting polymer electrolyte | 11-a | 16 | |
| A116 | $BD62;GH$K$h$kMOB8;@AG$NC&5$B.EY(B | Ultrasound Degassing rate Dissolved oxygen concentration | 5-b | 6 | |
| $B0U8+8r492q(B | |||||
| $B!ZFCJL9V1i!&(BThe Researcher$B>7BT9V1i![(B | |||||
| A120 | [$BFCJL9V1i(B] $BJ4BN%W%m%;%9$N9b@:EYM=B,$K8~$1$?%G!<%?6nF07?!&J*M}%b%G%k%Y!<%9%b%G%j%s%0(B | Special lecture | 0-a | 46 | |
| A124 | [The Researcher $B>7BT9V1i(B] $BL\$NA0$N8=>]$H8~$-9g$&(B -$B%(%s%8%K%"$H$7$F3X$s$@$3$H(B- | Undecided | 14-e | 55 | |
B $B2q>l(B | |||||
| $B9V1i(B $B;~9o(B | $B9V1i(B $BHV9f(B | $B9V1iBjL\!?H/I=| $B%-!<%o!<%I(B | $BJ,N`(B | $BHV9f(B $B | |
| $B!Z3X@8>^9V1i![H?1~9)3X(B/$B%(%M%k%.!<(B/$B:`NA!&3&LL(B/$B4D6-(B | |||||
| (10:00$B!A(B11:30) ($B:BD9(B $B>>ED(B $B909,!&_7ED(B $BLf2B(B) | |||||
| B101 | $BHy>.%R!<%?$rMQ$$$??(G^8;J,2rB%?J$K$h$k%+!<%\%s%J%N%A%e!<%V$N5$AjO"B39g@.(B | carbon nanotube floating catalyst chemical vapor deposition | 5-h | 27 | |
| B102 | $B?eAGF)2a(BPd-Ag$BKl$K$h$k?eEE2r$rMxMQ$7$?(B2,5-$B%8%a%A%k%U%i%s$N?eAG2=(B | Hydrogen-permeable membrane Hydrogenation 2,5-dimethylfuran | 5-d | 53 | |
| B103 | $B%P%$%*%^%9M3Mh;iKC;@%(%9%F%k$N9g@.$H(BPVC$BMQ2DA::^$H$7$F$NE,MQ2DG=@-I>2A(B | fatty acid ester PVC plasticizer ion-exchange resin | 5-g | 61 | |
| B104 | $B%W%m%H%sEAF3%;%i%_%C%/%;%k$K$*$1$kEE5$2=3XE*B%?J8z2L$rMxMQ$7$?%"%s%b%K%"9g@.$NB.EYO@2r@O(B | Hydrogen carrier Protonic conductor Electrochemical reduction | 9-e | 65 | |
| B105 | $B8GDjAX$*$h$SN.F0AX$G$N%P%$%*%^%9G.J,2r$K$h$k(BBTX$B@8@.$H%j%b%J%$%H$N= | Biomass Pyrolysis Fluidized Bed Catalytic Conversion | 5-g | 40 | |
| B106 | $BD62;GH$K$h$k(BO/W$B%(%^%k%7%g%sD4@=$*$h$S0BDj@-I>2A(B | Emulsion Ultrasound Droplet size distribution | 12-b | 9 | |
| $B0U8+8r492q(B | |||||
| $BCk5Y$_(B | |||||
| (13:15$B!A(B14:30) ($B:BD9(B $B5HB<(B $B>4Bg!&N-(B $B=f0l(B) | |||||
| B111 | MOF$BM3MhCbAG%I!<%WB?9& | Metal–Organic Frameworks Carbon PFAS | 13-a | 35 | |
| B112 | $B%Q!<%U%k%*%m%(!<%F%k2=9gJ*$rMQ$$$?%Q!<%U%k%*%m%G%+%j%sFbJq7??M9);@AG1?HBBN$N7A>u@)8f(B | Artificial Oxygen Carriers Core-Shell Particle Janus Particle | 12-a | 48 | |
| B113 | $B%=%k%\%5!<%^%k%]%j%*!<%k9g@.F<%J%N%W%l!<%H$N7A>u$K5Z$\$9%h%&2=J*2=3X | Copper nanoplate solvo-thermal polyol synthesis iodine species | 12-d | 18 | |
| B114 | CO2$B$r9|3J$KAH$_9~$s$@6bB0M-5!9=B$BN$N9g@.$H?et2=$X$N1~MQ(B | CO2 utilization Metal–organic frameworks Water treatment | 13-g | 34 | |
| B115 | $BB!4o5!3#^uN.1~MQ$K8~$1$?%3%"%7%'%k7??M9);@AG1?HBBN$N@:L)$m2aKlDL2a@-I>2A(B | Artificial oxygen carrier Membrane permeability Machine organ perfusion | 12-c | 31 | |
| $B0U8+8r492q(B | |||||
C $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 | |
| $B!Z3X@8>^9V1i![4pACJ*@-(B/$BN3;R!&N.BN(B/SIS/$B%(%M%k%.!<(B | |||||
| (10:00$B!A(B11:15) ($B:BD9(B $B5H8+(B $BLwCK!&5\@n(B $B2mLp(B) | |||||
| C101 | $BB?@.J,7OJ#9g;@2=J*$N9g@.$*$h$S?eOBH?1~%a%+%K%:%`(B | Chemical heat storage Mixed Oxide Hydration | 9-b | 13 | |
| C102 | A$B!&(BB$B%5%$%H6&CV49%9%+%s%G!<%H7O%Z%m%V%9%+%$%H7?%W%m%H%sEAF3BN$N9g@.$H9=B$0BDj2=(B | Proton conductor Perovskite Structural stabilization | 9-e | 66 | |
| C103 | $BB?2A%"%k%3!<%k:.9gJ*$N8GBN(B-$B8GBNAjE>0\5sF0(B | Latent heat storage Neopentyl glycol Solid-solid phase change | 9-b | 15 | |
| C104 | $B@xG.C_G.:`$r4^$`G.8r49G^BN$K$h$kB@M[G.6nF0%1%_%+%k%R!<%H%]%s%W$N=8G.@-G=8~>e(B | latent heat heat exchange material solar chemical heat pump | 9-b | 30 | |
| C105 | $B?e;@2=%+%k%7%&%`7OJ#9g?e;@2=J*$N9g@.$*$h$S2=3XC_G.:`$X$N1~MQ(B | Calcium hydroxide Chemical heat storage Mechano-chemical synthesis | 9-b | 14 | |
| $B0U8+8r492q(B | |||||
| $BCk5Y$_(B | |||||
| (13:15$B!A(B14:30) ($B:BD9(B $BM{(B $BN11>!&2O9g!JLn4V!K(B $BHK;R(B) | |||||
| C111 | $BJ4BN:.9g2aDx$N9bB.M=B,$N$?$a$N(BDEM-CFD$B%Y!<%9=LLs%b%G%k$N3+H/(B | DEM–CFD powder-mixing deep-learning | 2-e | 42 | |
| C112 | $B%l!<%68w$rMxMQ$7$?GrByK!$K$h$kM-5!=$>~%J%NN3;R(B+$BM-5!MOG^7O$NJ,;6!&6E=8$NI>2A(B | Organically-modified nanoparticle Organic solvent Solubility | 1-a | 68 | |
| C113 | AI$B%Y!<%9=LLs%b%G%k$K$h$k%9%i%j! | Reduced-order model DEM-DNS Slurry | 6-c | 2 | |
| C114 | $B%"%s%b%K%&%`1v$rE:2C$7$?Dc>x5$051UBN%"%s%b%K%"$NEE5$J,2r$K$h$k?eAG@8@.(B | Hydrogen generation Ammonia electrolysis Ammonium salt | 9-e | 57 | |
| C115 | $B%(%V%j%*%a!<%?K!$K$h$k%a%?%N!<%k(B+4-$B%a%A%k%F%H%i%R%I%m%T%i%s7O$N5$1UJ?9U$NB,Dj$HAj4X(B | Vapor-liquid equilibria 4-methyltetrahydropyran ebulliometric method | 1-a | 69 | |
| $B0U8+8r492q(B | |||||
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 | |
| $B!Z3X@8>^9V1i![J,N%(B/$BD6NW3&N.BN(B | |||||
| (10:00$B!A(B11:15) ($B:BD9(B $BE7Ln(B $B2B@5!&;3ED(B $B??@!(B) | |||||
| D101 | $BD6NW3&?eCf$N%X%W%F%s;@$NC&;@AG2=$K$*$1$kH?1~05NO$N1F6A(B | supercritical water carboxylic acids deoxygenation | 8-d | 25 | |
| D102 | $B9b05(BCO2$B$H%(%?%N!<%k?eMO1U$N8~N.@\?($K$*$1$k%(%?%N!<%kCj=P5sF0(B | extraction supercritical fluid lignin | 8-c | 44 | |
| D103 | $BD6NW3&(BCO2$BIOMOG^HyN3;R2=K!$K$h$j:n@=$7$?(BPt/CeO2$B$N%0%k%3!<%98!=PFC@-(B | Swirl mixer SEDS process Supercritical carbon dioxide | 8-f | 28 | |
| D104 | $B05NOJQ2=$rMxMQ$7$?9b299b05?eA0=hM}$,%Q%i%_%m%s$N9=B$$*$h$S2C?eJ,2rFC@-$K5Z$\$91F6A(B | Hot Compressed Water Paramylon Pretreatment with Pressure Variation | 8-d | 32 | |
| D105 | CO2-$B%(%?%N!<%k(B-$B?e7O$K$*$1$k%j%0%K%sM3MhK'9aB2%"%k%G%R%I2=9gJ*$NCj=P5sF0(B | lignin extraction high pressure CO2 | 8-c | 36 | |
| $B0U8+8r492q(B | |||||
| $BCk5Y$_(B | |||||
| (13:15$B!A(B14:30) ($B:BD9(B $B>1Ln(B $B8|!&;3K\(B $BE0Li(B) | |||||
| D111 | $B%]%jF};@(B-$B3h@-C:(B-$BJ#9gKl$K$h$k@wNA$N5[Ce=|5n(B | composite membrane poly(lactic acid) activated carbon | 4-a | 19 | |
| D112 | $BE7A3%<%*%i%$%HCf$N(BNa/Ca$B6&B87O$,7A@.$9$k%"%s%b%K%"5[CeE@$N5!G=I>2A(B | Natural zeolite Ammonia adsorbent Ammonia desorption | 4-e | 23 | |
| D113 | $BG"AG$*$h$S1v2=0!1t$N6&E:2C$K$h$k%Z%C%H%\%H%kM3Mh3h@-C:$ND4@=$H>K;@%$%*%s$N(B $B5[CeFC@-(B | Plastic bottle Nitrate ion Activated carbon | 4-e | 50 | |
| D114 | $BM-5!;@1vGQ4~J*$N:F;q8;2=$N$?$a$NO"B38~N.1U1UCj=PAuCV$N3+H/(B | continuous countercurrent liquid-liquid extraction soap stock recycle | 4-f | 56 | |
| D115 | $B%j%s;@E:2C%<%*%i%$%H$N%"%s%b%K%"5[CeC&N%@-G=$H;@@- | Ammonia adsorption-desorption Zeolite Phosphate-modified zeolite | 4-e | 24 | |
| $B0U8+8r492q(B | |||||
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 | |
| $B!Z3X@8>^9V1i![N3;R!&N.BN(B/$B%P%$%*(B/$B:`NA!&3&LL(B | |||||
| (10:00$B!A(B11:30) ($B:BD9(B $B:4F#(B $B@5=(!& | |||||
| E101 | $B5$K"N.$K$h$k<+Ne%9%m%C%7%s%0$N(BCFD$B%b%G%k9=C[$HN.F0!&J* | sloshing bubble CFD | 2-e | 38 | |
| E102 | $BF10lN37B$NCf6uN3;R$HCf | structural color colloidal crystals hollow particles | 12-d | 70 | |
| E103 | $BN.F0AX%W%m%;%9$K8~$1$??e>x5$6&B82<$G$NE49[@PJ4?eAG4T85B.EY(B | Hydrogen reduction Fluidized bed Reaction kinetics | 2-c | 39 | |
| E104 | T$B;z7?9gN.$K$h$k1U1U%9%i%0N.7A@.$K$*$$$FA`:n>r7o$,FbIt=[4DN.$K5Z$\$91F6A$N2r@O(B | Liquid-liquid Slug Flow Internal Circulation Minichannel | 2-e | 37 | |
| E105 | $B@8J*$KCeA[$rF@$?F0E*$J1UBN%U%)%H%K%C%/7k>=(B | Stimuli responsible Photonic crystals Structural color | 12-c | 71 | |
| E106 | $BN.F0AX$rMQ$$$??eAG$K$h$kE49[@PJ4$N4T85(B | Fluidized Bed Hydrogen Reduction Iron Ore Reduction | 2-c | 3 | |
| $B0U8+8r492q(B | |||||
| $BCk5Y$_(B | |||||
| (13:15$B!A(B14:45) ($B:BD9(B $BMxC+(B $BfFJ?!&W"?9(B $B9@M4(B) | |||||
| E111 | Stabilization of Hypoxanthine Detection with a Sample Well-Integrated Molecularly Imprinted Polymer Sensor Chip | Molecularly Imprinted Polymer Hypoxianthine Sensor | 7-e | 58 | |
| E112 | $B9=B$>uBV$N@)8f$K4p$E$/%RAG%;%s%5!<%?%s%Q%/ | Arsenic structural change cysteine | 7-b | 45 | |
| E113 | $B%9%H%m%s%A%&%`4^M-(BHA-PMMA$BJ#9g%b%N%j%9$X$N%?%s%Q%/ | monolith hydroxyapatite PMMA | 7-c | 20 | |
| E114 | $B?e@-(B2$BAj7O$NAjJ,N%@)8f$K$h$k:YK&G]M\MQ%O%$%I%m%2%k%9%]%s%8$N:n@=(B | 3D cell culture Aqueous two-phase system Porous materials | 7-a | 17 | |
| E115 | $BBh;M5i2=%-%H%5%s(B–$B7>AtEZJ#9g%b%N%j%9$rMQ$$$?MqGr%?%s%Q%/ | monolith chitosan adsorption | 7-c | 21 | |
| $B0U8+8r492q(B | |||||
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