$B:G=*99?7F|;~!'(B2022-06-14 16:59:01
Pickering emulsion (1$B7o(B) | ||||
---|---|---|---|---|
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B K-5 (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
720 | [$B%"%8%"9q:]>^(B] Pickering emulsions with cellulose nano-fibrils for cosmetic applications | K-5 | Pickering emulsion cellulose nano-fibrils cosmetics | 12/27 15:10:37 |
PID Control (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 6-d (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
368 | $BITE,@Z$J(BPID$B%Q%i%a!<%?@_Dj$K$h$k<+Ne?6F01~Ez$N<+F08!=P$H(BPID$B:FD4@0(B | 6-d | Process Control PID Control Oscillation Detection | 12/21 19:01:53 |
Plasma (3$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 5-c (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
303 | $B%W%i%:%^(BCVD$B$K$h$k(BSiOx$B7OGvKl$N@=Kl$H$=$NI>2A(B | 5-h | CVD Plasma coating | 12/21 13:40:39 |
408 | $BBg5$05M6EEBN%P%j%"J|EE$H1_E{Fb9bB.@{2sN.$rMxMQ$7$??75,N3;RI=LL?F?e2=K!(B | 12-a | plasma surface modification particle | 12/22 06:32:24 |
562 | $B%W%i%:%^$H8GBN;@2=J*7?EE5$J,2r%;%k$rMQ$$$?Aj>hE*Fs;@2=C:AGJ,2r(B | 5-c | Plasma Solid Oxide Electrolysis Cell Carbon Dioxide | 12/22 17:14:38 |
Plasma-assisted combustion (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 3-b (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
164 | $B%^%$%/%mGH%W%i%:%^$rMQ$$$?HyJ4G3>FAuCV$K$*$1$k;@AGHf$*$h$S05NO$N1F6A(B | 3-b | Microwave plasma Plasma-assisted combustion Solid fuel | 12/20 12:59:36 |
Plasma-enhanced CVD (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B K-1 (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
210 | [$B>7BT9V1i(B] Atmospheric-pressure plasma-enhanced CVD synthesis of silica-based membranes for molecular separation | K-1 | Plasma-enhanced CVD Silica membranes Membrane separation | 12/20 16:08:32 |
Plastic (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 6-e (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
502 | $B:GE,$J%W%i%9%A%C%/%j%5%$%/%k5;=QA*Br$N$?$a$N:.9gGQ%W%i%9%A%C%/A*JL%7%J%j%*9g@. | 6-e | Plastic Sorting Technology choice | 12/22 14:54:26 |
Plastic alternative material (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 6-e (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
460 | $B%(%8%W%H$K$*$1$k%J%D%a%d%7;D^VM3Mh$N%W%i%9%A%C%/BeBXAG:`@8;:2aDx$G$NJ*N.:GE,2=(B | 6-e | Plastic alternative material Date palm residue Logistics optimization | 12/22 11:58:38 |
plastics (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B CS-2 (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
169 | [$B>7BT9V1i(B] $BJ#9g:`NA$N;q8;=[4D$rL\;X$7$?0[ | CS-2 | composites plastics multi-material | 12/20 13:28:26 |
Plating wastewater treatment (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 13-b (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
268 | $B%U%!%$%s%P%V%k$rMQ$$$?$a$C$-GS?e=hM}5;=Q$N8!F$(B | 13-b | Plating wastewater treatment Fine bubble Cleaning technology | 12/21 11:36:26 |
platinum catalyst (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 5-a (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
429 | $B4I7?H?1~4o$rMQ$$$?0!%R;@$N1UAj@\?(;@2=H?1~$NB.EY2r@O(B | 5-a | platinum catalyst arsenite oxidation kinetic analysis | 12/22 10:40:59 |
Platinum Group Metals (3$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 4-f (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
265 | $B%R%9%A%8%s$rM-$9$k@\Ce@-%Z%W%A%I$rMQ$$$?J,;R%$%s%W%j%s%HN3;R$K$h$kGr6bB26bB0$NA*BrE*J,N%(B | 4-e | Platinum group metals Metal recycling Peptide silica particles | 12/21 11:24:19 |
293 | $BDc4D6-Ii2Y$G$NGr6bB26bB0%j%5%$%/%k$rL\E*$H$7$?9bJ,;R:`NA$N3+H/(B | 13-e | Platinum Group Metals Reactive Polymer RAFT Polymerization | 12/21 13:07:04 |
425 | $BAB?e@-%$%*%s1UBN$X$NA*BrE*?;=P$K4p$E$/<+F0 | 4-f | Non-aqueous leaching Platinum group metals Ionic liquids | 12/22 10:19:50 |
PLS model (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 6-f (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
324 | $BBn>e>{:^@=B$$K$*$1$k6a@V30J,8wK!$rMQ$$$?IJ | 6-f | Personalised medicine NIR PLS model | 12/21 15:12:04 |
Plug Flow (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 2-e (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
251 | $B4V7dI}$N69$$O"B3<0%F%$%i! | 2-e | Taylor-Couette Flow Gas-liquid Slug Flow Plug Flow | 12/21 10:36:15 |
PNIPAM coated alumina particle (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 2-g (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
505 | $B29EY1~Ez@-9bJ,;RHoJ$N3;R= | 2-g | temperature responsive permeation PNIPAM coated alumina particle particle packed layer | 12/22 14:59:28 |
Polarity (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 12-b (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
548 | 2-$B%R%I%m%-%7%*%l%$%s;@<+8JAH?%7O$N(BpH$B1~Ez@-2r@O(B | 12-b | pH responsibility Self-assembly system Polarity | 12/22 16:50:29 |
polyacrylate (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 12-m (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
550 | $B=a3jL}E:2C:^$H$7$F$N%]%j%"%/%j%l!<%H(B(PA)$B$N6bB0I=LL$X$N5[Ce5sF0$K4X$9$kJ,;R%7%_%e%l!<%7%g%s(B | 12-m | polyacrylate molecular dynamics adsorption | 12/22 16:51:47 |
Polyamide (2$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 4-a (2$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
339 | $B%8%"%_%s$X$N%+%k%\%-%74p$NF3F~$K$h$k9bF)?e@-%]%j%"%_%I%J%N$m2aKl$N:n@=(B | 4-a | nanofiltration polyamide interfacial polymerization | 12/21 17:11:30 |
644 | $BL)EY:9$r?d?JNO$H$9$k%]%j%"%_%IKl$K$*$1$k=`HsJ?9UF)2a%7%_%e%l!<%7%g%s(B | 4-a | Molecular dynamics Polyamide Quasi-nonequilibrium permeation simulation | 12/22 19:42:59 |
polyamine (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 13-g (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
646 | Structure Modified Polyamine Based Non-Aqueous Solvent for CO2 Capture | 13-g | polyamine non-aqueous solvent carbon dioxide | 12/22 19:51:06 |
polybutylene terephthalate (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 8-f (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
332 | $B0!NW3&!&D6NW3&N.BN$K$h$k%]%j%V%A%l%s%F%l%U%?%l!<%H$N%1%_%+%k%j%5%$%/%k(B | 8-f | polybutylene terephthalate hydrolysis methanolysis | 12/21 16:22:28 |
Polycaprolactone (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 1-a (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
434 | Polycaprolactone$B$KBP$9$k(BCO2$BMO2rEY!&3H;678?t$NB,Dj5Z$S(BPC-SAFT$B!&<+M3BN@QM}O@$K4p$E$/%b%G%j%s%0(B | 1-a | Polycaprolactone Solubility Diffusivity | 12/22 11:07:12 |
polydiacetylene (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 7-i (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
102 | $B%]%j%8%"%;%A%l%s!&%a%+%N%/%m%_%:%`$NNOJ}8~0MB8@-(B | 7-i | polydiacetylene mechanochromism force direction | 12/17 17:21:27 |
polyethylene terephthalate (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 8-e (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
30 | $BFs;@2=C:AGB8:_2<$K$*$1$k(BPET$B | 8-e | longitudinal elastic modulus crystallinity polyethylene terephthalate | 12/13 09:22:37 |
polyhydroxyalkanoate (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 13-b (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
696 | Growth optimization and biokinetic characterization of a novel bioplastic-producing, methane-oxidizing bacterium, Methylosinus sp. C49 | 13-b | methane-oxidizing bacteria polyhydroxyalkanoate biokinetics | 12/22 23:22:20 |
PolyMEA (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 4-a (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
121 | NIPS$BK!$rMQ$$$?(Bpoly(2-methoxyethyl acrylate)$B%V%l%s%I(BPVDF$BKl$N3+H/(B | 4-a | NIPS Low-fouling PolyMEA | 12/18 23:19:20 |
Polymer (2$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 12-c (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
183 | [$B>7BT9V1i(B] $B:xBN%J%N6u4V$G9bJ,;R$rJ,N%$9$k(B | CS-2 | Polymer Separation MOF | 12/20 14:04:10 |
333 | $B2M66:^L5E:2C$G$N29EY1~Ez@-%]%j%^! | 12-c | Polymer Temperature responsiveness Non-crosslinked particle | 12/21 16:24:36 |
Polymer blend (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 12-j (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
619 | $B7PHi5[<}MQ%]%jF};@(B-$B%]%j%S%K%k%T%m%j%I%s@)8fJ|=PKl$N9=B$I>2A(B | 12-j | Drug delivery system Controlled release membrane Polymer blend | 12/22 18:33:23 |
polymer electrolyte fuel cell (3$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 9-e (3$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
655 | $B8GBN9bJ,;R7AG3NAEECS$NEE2r | 9-e | polymer electrolyte fuel cell membrane MEA | 12/22 20:12:47 |
656 | $B8GBN9bJ,;R7AG3NAEECS$NN.O)$H3H;6AX$K$*$1$k%^%/%m:.9g$NDj<02=(B | 9-e | polymer electrolyte fuel cell flow channel macromixing | 12/22 20:20:57 |
658 | PEFC$B$N%+%=!<%I?(G^AXFb$NM"AwDq93$N1F6A$r9MN8$7$?;@AG4T85H?1~B.EY$N2r@O(B | 9-e | polymer electrolyte fuel cell oxygen reduction reaction mass transfer resistance | 12/22 20:26:34 |
Polymer electrolyte fuel cells (2$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 5-a (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
369 | $B8GBN9bJ,;R7AG3NAEECS$NB?9& | 5-a | Polymer electrolyte fuel cells Pores Transport phenomena | 12/21 19:04:26 |
667 | $B8GBN9bJ,;R7AG3NAEECS$NB?9& | 5-i | Polymer electrolyte fuel cells Pores Transport phenomena | 12/22 21:14:54 |
Polymer gel (2$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 12-e (2$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
302 | $B%+%A%*%s@-9bJ,;R%2%k$rMQ$$$?%;%l%s;@$N5[Ce=|5n(B | 12-e | polymer gel selenium acid adsorption | 12/21 13:37:33 |
437 | $BN22=F | 12-e | Nanoparticles Copper Sulfide Polymer gel | 12/22 11:12:20 |
polymer grafting (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 12-e (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
92 | $BBg5$05%W%i%:%^%0%i%U%H=E9g$K$h$kJ#9g:`NA$NAO@=$H?(G^$H$7$F$N1~MQ(B | 12-e | polymer grafting atmospheric pressure plasma catalysis | 12/17 14:05:19 |
Polymer Monolith (2$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 5-f (2$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
182 | $B8GDj2=J,;R?(G^$rMQ$$$?%b%N%j%97?%^%$%/%m%U%m!<%j%"%/%?!<$N3+H/(B | 5-f | Polymer monolith Microflow reactor Organocatalyst | 12/20 14:03:44 |
675 | $BJ,;R?(G^8GDj2=%b%N%j%9$K$h$kO"B3N.DLH?1~5Z$SBZN1;~4VJ,I[I>2A(B | 5-f | Polymer Monolith Continuous flow reaction Molecular catalyst | 12/22 21:35:37 |
polymer nanocapsule (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 8-f (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
706 | $B0!NW3&?eF}2=K!$K$h$k%]%j%^!<%J%N%+%W%;%kD4@=$H7V8wJ* | 8-f | polymer nanocapsule hydrothermal emulsification leakage | 12/22 23:41:43 |
Polymer particle (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 12-c (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
223 | $B9bJ,;RHyN3;R!$J#9gHyN3;R$NCf6u2=(B | 12-c | Polymer particle Composite particle Hollow | 12/20 17:45:12 |
Polymer solution (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 12-l (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
426 | $B9bJ,;RMO1U$N7OE}E*G4CF@-B,Dj$K$h$k<+M3BN@Q$N8&5f(B | 12-l | Polymer solution Free volume Viscoelasticity | 12/22 10:20:56 |
polymerization reaction (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 12-d (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
700 | $BIuF~9ZAG$K$h$k9bJ,;R=E9g$rMxMQ$7$?%Y%7%/%kHoJ$$N1F6A$N8!F$(B | 12-d | polymerization reaction vesicle stability | 12/22 23:32:13 |
polyol method (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 12-c (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
103 | $B%]%j%*!<%kK!$K$h$kDc29>F7k2DG=$JHy:Y(BCu$BJ4$N9g@.(B | 12-c | polyol method low-temperature sintering fine copper powder | 12/17 17:28:12 |
Polypeptide (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B CS-2 (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
165 | [$B>7BT9V1i(B] $B4D6-J,2r@-9bJ,;R$NJ,;R@_7W$H%S%C%0%G!<%?$NMx3hMQ(B | CS-2 | Polypeptide environmental degradation | 12/20 13:06:36 |
Polysaccharides Solution (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 2-b (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
5 | $BB?E|N`MO1U$NHs%K%e!<%H%sG4EYB,Dj$K4X$9$k9M;!(B | 2-b | Polysaccharides Solution Non-Newtonian Viscosity Traveling Force | 11/15 14:50:29 |
polysilsesquiozane (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 12-k (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
225 | $B%]%j%7%k%;%9%-%*%-%5%s$H%"%/%j%k%b%N%^!<$rMQ$$$?M-5!(B-$BL55!%O%$%V%j%C%I:`NA$N?e>x5$%P%j%"@-I>2A(B | 12-k | polysilsesquiozane acrylic monomer hybrid | 12/20 18:06:29 |
poorly water soluble drug (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 2-f (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
75 | $B?75,$JJ4:U5!$N3+H/$HFq?eMO@-LtJ*$NMO=P@-2~A1(B | 2-f | dry grinding poorly water soluble drug | 12/16 17:02:16 |
pore size changes (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 7-i (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
476 | $BKlF)2a7?%$%`%N%;%s%5$K$*$1$k:Y9&7BJQ2=$rMQ$$$?93868!=PK!$N8!F$(B | 7-i | Immunoassay pore size changes antibody-conjugated nanoparticles | 12/22 13:09:05 |
Pores (2$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 5-a (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
369 | $B8GBN9bJ,;R7AG3NAEECS$NB?9& | 5-a | Polymer electrolyte fuel cells Pores Transport phenomena | 12/21 19:04:26 |
667 | $B8GBN9bJ,;R7AG3NAEECS$NB?9& | 5-i | Polymer electrolyte fuel cells Pores Transport phenomena | 12/22 21:14:54 |
porous carbon (3$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 12-c (2$B7o(B), K-1 (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
14 | $BJ.L84%AgK!$rMQ$$$?%P%$%*%^%9M3MhB?9&2A(B | 12-c | Spray drying Biomass Porous carbon | 12/2 17:13:47 |
32 | [$B>7BT9V1i(B] Hybridization of Redox-active materials inside the Pores of Porous Carbons for High-Performance Electrochemical Capacitors | K-1 | Porous carbon Adsorption Electrochemical capacitors | 12/13 20:04:41 |
187 | ZIF-8$BM3Mh%]!<%i%9%+!<%\%s$N9g@.$H%9%k%U%!%a%H%-%5%>!<%k5[Ce$X$N1~MQ(B | 12-c | ZIF-8 porous carbon sulfamethoxazole | 12/20 14:12:33 |
Porous carbon spheres (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B IS-1 (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
249 | Precisely tailored synthesis of sustainable porous carbon spheres derived from Kraft lignin | IS-1 | Porous carbon spheres Spray drying method Supercapacitor | 12/21 10:08:22 |
Porous polymer (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 12-e (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
661 | $B5U%i%$%G%s%U%m%9%H8z2L$r3hMQ$7$?(Bsponge-like$B%/%i%$%*%2%kN3;R$N3+H/(B | 12-e | Cryogel particle Inverse Leidenfrost Porous polymer | 12/22 20:53:02 |
Porous Silicon (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 9-e (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
602 | Modeling of the Effects of Porosity and Passivation on Porous Silicon | 9-e | Porous Silicon Passivation Modeling | 12/22 18:01:59 |
porous titanosilicate (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 12-c (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
682 | $B$+$47?%7%k%;%9%-%*%-%5%sA06nBN$rMQ$$$?3h@-(BTi$B | 12-c | porous titanosilicate Ti catalyst precursor design | 12/22 22:07:24 |
porphyrins (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 5-c (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
516 | $B%7%j%+N3;R$K8GDj2=$7$?%]%k%U%#%j%s$K$h$k%j%S%s%0%i%8%+%k=E9g(B | 5-c | Immobilized catalysts porphyrins Living radical polymerization | 12/22 15:41:12 |
Portfolio of heat and electrical (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B SP-1 (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
746 | [$B>7BT9V1i(B] $B;:6HJ,Ln$N%+!<%\%s%K%e!<%H%i%k2=$K5a$a$i$l$kG.MxMQ5;=Q(B ($B%"%5%R%/%*%j%F%#!<%"%s%I%$%N%Y!<%7%g%s%:(B) ($B@5(B)$B@nB<(B $B8x?M(B | SP-1 | Portfolio of heat and electrical Regeneration waste thermal energy Thermal transistor | 1/21 15:41:13 |
Post Lithium Ion Rechargeable Battery (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B SS-2 (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
137 | [$B>7BT9V1i(B] $B | SS-2 | Post Lithium Ion Rechargeable Battery Green Innovation Fluoride Ion All Solid State Battery | 12/20 11:24:50 |
post-crosslinking (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 12-c (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
173 | $B%H!<%i%9>u%"%k%.%s;@HyN3;R$+$i$NLtJ*J|=P@)8f(B | 12-c | controlled release post-crosslinking torus-shaped microparticle | 12/20 13:40:59 |
potassium (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 7-e (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
560 | $B%U%#%k%`4pHW(BC2C12$B6ZAH?%$rMQ$$$?%+%j%&%`$N1F6A(B | 7-e | C2C12 Muscle atrophy potassium | 12/22 17:10:56 |
Potassium Aluminum Sulfate Dodecahydrate (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 12-g (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
473 | $B%+%j%_%g%&%P%s$NO"B3>=@O$K$*$1$k2aK0OBEY%b%K%?!<$N3+H/(B | 12-g | Continuous Crystallization Supersaturation Monitoring System Potassium Aluminum Sulfate Dodecahydrate | 12/22 12:57:44 |
powder (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B SS-6 (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
199 | [$B>7BT9V1i(B] Simcenter STAR-CCM+$B$K$h$kJ4BN%7%_%e%l!<%7%g%s$N:G?7F08~(B | SS-6 | powder DEM CFD | 12/20 14:41:16 |
Powder core performance (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B IS-1 (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
295 | Spherical and submicron-sized FeNi particles with controllable density for performance enhancement of the powder core inductor | IS-1 | Submicron-sized FeNi particles High density Powder core performance | 12/21 13:17:21 |
Powder flowability (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 2-f (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
120 | $BF}E|?eOBJ*$NN.F0@-I>2A$K4X$9$k8&5f(B | 2-f | Powder flowability Lactose Shear tester | 12/18 20:22:51 |
Powder mixing (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B K-5 (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
722 | [$B>7BT9V1i(B] Coarse-grained discrete element method for dense granular shear flow | K-5 | Powder mixing Simulation Coase-grained DEM | 12/27 21:07:21 |
Power consumption (3$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 2-b (3$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
57 | $BB?CJMc$NMc4V5wN%$,(BMetzner-Otto$BDj?t$KM?$($k1F6A(B | 2-b | power consumption Metzner-Otto constant multi-impeller | 12/15 14:35:00 |
257 | $BKm7?3IYBAe$K$*$1$kI8=`Mc$NF0NOFC@-D4::(B | 2-b | Horizontal cylindrical vessel Turbulent mixing Power consumption | 12/21 11:01:39 |
262 | $B%3%C%[7?%U%i%/%?%kMc$NAXN.0h$K$*$1$kF0NOFC@-D4::(B | 2-b | Fractal Impeller laminar mixing Power consumption | 12/21 11:14:43 |
Power generation (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 3-d (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
507 | $BHs6&J(:.9gJ*$rMQ$$$?%^%$%/%m(BORC$B$N3+H/(B | 3-d | Power generation Renewable energy Organic Rankine Cycle | 12/22 15:05:37 |
Power-to-Gas (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 5-e (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
49 | H2$BG3>FG.$rMQ$$$?(BCO2$B%a%?%s2=H?1~4o$N5/F0(B | 5-e | CO2 Methanation Power-to-Gas Power-to-Methane | 12/15 11:37:59 |
Power-to-Methane (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 5-e (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
49 | H2$BG3>FG.$rMQ$$$?(BCO2$B%a%?%s2=H?1~4o$N5/F0(B | 5-e | CO2 Methanation Power-to-Gas Power-to-Methane | 12/15 11:37:59 |
Pre-trained language model (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 6-f (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
45 | $BJ*M}%b%G%k<+F09=C[$K8~$1$F(B:2)ProcessBERT$B2=3X9)3X$N$?$a$N;vA03X=,8@8l%b%G%k(B | 6-f | Physical model Automatic physical model building Pre-trained language model | 12/14 23:21:02 |
precession (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 2-b (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
59 | $BMF4o$N:P:91?F0$rMQ$$$?3IYB5!$K$h$kF}2= | 2-b | mixing emulsification precession | 12/15 20:57:21 |
precipitation (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 2-f (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
112 | $B86NAE41v$N7k>=?e$rMxMQ$7$?G"AG2C?eJ,2r$K$h$k%X%^%?%$%H%J%NN3;R$N9g@.(B | 2-f | hematite nanoparticles precipitation | 12/17 20:20:02 |
precursor (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 5-h (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
585 | Co-ALD$B%W%m%;%9$K$*$1$k86NA$NHf3S8!F$(B | 5-h | ALD cobalt precursor | 12/22 17:42:38 |
precursor design (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 12-c (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
682 | $B$+$47?%7%k%;%9%-%*%-%5%sA06nBN$rMQ$$$?3h@-(BTi$B | 12-c | porous titanosilicate Ti catalyst precursor design | 12/22 22:07:24 |
precursor film (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 2-a (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
489 | $BK0OB>r7o2<$K$*$1$k(BSi$B4pHD>e%"%k%+%s1UE)$N@h9TGvKl$N8w3XB,Dj(B | 2-a | precursor film wetting ellipsometry | 12/22 14:11:41 |
Prediction (2$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 1-a (2$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
24 | Joback$BK!$K$h$k>x5$05$N?d;;(B | 1-a | vapor pressure prediction Joback method | 12/11 13:57:08 |
504 | $B? | 1-a | Artificial Intelligence Prediction Physical properties | 12/22 14:58:04 |
premature aging (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 7-a (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
710 | In vitro hair follicle models for study of hair graying | 7-a | hair graying melanocyte premature aging | 12/22 23:49:17 |
Premixed powder (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 6-g (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
167 | $B%D%$%s%9%/%j%e!<%U%#!<%@$rMQ$$$?:.9gKv6!5k;~$N%U%#!<%I%U%!%/%?!<$NM=B,(B | 6-g | Twin screw feeder Feed factor Premixed powder | 12/20 13:19:07 |
pressure swing adsorption (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 4-e (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
463 | $B05NO%9%$%s%05[Ce%W%m%;%9$K$*$1$kAjJQ2=:`NA$K$h$kG.Jd=~8z2L(B | 4-e | thermal energy storage pressure swing adsorption zeolite | 12/22 12:13:09 |
pressure transmission (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 2-g (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
7 | $B:.N}>uBV$NGD0.$rL\E*$H$7$?<>=a:.N}J*$N05NOEAC#N($N2r@O(B | 2-g | kneading state wet-mass powder pressure transmission | 11/18 15:37:33 |
pressurized CO2 (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 8-c (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
275 | $B2C05Fs;@2=C:AG$K$h$k%R%^%o%j | 8-c | pressurized CO2 extraction bio-oil | 12/21 11:55:20 |
pressurized fluid (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 1-a (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
563 | $B2C05N.BNCf$N%H%j%*%l%$%s$NL58B4u | 1-a | binary diffusion coefficient triolein pressurized fluid | 12/22 17:16:17 |
prGO (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 11-a (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
584 | Synthesis and characterization of porous reduced graphene oxide for supercapacitor | 11-a | supercapacitor prGO specific capacitance | 12/22 17:40:26 |
Primary Human Hepatocyte (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 7-e (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
348 | Development and Functional Evaluation of a Miniature Liver Model | 7-e | Decellularized Liver Primary Human Hepatocyte Cell Distribution | 12/21 17:28:45 |
Printability (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 2-e (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
641 | 3D$B%P%$%*%W%j%s%F%#%s%0$K$*$1$k%5%]!<%H%O%$%I%m%2%kMaCf$G$N%b%G%k%O%$%I%m%2%k$N0u:~FC@-$NI>2A(B | 2-e | 3Dbioprinting Printability Hydrogel support bath | 12/22 19:35:00 |
Printed circuit board (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 4-f (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
446 | $B?<6&>=MOG^(B(DES)$B$K$h$kGQEE;R4pHD$+$i$N6bB0Cj=P$J$i$S$K$=$NCj=P5!9=2rL@(B | 4-f | Deep eutectic solvent Printed circuit board Extraction of metals | 12/22 11:29:43 |
Process Control (3$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 6-d (3$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
63 | $B%W%m%;%9@)8f$r$a$0$k(BAI$BMxMQ$NE8K>(B | 6-d | process control artificial intelligence machine learning | 12/16 09:11:14 |
125 | $B9)6H%W%m%;%9D4@aJ[$N8GCeJd=~(B | 6-d | process control process models optimization | 12/19 23:30:12 |
368 | $BITE,@Z$J(BPID$B%Q%i%a!<%?@_Dj$K$h$k<+Ne?6F01~Ez$N<+F08!=P$H(BPID$B:FD4@0(B | 6-d | Process Control PID Control Oscillation Detection | 12/21 19:01:53 |
Process design and simulation (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B K-2 (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
398 | [$B>7BT9V1i(B] Integrating LCA and Process Simulation for Design and Optimization of CCU Processes | K-2 | Diethyl carbonate Process design and simulation LCA | 12/22 00:03:13 |
process intensification (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B K-4 (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
155 | [$B%"%8%"9q:]>^(B] Fundamental and development of microreaction technology for the application on fine chemicals synthesis | K-4 | microreaction technology fine chemicals process intensification | 12/20 12:12:05 |
Process modeling (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 6-b (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
336 | $B%9!<%Q!<%9%H%i%/%A%c$rMQ$$$?Cm | 6-b | Pharmaceutical manufacturing Decision making Process modeling | 12/21 16:43:24 |
process models (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 6-d (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
125 | $B9)6H%W%m%;%9D4@aJ[$N8GCeJd=~(B | 6-d | process control process models optimization | 12/19 23:30:12 |
Process simulation (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B K-2 (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
399 | [$B>7BT9V1i(B] Comprehensive Design and Evaluation of CCU Processes | K-2 | Process simulation CO2 emission Evaluation | 12/22 00:07:57 |
Production Innovations (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B HC-11 (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
571 | [$B>7BT9V1i(B] SDGs$B$r;Y$($k@8;:3W?7$N | HC-11 | SDGs Production Innovations Systems Design | 12/22 17:28:52 |
production management (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B SS-5 (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
170 | [$B>7BT9V1i(B] $B2=3X%W%i%s%H$K$*$1$k@8;:7W2h6HL3%7%9%F%`2=$N | SS-5 | production planning production scheduling production management | 12/20 13:33:47 |
production planning (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B SS-5 (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
170 | [$B>7BT9V1i(B] $B2=3X%W%i%s%H$K$*$1$k@8;:7W2h6HL3%7%9%F%`2=$N | SS-5 | production planning production scheduling production management | 12/20 13:33:47 |
production scheduling (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B SS-5 (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
170 | [$B>7BT9V1i(B] $B2=3X%W%i%s%H$K$*$1$k@8;:7W2h6HL3%7%9%F%`2=$N | SS-5 | production planning production scheduling production management | 12/20 13:33:47 |
productivity (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B K-6 (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
34 | Evaluation of the efficiency of continuous capture chromatography | K-6 | chromatography continuous captture productivity | 12/14 01:46:57 |
profiling (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 7-a (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
480 | $B9ZJl%(%-%95Z$S%Z%W%H%s$NLVMeE*%W%m%U%!%$%j%s%0(B | 7-a | profiling yeast extract peptone | 12/22 13:33:40 |
propane (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 5-a (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
35 | $B%"%k%_%JC4;};@2=%K%C%1%k?(G^$NC4;}N($K$h$k%W%m%Q%s$NC&?eAG3h@-$N2~A1Nt2=5sF0(B | 5-a | dehydrogenation propane nickel oxide | 12/14 09:26:37 |
Propane dehydrogenation (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 5-a (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
494 | Fe$B7O?(G^$N3J;R(BS2-$B%l%I%C%/%9$H%W%m%Q%sC&?eAGFC@-$K5Z$\$9(BRu$B@.J,$N2CB.8z2L(B | 5-a | Propane dehydrogenation Lattice sulfide Redox | 12/22 14:23:04 |
propellant (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B SS-6 (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
188 | [$B>7BT9V1i(B] $B1'ChMQ8GBNG3NA%m%1%C%H?d?JLt$N2J3X(B | SS-6 | space science propulsion propellant | 12/20 14:14:32 |
propulsion (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B SS-6 (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
188 | [$B>7BT9V1i(B] $B1'ChMQ8GBNG3NA%m%1%C%H?d?JLt$N2J3X(B | SS-6 | space science propulsion propellant | 12/20 14:14:32 |
Propylene (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 5-a (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
9 | $B%1!<%89=B$$rM-$9$k%<%*%i%$%H$rMQ$$$?%a%?%N!<%k$*$h$S%(%A%l%s$+$i$NDc5i%*%l%U%#%s9g@.(B | 5-a | Catalysis MTO reaction Propylene | 11/22 15:17:00 |
protective (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 12-f (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
74 | $B%5%C%AJ,2r6]%^%$%/%m%+%W%;%k$NJ]8n:^E:2C$K$h$k8GDj2=6]BN$N3h@-0];}(B | 12-f | thatch degradation microcapsules protective | 12/16 16:41:56 |
Protein (2$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 12-a (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
284 | [$B>7BT9V1i(B] $B%=%U%H%^%F%j%"%k<+8JAH?%2=$NM}2r$H:`NAAO@=$X$N1~MQ(B | HC-12 | Soft material Self-Organization Protein | 12/21 12:55:26 |
695 | $B;i | 12-a | lateral diffusion protein lipid membrane | 12/22 23:21:14 |
protein A media (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 7-a (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
453 | $B%W%m%F%$%s(BA$BC4BN$K$*$1$k93BN$N3H;6!&5[Ce5sF0$N8!F$(B | 7-a | protein A media confocal laser scanning microscopy numerical simulation | 12/22 11:40:51 |
Protein adsorption (2$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B IS-1 (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
115 | Synthesis of Macroporous Pectin Particles with High Specific Surface Areas and Interconnected Pore Networks for Protein Adsorption Application | IS-1 | Template-assisted spray-drying Macroporous pectin Protein adsorption | 12/17 22:52:25 |
508 | $B@8BNJ,;RG'<1It0L$*$h$SC4BN8GDj2=It0L$r$b$D9g@.9bJ,;R$rMQ$$$?%?%s%Q%/ | 4-e | Catechol group Glycopolymer Protein adsorption | 12/22 15:07:07 |
protein L chromatography (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 7-c (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
557 | $B8GDj2=%Q%Q%$%sC4BN$rMQ$$$?O"B3<0(BIgG$BCGJR2=(B-$B@:@=A`:n$N8!F$(B | 7-c | Fab immobilized Papain resin protein L chromatography | 12/22 17:02:14 |
Protein M (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 7-d (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
544 | $B7V8wLH1V%W%m!<%V(BQuenchprobe$B$N%@%V%k%i%Y%k2=$N8!F$(B | 7-d | Antibody Quenchbody Protein M | 12/22 16:48:08 |
Protein polymerization (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 7-b (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
242 | $B%/%i%&%G%#%s%04D6-2<$G$N9ZAG?(G^2M66H?1~$,M?$($kD65pBg%?%s%Q%/2A(B | 7-b | Microbial transglutaminase Protein polymerization Molecular crowding | 12/20 23:24:46 |
protein purification (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 7-c (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
485 | $BC1:?93BN8GDj2=%+%i%`$rMQ$$$?%?%s%Q%/ | 7-c | affinity chromatography protein purification scFv | 12/22 14:05:20 |
protein separation (2$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B K-6 (2$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
404 | [$B>7BT9V1i(B] Protein chromatography with stirred fluidized bed and functionalized nanofiber membrane | K-6 | chromatography protein separation nanofiber membrane | 12/22 02:00:23 |
405 | [$B>7BT9V1i(B] Impact of adsorbed phase protein mobility on chromatographic separation performance | K-6 | chromatography protein separation HETP | 12/22 02:26:35 |
protein separations (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B K-6 (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
709 | [$B>7BT9V1i(B] Noninvasive determination of ligand concentration of chromatography columns for protein separations | K-6 | ligand concentration chromatography protein separations | 12/22 23:45:00 |
protein-protein interaction (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 7-d (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
645 | $B9ZJl%7%0%J%kEAC#5!9=$rMxMQ$7$?%?%s%Q%/ | 7-d | protein-protein interaction evolutionary engineering GPCR | 12/22 19:46:19 |
Proton-Conducting inorganic solid electrolyte (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 9-e (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
648 | $B%W%m%H%sEAF3@-L55!8GBNEE2r2A(B | 9-e | Solid oxide fuel cells Proton-Conducting inorganic solid electrolyte Hydrogen permeable membranes | 12/22 19:53:10 |
pseudo-visiblity (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 12-l (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
691 | $B%W%m%;%95;=Q;kE@$G$NN.F0$NH>2D;k@-$NLdBj(B | 12-l | fast flow pseudo-visiblity observational mode | 12/22 22:37:26 |
Pt/TiO2 catalyst (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 5-a (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
18 | $B%a%A%k%7%/%m%X%-%5%sC&?eAG$K$*$1$kGr6b?(G^$X$N%;%l%sE:2C8z2L(B | 5-a | Methylcyclohexane dehydrogenation Pt/TiO2 catalyst selenium promoter | 12/7 09:03:40 |
pulverization (3$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 9-e (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
260 | $B1xE%$N1UHn2=$K$*$1$kD62;GH>H | 13-e | Sludge Pulverization Liquid fertilizer | 12/21 11:10:17 |
351 | [$B>7BT9V1i(B] $BG.2=3XGK:U(B($B>F2r(B)$B8=>]$N2rL@$H1~MQ(B | CS-2 | Ceramics pulverization heat treatment | 12/21 17:34:38 |
630 | $B9bB.?eAG5[B"J|=P$N$?$a$N(BLaNi5-$B9bJ,;R | 9-e | Hydrogen storage Metal hydride Pulverization | 12/22 18:52:49 |
pumping volumes (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 13-c (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
270 | $B$a$C$-MQ%P%l%k$N5b$_=P$7NL?dDjJ}K!$N8!F$(B | 13-c | barrels for plating pumping volumes | 12/21 11:37:39 |
Pure silica CHA membrane (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 4-a (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
141 | $B%T%e%"%7%j%+(BCHA$BKl$K$h$kM-5!%O%$%I%i%$%IJ,2rMQKlH?1~4o$N3+H/(B | 4-a | Pure silica CHA membrane Organic hydride Membrane reactor | 12/20 11:31:07 |
purification (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 4-a (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
66 | $BKlJ,N%$*$h$S1v@O$K$h$k%U%#%3%S%j%W%m%F%$%s@:@=%W%m%;%9$N@_7W(B | 4-a | phycobiliprotein Crossflow filtration purification | 12/16 14:42:14 |
PVDF hollow fiber modification (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 4-a (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
128 | Novel method to immobilize zwitterionic materials onto PVDF hollow fiber membrane surface | 4-a | PVDF hollow fiber modification zwitterionic copolymer anti-fouling | 12/20 10:49:38 |
pyrite (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 4-e (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
19 | XPS Determination of Accumulation Enhancement of Xanthate Derivates on Calcium/Magnesium-loaded Pyrite Surface in alkaline conditions | 4-e | pyrite XPS ferric hydroxy xanthate | 12/7 14:13:37 |