$B:G=*99?7F|;~!'(B2017-05-20 20:59:01
circulating solvent (1$B7o(B) | ||||
---|---|---|---|---|
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 5-g (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
371 | $BLZ@\1U2=%W%m%;%9$K$*$1$k%W%i%9%A%C%/$NE:2C8z2L(B | 5-g | woody biomass direct liquefaction circulating solvent | 12/21 12:35:12 |
classification (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 2-f (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
320 | $BLZF3%Cf$N%+%j%&%`@.J,$NB8:_7ABV$H$=$NG;=LK!(B | 2-f | combustion ash potassium classification | 12/20 20:18:24 |
CLD(Chord Length Distribution) (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 12-g (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
540 | $BN37BJ,I[$NAjBPN3;R?tJQ49$rMQ$$$?(BFBRM$B$K$h$k%3!<%ID9J,I[$N;;=P(B | 12-g | FBRM(Focused Beam Reflectance Measurement) CLD(Chord Length Distribution) CSD(Crystal Size Distribution) | 12/22 11:08:01 |
click reaction (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 7-e (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
785 | $B@8BNJ,;RG'<1%2!<%HKl$N9b46EY2=!&HFMQ2=$K4X$9$k8!F$(B | 7-e | permeation click reaction avidin-biotin binding | 12/22 19:17:30 |
Cluster-Cluster aggregation (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B HQ-21 (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
826 | $B%+!<%\%s%J%NN3;R$N6E=8$K4X$9$k%b%s%F%+%k%m%7%_%e%l!<%7%g%s(B | HQ-21 | Soot Morphology Cluster-Cluster aggregation | 12/22 21:20:50 |
CMC (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 5-h (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
552 | SiC-CVI$B%W%m%;%9$N9gM}@_7W$K$h$kD66Q0l4^?;$N | 5-h | CVD SiC CMC | 12/22 11:31:29 |
CO adsorbent (2$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B SS-6 (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
51 | $B?@8M@=9]=j$K$*$1$k?eAG(BPSA$BAuCV$N3+H/(B | SS-6 | adsorption CO adsorbent H2 PSA | 12/8 16:30:29 |
103 | $B?@8M@=9]=j$K$*$1$k?eAG(BPSA$BAuCV$N3+H/(B | SP-9 | adsorption CO adsorbent H2 PSA | 12/12 18:40:44 |
co-firing (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 5-g (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
784 | $BLZC:2=$*$h$S%?!<%k2s<}$K$h$k9b<}N($J8GBNG3NA@=B$(B | 5-g | co-firing torrefaction secondary reaction | 12/22 19:15:38 |
CO-free (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 5-a (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
181 | $B%P%$%*%^%9M3Mh$N9b@-G=Hs5.6bB0?(G^$rMQ$$$?%.;@$+$i$N(BCO$B%U%j! | 5-a | Hydrogen production Formic acid decomposition CO-free | 12/17 14:01:51 |
Co-precipitation (2$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 13-a (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
24 | EXAFS$B$*$h$SI=LLJ*@-B,Dj$K$h$k?e;@2=BhFsE46&D@K!$rMQ$$$?0!%R;@=|5n$N5!9=2rL@(B | 13-a | Arsenite Co-precipitation EXAFS | 12/5 10:48:09 |
659 | $B6&D@K!6Q0l%2%k$rMQ$$$?%8%s%3%"%k%_%N%7%j%1!<%H%<%*%i%$%H$N(BOSDA-free$B9g@.(B | 12-c | Zincoaluminosilicate Zeolite Co-precipitation | 12/22 15:41:48 |
CO2 absorption (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 4-d (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
791 | $B%/%m%9%U%m!<7?Cf6u;eKl%3%s%?%/%?!<$N%7%'%kB&N.$lJ}8~$NNs?t$K$h$kBPN.J*;q0\F0$X$N1F6A(B | 4-d | gas absorption membrane CO2 absorption mass transfer coefficient | 12/22 19:34:20 |
CO2 adsorption (3$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 4-a (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
433 | TiO2-ZrO2-$BM-5!%-%l!<%HJ#9g:`NA$NFC@-I>2A$H(BCO2$BJ,N%Kl$X$N1~MQ(B | 4-a | TiO2-ZrO2 organic chelate CO2 adsorption | 12/21 17:13:37 |
492 | $BCf6u9=B$$r;}$DCb2=C:AGHyN3;R$N9g@.$HFC@-I>2A(B | 12-c | Nanostructured particle Microwave synthesis CO2 adsorption | 12/21 23:49:07 |
788 | Core-Shell$B9=B$2=(BMFI$B7?%<%*%i%$%H$N?e>x5$6&B82<$K$*$1$k(BCO2$B5[CeFC@-(B | 4-e | Core-Shell CO2 adsorption Zeolite | 12/22 19:23:23 |
CO2 capture (4$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 9-f (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
484 | $B2<8BNW3&MO1U29EY7?$N%"%_%s!2$B5[<}$K4X$9$k8&5f(B | 4-d | CO2 capture Hydrophobic hydration Phase separation | 12/21 21:35:31 |
609 | $B?75,8GBN5[<}:`$rMQ$$$?Fs;@2=C:AGJ,N%2s<}%W%m%;%9$N:GE,2=(B | 4-e | CO2 capture Solid sorbent Process optimization | 12/22 13:44:00 |
716 | CO2$BJ,N%!&2s<}7?(BIGCC$B%7%9%F%`$NZ7W2h(B | 9-f | IGCC CO2 capture | 12/22 17:34:11 |
834 | $BB?9& | 13-g | Mesoporous CO2 capture Cerium compound | 12/22 21:43:06 |
CO2 diffusivity (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 4-a (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
449 | CO2$BJ*M}5[<}1U$N%^%/%m$J3H;678?t$H%_%/%m$JBZN1;~4V$N4X78(B: $B7W;;2=3XE*2r@O(B | 4-a | CO2 diffusivity molecular dynamics residence time | 12/21 18:02:07 |
CO2 emission coefficient (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 9-e (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
264 | $B%a%?%sJ,2rK!$rMQ$$$?(BSOFC$B$NDcC:AGH/EE(B | 9-e | SOFC Methane Decomposition CO2 emission coefficient | 12/20 12:08:01 |
CO2 expanded liquid (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 1-a (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
259 | $B=$@5(BEyring-Wilson$B<0$*$h$S(BASOG-VISCO $B$rMQ$$$?(BCO2$B2C05KDD%1UBNF0G4EY$N;;=P(B | 1-a | Kinematic viscosity CO2 expanded liquid ASOG-VISCO | 12/20 11:03:40 |
CO2 hydrogenation (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B HQ-21 (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
721 | CO2$B$H(BH2$B$r86NA$H$9$k(BCO2$B%U%j!<%a%?%N!<%k@=B$!&M"Aw!&6!5k;v6H$N%U%#!<%8%S%j%F%#%9%?%G%#(B | HQ-21 | CO2 hydrogenation process simulation feasibility study | 12/22 17:37:48 |
CO2 methanation (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 5-a (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
114 | Advantage property of structured catalyst for CO2 methanation under extremely fast rate of feeding | 5-a | CO2 methanation Structured catalyst Extremely fast rate of feeding | 12/13 16:31:54 |
CO2 painting (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 8-b (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
237 | CO2$BEIAu$K$*$1$k%]%j%^!<@O=P5sF0$NMO2rEY%Q%i%a!<%?$K4p$E$/9M;!(B | 8-b | CO2 painting CO2 solubility Phase equilibria | 12/19 19:22:38 |
CO2 reduction (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 5-a (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
862 | Atomically dispersed PGM catalysts for CO2 reduction | 5-a | Single PGM atom catalysts CO2 reduction Flame spray pyrolysis | 12/22 23:58:36 |
CO2 Reduction Performance (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 5-c (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
104 | Fe/TiO2$B8w?(G^$N(BCO2$B4T85@-G=8~>e$N$?$a$N(BFe$BC4;}>r7o$*$h$S4T85:^$N8!F$(B | 5-c | Photocatalyst CO2 Reduction Performance Reductants | 12/12 19:56:46 |
CO2 solubility (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 8-b (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
237 | CO2$BEIAu$K$*$1$k%]%j%^!<@O=P5sF0$NMO2rEY%Q%i%a!<%?$K4p$E$/9M;!(B | 8-b | CO2 painting CO2 solubility Phase equilibria | 12/19 19:22:38 |
coagulation (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 7-e (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
759 | $B93@~0]AGMO2rLtIuF~%O%$%I%m%2%k$N;_7l8z2L$N8!F$(B | 7-e | hydrogel coagulation fibrinolysis | 12/22 18:23:02 |
coagulation rate constant (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 12-d (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
399 | $B%7%j%+%J%NN3;R$N6E=8B.EY$H%[%U%^%$%9%?! | 12-d | coagulation rate constant adsorbed layer Hofmeister series | 12/21 14:53:01 |
coal (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 9-c (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
390 | $B%1%_%+%k%k!<%WK!$K$*$1$kE4(B/$B%"%k%_%J;@AG%-%c%j%"N3;R$NNt2=5sF0(B | 9-c | chemical looping degradation of oxygen carrier coal | 12/21 14:24:32 |
coal pyrolysis (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 9-c (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
443 | $B%@%&%J!<7?@PC:G.J,2rO'$G$NG.G^BNN3;RI=LL$NIUCeC:AG$N2r@O(B | 9-c | coal pyrolysis heat caring particles deposited carbon | 12/21 17:50:31 |
Coalescer (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B SP-9 (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
69 | $B002=@.%U%#%k%?!<@=IJ$N$4>R2p(B | SP-9 | Filtration Coalescer Meltblown | 12/8 18:31:29 |
coalescing (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 4-a (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
686 | $B?tCM%7%_%e%l!<%7%g%s$rMQ$$$?%3%"%l%C%5!<7?L}?eJ,N%Kl$N@_7W(B | 4-a | Lattice Boltzmann method two-phase flow coalescing | 12/22 16:37:40 |
Coarse grain model (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 2-c (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
154 | DEM$BAF;k2=%b%G%k$NJ.N.AXFb8GBNN3;R:.9gLdBj$X$N1~MQ(B | 2-c | DEM-CFD Coarse grain model Solid mixing | 12/15 17:34:47 |
coating (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 5-h (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
321 | $BG.(BCVD$BK!$K$h$k(BTi1-xAlxN$B$N9g@.$HI>2A(B | 5-h | CVD coating TiAlN | 12/20 21:22:46 |
coating process (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 9-e (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
239 | PEFC$B?(G^AX$N7A@.%W%m%;%9%b%G%j%s%0$H$=$N2r@O | 9-e | Catalyst layer coating process modeling | 12/19 19:40:58 |
Coexisting Gas (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 9-c (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
9 | $B3h@-%3!<%/%9$NN22=J*5[CeFC@-$KM?$($k%,%92=@8@.6&B8%,%9$N1F6A(B | 9-c | Adsorption Coexisting Gas Activated Coke | 11/25 11:10:59 |
Collagen microfiber (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 7-a (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
547 | $B%^%$%/%mN.BN%G%P%$%9$rMQ$$$?!VCGJR2=!W%3%i!<%2%s%^%$%/%m%U%!%$%P!<$N:n@=$H$=$N1~MQ(B | 7-a | Collagen microfiber Fragmentation 3D cell cultivation | 12/22 11:23:06 |
Collagen microparticle (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 7-a (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
782 | $BHyN3;R>uB->l:`NA$rMQ$$$k(B3$B2A(B | 7-a | Collagen microparticle Tissue engineering 3D cell cultivation | 12/22 19:10:43 |
collision (2$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 2-b (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
268 | $B7|ByG]M\:GE,2=$N$?$a$N?tCMN.BN2r@O!&N%;6MWAGK!O"@.%7%_%e%l!<%7%g%s(B | 2-b | suspension culture collision shear stress | 12/20 13:00:15 |
270 | $BN%;6MWAGK!$rMQ$$$?(BiPS$B:YK&7|ByG]M\$N?tCM%7%_%e%l!<%7%g%s(B | 7-a | suspension culture iPS cell collision | 12/20 13:26:18 |
colloid (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 4-b (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
16 | Electrokinetics of colloidal particles coated with neutral polymer with different molecular weights | 4-b | colloid polyethylene oxide adsorption | 12/2 13:59:15 |
Colloidal Dispersion (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 12-l (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
693 | $B9bG;EY%3%m%$%IN3;RJ,;67O$N%l%*%m%8!<(B | 12-l | Rheology Colloidal Dispersion Shear-thickening | 12/22 16:51:49 |
colloidal stabilization (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 12-c (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
309 | $B<'>l1~EzFC@-8~>e$N$?$a$N<'@-J#9gN3;R$N1UCfJ,;6@-@)8f(B | 12-c | magnetic responsivity dispersibility colloidal stabilization | 12/20 17:29:48 |
Combined heat and power (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 6-b (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
306 | $BLZ | 6-b | Renewable energy Combined heat and power Simulation | 12/20 17:02:31 |
combustion ash (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 2-f (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
320 | $BLZF3%Cf$N%+%j%&%`@.J,$NB8:_7ABV$H$=$NG;=LK!(B | 2-f | combustion ash potassium classification | 12/20 20:18:24 |
Compaction (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 2-f (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
769 | $B%]%j%(%A%l%s%$%_%s!?%*%l%$%s;@2q9gBN$GJ,;60BDj2=$5$l$?Hs?e!&B?@.J,7O%9%i%j!<$+$iD4@=$7$?J.L84%AgpyN3BN$H$=$N@.7A@-(B | 2-f | Spray dry Multicomponent slurry Compaction | 12/22 18:36:46 |
Company (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B HC-12 (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
710 | [$B>7BT9V1i(B] $B?H6a$JF|MQIJ$rDL$8$F$N!V2=3X!W650i;Y1g3hF0(B | HC-12 | Chemical Communication CSR Company | 12/22 17:28:22 |
complex (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 9-e (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
382 | $B%F%H%i%>!<%kF<6bB0:xBN(B/$B1v4p@->K;@F<$NG3>FFC@-$K4X$9$k8&5f(B | 9-e | tetrazole complex burning performance | 12/21 13:50:26 |
Composite (2$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B SS-3 (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
44 | $B%;%k%m!<%9%J%N%U%!%$%P! | SS-3 | Cellulose Nanofiber Composite | 12/8 15:20:17 |
187 | CNTs/$B9bJ,;RHyN3;R$K$h$k%J%N%3%s%]%8%C%H$N9g@.(B | 12-a | Carbon nanotube Polymer colloid Composite | 12/17 17:20:45 |
Composite particle (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 12-c (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
105 | $B%+!<%\%s%J%N%A%e!<%VJ#9g9bJ,;RHyN3;R$ND4@=$H$=$NJ*@-I>2A(B | 12-c | Carbon nanotube Composite particle Polymerization | 12/13 07:46:18 |
compression (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 12-h (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
722 | $B5e7AHyN3;R9=B$BN$N05=LJQ7A$N?tCM%7%_%e%l!<%7%g%s(B | 12-h | numerical simulation compression particulate structure | 12/22 17:38:05 |
Computation fluid dynamics (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 2-f (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
453 | The effects of the entrance laminarizer assembly on cyclone performances | 2-f | Cyclone Laminarizer Computation fluid dynamics | 12/21 18:31:01 |
computational fluid dynamics simulation (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 12-a (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
234 | $B%J%N%9%1!<%kG;EY:9%^%i%s%4%KBPN.$NFC0[@-$K$D$$$F$N?tCM2r@O(B | 12-a | molecular dynamics simulation solutal Marangoni convection computational fluid dynamics simulation | 12/19 18:06:05 |
Computational Material Discovery (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B SS-4 (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
763 | $B5!3#3X=,$K$h$k(BComputational Material Discovery | SS-4 | Computational Material Discovery | 12/22 18:27:43 |
Computer-aided process engineering (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 6-g (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
671 | $B4D6-@-$H | 6-g | Computer-aided process engineering Life cycle assessment Structural path analysis | 12/22 16:08:44 |
Conceptual design (2$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 6-b (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
600 | Conceptual design and feasibility evaluation of a new pathway producing tetraethoxysilane from silica | 6-b | TEOS from silica conceptual design feasibility study | 12/22 13:11:06 |
688 | Conceptual design and feasibility evaluation of a new pathway producing tetraethoxysilane from silica | HQ-21 | Conceptual design TEOS from silica Feasibility study | 12/22 16:42:53 |
Conductive polymers (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 12-a (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
220 | $B%]%j%A%*%U%'%s$r9|3J$H$9$kF3EE@-9bJ,;R$rMQ$$$?%0%i%U%'%sJ,;65;=Q$N3+H/(B | 12-a | Graphene Conductive polymers dispersion | 12/19 15:21:33 |
confined space (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 12-k (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
685 | $BN.DL5?;wBN1UCf$G$N%j%s;@%+%k%7%&%`7O2=9gJ*$N@8@.$K5Z$\$9@)8B6u4V9=B$$N1F6A(B | 12-k | calcium phosphate simulated body fluid confined space | 12/22 16:34:14 |
Connected platinum-alloy nanoparticles (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 9-e (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
762 | PEFC$BMQGr6b9g6b%J%NN3;RO"7k?(G^$N;@AG4T853h@-$KBP$9$k9g6b6bB0 | 9-e | Polymer electrolyte fuel cell Connected platinum-alloy nanoparticles Carbon-free electrocatalyst | 12/22 18:27:33 |
connected PtRu nanoparticles (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 12-i (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
756 | $B8GBN%"%k%+%jG3NAEECSMQ%+!<%\%s%U%j!<(BPtRu$B%J%NN3;RO"7k?(G^$N3+H/(B | 12-i | solid-state alkaline fuel cells connected PtRu nanoparticles carbon-free electrocatalyst | 12/22 18:18:30 |
contact angle (2$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 12-a (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
277 | $BB&:?7k>=@-%V%m%C%/6&=E9gBN$N9g@.$H%]%j%(%A%l%sI=LL$ND6Y{?e2=(B | 12-j | Living radical contact angle Fluorination | 12/20 14:17:39 |
337 | $BJ,;RF0NO3X%7%_%e%l!<%7%g%s$K$h$k@\?(3Q$N?75,$JI>2AK!(B | 12-a | Molecular Dynamics Simulation Contact Angle Free Energy | 12/21 10:27:49 |
Continuous culture (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 7-a (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
215 | $B%U%)%H%P%$%*%j%"%/%?!<$rMQ$$$?0dEA;RAH49$(%7%"%N%P%/%F%j%"$K$h$k(B1,3$B%W%m%Q%s%8%*!<%k$N9b8zN(@8;:(B | 7-a | cyanobacteria Continuous culture immobilized system | 12/19 13:55:06 |
continuous flow synthesis (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 12-c (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
704 | $BO"B3N.DLH?1~4o$rMQ$$$?(BZSM-5$B%<%*%i%$%H$NICB.9g@.(B | 12-c | zeolites continuous flow synthesis ultrafast synthesis | 12/22 17:17:06 |
Continuous manufacturing (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 2-f (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
201 | $B0eLtIJ>{:^@=B$%W%m%;%9$K$*$1$k%P%C%A!&O"B35;=Q$N@=IJIJ | 2-f | Pharmaceuticals Granulation Continuous manufacturing | 12/19 10:45:31 |
continuous process (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B SP-9 (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
73 | $B%U%'%N!<%k | SP-9 | phenolic resin continuous process dehydration | 12/8 18:53:32 |
Continuous-flow system (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 5-a (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
818 | $B%5%$%:@)8f$5$l$?%2%k%M%C%H%o!<%/$NN.DL<0?(G^H?1~$X$N1~MQ(B | 5-a | Polymer gel Palladium catalyst Continuous-flow system | 12/22 20:53:11 |
contract angle (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 12-j (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
276 | $B%8%(%A%k%0%j%3!<%k%(%A%k%(!<%F%k%"%/%j%l!<%H$r5!G=@-It0L$K;}$DB&:?7k>=@-%V%m%C%/6&=E9gBN$N%]%j%(%A%l%sI=LL2~ | 12-j | Side Chain Crystalline Block Copolymer (SCCBC) living radical polymerization contract angle | 12/20 14:17:19 |
control (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B SP-8 (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
55 | Web$BBP1~(B $B | SP-8 | monitoring system control logger | 12/8 16:55:47 |
control pore size (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 4-a (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
521 | $BMM!9$JC:2=?eAG$+$i@8@.$9$kG.J,2rC:AG$,(Bsilicalite-1$BKl$NF)2aJ,N%@-G=$KM?$($k1F6A(B | 4-a | silicalite-1 membrane control pore size carbon-deposition | 12/22 10:23:31 |
convection (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 9-e (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
741 | $B8GBN9bJ,;R7AG3NAEECS%+%=!<%I?(G^AXFb$NBPN.$,%;%k$N@-G=$KM?$($k8z2L(B | 9-e | polymer electrolyte fuel cell convection oxygen reduction reaction | 12/22 18:06:37 |
convective heat transfer (2$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 3-b (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
138 | $B8:05BPN.EAG.4%Ag;~$N<>$j$*$h$SE`7k:`NA$N4%AgFC@-(B | 4-h | drying reduced pressure convective heat transfer | 12/15 11:11:40 |
317 | Numerical simulation of the effect of liquid-liquid phase separation on the convective heat exchange in a microchannel | 3-b | phase separation convective heat transfer numerical simulation | 12/20 19:00:56 |
Cooling Water (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B SP-8 (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
142 | $BG.8r494o | SP-8 | Cooling Water Water quality control Monitoring | 12/15 11:56:26 |
coordination number (2$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 1-a (2$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
147 | CDSAP$B%b%G%k$K$*$1$kJ,;RI=LL@Q%Q%i%a!<%?$N=$@5$*$h$SAjJ?9U$N7W;;(B | 1-a | phase equilibrium activity coefficient model coordination number | 12/15 12:29:05 |
218 | $BJ,;RF0NO3X%7%_%e%l!<%7%g%s$K$h$kG[0L?t$N7W;;$*$h$S(BCDSAP$B%b%G%k$X$NE,MQ(B | 1-a | coordination number molecular simulation activity coefficient model | 12/19 15:01:47 |
copper powder (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 12-g (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
284 | Cu$BJ4$X$N(BAg$B%3!<%H=hM}$H$=$NFC@-(B | 12-g | electroless plating copper powder Ag coating | 12/20 14:56:02 |
copper reductant (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 5-f (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
186 | $B%*%s%5%$%H?e | 5-f | microreactor system for reduction copper reductant nitrate ion | 12/17 17:09:27 |
core shell (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 12-c (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
405 | $B6bB0HiKl$7$?%4%`%3%"F3EE@-HyN3;R$N3+H/$K4X$9$k8&5f(B | 12-c | Polyimide Silicone rubber core shell | 12/21 15:24:14 |
Core-Shell (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 4-e (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
788 | Core-Shell$B9=B$2=(BMFI$B7?%<%*%i%$%H$N?e>x5$6&B82<$K$*$1$k(BCO2$B5[CeFC@-(B | 4-e | Core-Shell CO2 adsorption Zeolite | 12/22 19:23:23 |
Corn cob (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 7-a (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
275 | $BHs2D?)%P%$%*%^%9$r86NA$H$7$?F1;~E|2=H/9Z$K$h$k(BD-$BF};@$N8zN(E*@8;:(B | 7-a | D-lactic acid Simultaneous saccharification and fermentation Corn cob | 12/20 14:15:50 |
correlation (4$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 1-a (3$B7o(B), HQ-21 (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
126 | $B2sE><03IYBMc$N3IYB=jMWF0NO$NFC@-(B | HQ-21 | mixing power consumption correlation | 12/14 13:50:44 |
223 | $B1U2=%W%m%Q%s(B+$B%"%k%3!<%k:.9g7O$NM6EEJ*@-B,Dj$H@EM6EEN($NAj4X(B | 1-a | dielectric constant binary mixture correlation | 12/19 15:28:04 |
242 | $B%]%j%V%A%k%a%?%/%j%l!<%HCf$N%1%H%sN`$NAj8_Aj8_3H;678?t$NB,Dj$HAj4X(B | 1-a | Mutual diffusion coefficient Correlation Poly(butyl methacrylate) | 12/19 20:11:11 |
857 | $B2q9g7O$N5$1UJ?9U$NAj4X(B | 1-a | vapor-liquid equilibrium associated liquid correlation | 12/22 23:39:21 |
counter diffusion CVD (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B F-1 (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
124 | [$B0MMj9V1i(B] $BBP8~3H;6(BCVD$BK!$K$h$k%7%j%+7OKl$N?eAG(B/$BC:2=?eAGJ,N%(B | F-1 | hydrocarbon separation silica based membranes counter diffusion CVD | 12/14 13:33:34 |
coupled analysis (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 9-e (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
367 | $B8GBN;@2=J*7AG3NAEECS$rMQ$$$??e>x5$EE2r$NO"@.2r@OI>2A(B | 9-e | SOFC steam electrolysis coupled analysis | 12/21 12:20:18 |
covering state (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 12-c (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
736 | $B%(%M%k%.! | 12-c | covering state image analysis solid phase reaction | 12/22 17:58:13 |
Cr(acac)3 (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 8-b (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
627 | $B9b29NN0h$K$*$1$kD6NW3&Fs;@2=C:AGCf$G$N%/%m%`(B(III)$B%"%;%A%k%"%;%H%J!<%H$N3H;678?t$NB,Dj(B | 8-b | Diffusion coefficient Cr(acac)3 Supercritical carbon dioxide | 12/22 14:41:13 |
Cr-doped SBA-15 (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 5-a (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
13 | SBA-15$B?(G^$K$h$k%$%=%V%?%s;@2=C&?eAGH?1~$N(BCr$B=$>~$K$h$k9b3h@-2=(B | 5-a | Oxidative dehydrogenation Isobutane Cr-doped SBA-15 | 11/30 15:01:18 |
Cre/loxP system (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 7-d (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
310 | Cre$BAH9~$_7?%l%s%A%&%$%k%9%Y%/%?!<$K$h$k(BCHO$B:YK&$X$NFCDj%2%N%`It0L0dEA;RF3F~K!$N3+H/(B | 7-d | lentiviral vector Cre/loxP system hybrid vector | 12/20 17:32:35 |
Creep Damage (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B F-2 (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
505 | [$B0MMj9V1i(B] $B9b29G[4I$H$7$F$N(BAlloy 800H$B:`$NJ]A4(B | F-2 | Creep Damage Dimensional Measurement Oxidation | 12/22 09:03:03 |
CRIS-PITCh (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 7-a (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
313 | CRIS-PITCh$BK!$rMQ$$$F:n@=$7$?%N%C%/%$%s(BCHO$B:YK&$N93BN@8;:I>2A(B | 7-a | CRIS-PITCh Genome editing CHO cells | 12/20 18:05:33 |
critical metals (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 4-f (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
377 | $B?75,Cj=P:^$rMQ$$$?M-2AGQ4~J*$+$i$N%l%"%a%?%kJ,N%2s<}%7%9%F%`$N3+H/(B | 4-f | critical metals recovery extraction | 12/21 13:25:46 |
Critical Supersaturation (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 12-g (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
621 | $BNW3&2aK0OBHf$K$h$k0eLtIJ$N7k>=2=FqEY$NI>2A(B | 12-g | Crystallization difficulty Critical Supersaturation Pharmaceutical compounds | 12/22 14:24:51 |
Cross-linking (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 9-e (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
751 | SAFC$BMQK'9aB27O9b2M667?%"%K%*%s8r49Kl$N2M66L)EY@)8f$HEECS@-G=I>2A(B | 9-e | Solid alkaline fuel cell Anion conducting membrane Cross-linking | 12/22 18:16:02 |
crossflow (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 4-a (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
599 | $BMO | 4-a | crossflow solute adsorption simulation | 12/22 13:09:34 |
crosslinking (2$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 1-b (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
560 | Enhancement of Chitosan Hydrogel Stability by Crosslinking under Carbon Dioxide-Water System | 12-e | carbon dioxide chitosan hydrogel crosslinking | 12/22 11:45:20 |
652 | $BFs;@2=C:AG6nF0$K$h$kMO2r$rMxMQ$7$?%-%H%5%s!?%H%j%]%j%j%s;@2M66%2%k$NJ*@-2r@O(B | 1-b | carbon dioxide chitosan hydrogel crosslinking | 12/22 15:35:27 |
Crude distillation unit (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 4-c (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
6 | Energy Saving in a Crude Distillation Unit with a Divided Wall Column | 4-c | Crude distillation unit Energy saving DWC | 11/15 17:09:05 |
cryogenic distillation (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B SP-9 (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
99 | $B? | SP-9 | oxygen-18 cryogenic distillation isotope separation | 12/12 15:04:14 |
cryogenic separation (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 4-c (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
620 | $B%P%$%*%^%9%,%92=G3NAEECSH/EE%7%9%F%`$K$*$1$k3W?7E*$J?eAGJ,N%%W%m%;%9$N3+H/(B | 4-c | hydrogen purification cryogenic separation self-heat recuperation | 12/22 14:23:57 |
crystal growth (4$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 8-e (2$B7o(B), 9-e (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
121 | $B9b299b05?eCf$G$N9b%"%9%Z%/%HHfM-5!=$>~%Y!<%^%$%H$N9g@.$H5!G=:`NA$X$NE83+(B | 8-e | hot-compressed water crystal growth organic-inorganic hybrid material | 12/14 13:01:59 |
134 | $BIbM7Hy>.1UE)$+$i$N7k>=@.D92aDx$N$=$N>l4QB,(B(2) | 2-f | Levitated droplet Crystal Growth Electrodynamic Balance | 12/14 16:48:44 |
305 | $BD6NW3&%"%s%b%K%"$rMQ$$$?;@@-%"%b%N%5!<%^%kK!$K$h$k(BGaN$B7k>=0i@.(B | 8-e | gallium nitride crystal growth supercritical ammonia | 12/20 16:58:54 |
425 | $BBQG.4p:`>e$X$N5^B.>xCe$H5!3#GmN%$K$h$kB@M[EECSMQBgN37BB?7k>=(BSi$BKl$N:n@=(B | 9-e | poly-crystalline silicon films crystal growth solar cells | 12/21 16:29:27 |
crystal structure (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 5-a (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
544 | $BD6NW3&%>%k%2%kH?1~$rMxMQ$7$?DcH?1~@-A06nBN$K$h$kC:AG!?%A%?%K%"J#9gBN$N7k>=9=B$(B | 5-a | supercritical sol-gel reaction crystal structure low reactive precursor | 12/22 11:18:38 |
crystalline Si solar cell (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B K-2 (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
85 | [$B>7BT9V1i(B] Cat-CVD$B5;=Q$N7k>=%7%j%3%sB@M[EECS1~MQ(B | K-2 | catalytic chemical vapor deposition crystalline Si solar cell passivation | 12/11 18:33:53 |
crystallization (5$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 12-g (3$B7o(B), HQ-21 (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
91 | $B%Z%m%V%9%+%$%HB@M[EECS$N9b8zN(2=$X8~$1$?8w5[<}AX$N7k>=N37B@)8f$HEECSFC@-$X$N1F6A(B | 12-a | perovskite solar cell crystallization | 12/12 14:25:44 |
175 | L-$B%P%j%s$N>=@O$K$*$1$kN`1oBN$H$=$N8w3X0[@-BN$N | HQ-21 | Crystallization Branched Chain Amino Acid Solid Solution | 12/16 18:30:18 |
581 | $B%*%$%j%s%0%"%&%H8=>]$r7PM3$9$k7O$G$N7k>=2=$N2r@O(B | 12-g | Crystallization Oiling-out Phase separation | 12/22 12:19:18 |
700 | $B%3%s%T%e!<%?%7%_%e%l!<%7%g%s$K4p$E$/N3EY@)8f%P%C%A>=@O(B | 12-g | Crystallization Particle size Simulation | 12/22 17:10:13 |
801 | $B;i | 12-g | crystallization lysozyme lipid planar membrane | 12/22 19:56:45 |
Crystallization difficulty (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 12-g (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
621 | $BNW3&2aK0OBHf$K$h$k0eLtIJ$N7k>=2=FqEY$NI>2A(B | 12-g | Crystallization difficulty Critical Supersaturation Pharmaceutical compounds | 12/22 14:24:51 |
crystallization mobilization (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 12-g (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
506 | $BKdN)AX?;=P?eCf$N%+%k%7%&%`%$%*%s$N>=@O8GDj2=$N2CB.0x;R(B | 12-g | acceleration factor crystallization mobilization landfill leachate | 12/22 09:04:55 |
Cs removal (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B HC-11 (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
510 | [$B>7BT9V1i(B] $B=|@w$N$"$H$KI,MW$J$3$H(B | HC-11 | Revitalization Cs removal residents return | 12/22 09:28:53 |
CSD(Crystal Size Distribution) (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 12-g (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
540 | $BN37BJ,I[$NAjBPN3;R?tJQ49$rMQ$$$?(BFBRM$B$K$h$k%3!<%ID9J,I[$N;;=P(B | 12-g | FBRM(Focused Beam Reflectance Measurement) CLD(Chord Length Distribution) CSD(Crystal Size Distribution) | 12/22 11:08:01 |
CSR (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B HC-12 (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
710 | [$B>7BT9V1i(B] $B?H6a$JF|MQIJ$rDL$8$F$N!V2=3X!W650i;Y1g3hF0(B | HC-12 | Chemical Communication CSR Company | 12/22 17:28:22 |
CSTR (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 5-g (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
537 | CaO$B?(G^K!$K$h$k%P%$%*%G%#!<%<%kO"B3@8;:%W%m%;%9(B | 5-g | Transesterification CSTR Solid base catalyst | 12/22 11:05:24 |
Cu-Co alloy (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 | | |
129 | $B@E<'>l2<$K$*$1$kEE<'IbM7(BCu-Co$B9g6b1UE)Fb(BMHD$BBPN.$NAXN.(B-$BMpN.A+0\(B | 2-a | Cu-Co alloy MHD convection static magnetic field | 12/14 14:46:47 |
Culture Waste (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 13-e (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
841 | $B%V%J%7%a%8GQ6]>23%$+$i$N%j%s2s<}(B | 13-e | Bunasimeji Culture Waste Phosphorus Recovering | 12/22 22:34:35 |
CuO (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 9-c (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
662 | Enhancement of oxygen release in perovskite-oxides supported CuO oxygen carriers in chemical looping with oxygen uncoupling for solid fuels combustion | 9-c | chemical looping oxygen uncoupling perovskite oxides CuO | 12/22 15:52:58 |
customer value (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B SS-1 (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
29 | Managing Disruptive Innovation | SS-1 | innovation customer value disruptive | 12/5 17:12:54 |
CVD (11$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 5-h (5$B7o(B), 4-a (3$B7o(B), K-2 (2$B7o(B), HQ-21 (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
109 | $B9bB.J.N.$r;HMQ$7$?%W%i%:%^(BCVD$BCf$G$N%7%j%3%s9bB.@=Kl(B | HQ-21 | CVD silicon high deposition rate | 12/13 11:31:14 |
122 | $BBQ;@@-?eAGF)2a%7%j%+Kl$N3+H/(B | 4-a | hydrogen CVD silica membrane | 12/14 13:17:17 |
132 | $B%7%j%+J#9gKl$NC:2=?eAGJ,N%(B | 4-a | hydrocarbon CVD silica membrane | 12/14 16:10:36 |
321 | $BG.(BCVD$BK!$K$h$k(BTi1-xAlxN$B$N9g@.$HI>2A(B | 5-h | CVD coating TiAlN | 12/20 21:22:46 |
476 | $BF | 5-h | Graphene CVD Chemical etching | 12/21 20:05:32 |
477 | [$B0MMj9V1i(B] $B%^%$%/%mGH%W%i%:%^(BCVD$B$K$h$kCb2=C:AG$N9g@.(B | K-2 | plasma CVD carbon nitride | 12/21 20:26:40 |
478 | SiC-CVI$B%W%m%;%9$K$*$1$k%^%k%A%9%1!<%k$G$N6Q0l@.D9$rL\;X$7$?(BHCl$B%,%9E:2C5Z$S9bG;EY86NA6!5k8z2L(B | 5-h | CVD SiC | 12/21 20:38:17 |
552 | SiC-CVI$B%W%m%;%9$N9gM}@_7W$K$h$kD66Q0l4^?;$N | 5-h | CVD SiC CMC | 12/22 11:31:29 |
615 | CVD$B%7%j%+Kl$N | 4-a | silica membrane CVD gas separation | 12/22 14:08:34 |
664 | $B%b%N%a%A%k%H%j%/%m%m%7%i%s$rMQ$$$?(BSiC-CVD$B%W%m%;%9:GE,2=$N$?$a$NAm3gH?1~%b%G%k9=C[(B (4) | 5-h | SiC Reaction model CVD | 12/22 16:01:47 |
838 | [$B>7BT9V1i(B] CVD/ALD$B%W%m%;%9$NH?1~9)3XE*2r@O$H@_7W(B | K-2 | Chemical Reaction Engineering CVD Process Design | 12/22 22:03:22 |
cyanobacteria (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 7-a (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
215 | $B%U%)%H%P%$%*%j%"%/%?!<$rMQ$$$?0dEA;RAH49$(%7%"%N%P%/%F%j%"$K$h$k(B1,3$B%W%m%Q%s%8%*!<%k$N9b8zN(@8;:(B | 7-a | cyanobacteria Continuous culture immobilized system | 12/19 13:55:06 |
Cyclone (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 2-f (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
453 | The effects of the entrance laminarizer assembly on cyclone performances | 2-f | Cyclone Laminarizer Computation fluid dynamics | 12/21 18:31:01 |
cylindrical medium (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 4-b (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
402 | $B1_E{_I:`$rM-$9$k1s?4_I2a4o$K$h$kFq_I2a@-AtN`7|By1U$+$i$NM-2A%?%s%Q%/ | 4-b | centrifugal filtration cylindrical medium difficult-to-filter suspension | 12/21 15:00:53 |
cytochrome P450 (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 7-a (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
395 | $BG[NsFC0[E*$J(BDNA$B7k9g%?%s%Q%/ | 7-a | DNA binding protein cytochrome P450 DNA | 12/21 14:37:02 |