$B:G=*99?7F|;~!'(B2014-10-30 14:37:15
$B$3$NJ,N`$G$h$/;H$o$l(B $B$F$$$k%-!<%o!<%I(B | $B%-!<%o!<%I(B | $B | |
---|---|---|---|
crystallization | 5$B7o(B | ||
crystal growth | 4$B7o(B | ||
fluidized bed | 3$B7o(B | ||
supercritical carbon dioxide | 3$B7o(B | ||
crystal structure | 3$B7o(B | ||
biomass | 3$B7o(B | ||
Nanoparticles | 3$B7o(B | ||
Membrane | 2$B7o(B | ||
Microfluidics | 2$B7o(B | ||
Microbubble | 2$B7o(B | ||
nitrification | 2$B7o(B | ||
reduction crystallization | 2$B7o(B | ||
hydroxyapatite | 2$B7o(B | ||
RESS technique | 2$B7o(B | ||
Front-Tracking | 2$B7o(B | ||
alginate | 2$B7o(B | ||
microcapsule | 2$B7o(B | ||
titania | 2$B7o(B | ||
amino acid | 2$B7o(B | ||
fluorescence | 2$B7o(B | ||
supercritical drying | 2$B7o(B | ||
SOFC | 2$B7o(B | ||
slurry | 2$B7o(B | ||
scaffold | 2$B7o(B | ||
Calcium Alginate | 1$B7o(B |
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | |
---|---|---|---|
2 | $BLZe$X$NC:AG | Biomass Gasification Rate Fluidized Bed | 7/30 15:25:24 |
3 | $B8w?(G^3h@-$r<($9;@2=%A%?%sHyJ4$N5$Aj9g@.$H$=$NA`:n>r7o$N1F6A(B | Photocatalyst Titania CVD | 7/30 15:25:57 |
4 | $B%P%$%*%^%9G.J,2r2aDx$G$NN.F0AXFb6E=85!9=(B | Biomass Agglomeration Fluidized Bed | 7/30 15:28:57 |
6 | $B4I7?H?1~4o$rMQ$$$?;@2=0!1tHyN3;R$NO"B39g@.(B | Continuous preparation Fine particles Zinc oxide | 8/11 14:25:38 |
7 | $B?e;@2=%"%k%_%K%&%`6&D@K!$K$h$k4uGv(BSi$B4^M-GQ?e$+$i$N%7%j%+=|5n$NDjNL%b%G%k2=(B | Surface Complex Chemical Kinetics Coprecipitation | 8/11 16:24:17 |
8 | Ni$BC4;}3lC:%A%c!<$K$h$k3lC:%?!<%kDc29@\?(?e>x5$2~ | Nickel-loaded brown coal Brown coal tar Catalytic gasification | 8/12 12:34:14 |
10 | $BG3>FGS%,%9$X$NG"AG?eJ.L8$K$h$kCbAG;@2=J*Dc8:$N:GE,A`:n>r7o$N8!F$(B | Urea solution NOx reduction Atomization | 8/13 14:58:31 |
14 | $B%$%*%s2M66@-%9%?!<%]%j%^!<$rMQ$$$?LtJ*AwC#%7%9%F%`$N9=C[(B | injectable gels local drug delivery ion-crosslinkable star polymers | 8/18 14:20:13 |
20 | $BD>N.EE>l$rMxMQ$7$?N3;R6E=85;=Q$N3+H/$H;q8;%j%5%$%/%k$X$N1~MQ(B | D.C. electric field flocculation slurry | 8/20 14:38:56 |
21 | $B%j%s;@%+%k%7%&%`7O2=9gJ*$N@8@.$K5Z$\$95?;wBN1U$N4V7gN.DL4V3V$*$h$SN.B.$N1F6A(B | calcium phosphate simulated body fluid confined space | 8/20 17:05:06 |
22 | $B%\!<%k%_%k$rMQ$$$?GQ%"%k%_HyN3;R$+$i$N?eAG@=B$(B | Hydrogen production Waste aluminum Ball mill | 8/20 17:05:48 |
25 | $B$3$s$K$c$/HtJ49ZAG2C?eJ,2rJ*$N5!G=@-I>2A(B | Tobiko peptide biomass | 8/20 20:53:30 |
26 | $B@8F}$*$h$SEAE}?)IJM3Mh$N%W%m%P%$%*%F%#%/%9$NC1N%!&F1Dj$*$h$S5!G=@-I>2A(B | probiotics Propionic acid bacteria bifidogenic growth stimulator | 8/20 21:07:46 |
29 | $B$+$s$T$g$&J4Kv$NN37B$,5Z$\$9>{:^$X$N1F6A(B | Kanpyo Desiccating Tablet Dried Gourd | 8/21 13:51:41 |
30 | $B2C05MO2rK!$K$h$k%"%k%.%s;@%+%k%7%&%`Cf6u%2%kHyN3;R$N@8@.(B | Microbubble Microparticle Calcium Alginate | 8/21 14:04:26 |
32 | $B%U%#%s<~$j$K$*$1$kKl>u6E=L$N?tCM7W;;(B | film condensation numerical simulation front-tracking | 8/21 15:10:58 |
35 | $B3&LL3h@-:^$rMQ$$$F:n@=$7$?%]%jF};@@=B?9& | PLLA porous membrane surfactant scaffold | 8/21 16:29:10 |
36 | $B1d?-2C9)$7$?%R%I%m%-%7%"%Q%?%$%HJ#9g2=%]%j%+%W%m%i%/%H%s@=B->l:`NA(B | hydroxyapatite polycaprolactone scaffold | 8/21 16:49:49 |
37 | $B%A%?%s$NI=LL=hM}$H936]@-J#9g:`NA$X$N1~MQ(B | hydroxyapatite microcapsule titanium | 8/21 17:02:38 |
38 | $B?75,%+%A%*%s8r49Kl$N?eF)2a@-$H$=$N1~MQ(B | Thermochemical water splitting IS process Ion exchange membrane Water permeation | 8/22 10:41:29 |
39 | $BKlDL5$7?%^%$%/%mN.O)$N%,%9B&J* | micro reactor mass transfer coefficient ozone | 8/22 11:33:34 |
40 | $B%O%$%I%l!<%H2=%,%9J,N%K!$NJ,N%@-G=$K5Z$\$9%O%$%I%l!<%HJ,2r2aDx$N1F6A(B | gas hydrate gas separation separation efficiency | 8/22 11:33:38 |
41 | $B%P%$%*%G%#!<%<%kG3NA$NF^$jE@2~A1$KM-8z$JE:2CJ*$NA*Dj$H$=$N8z2L$N8!>Z(B | biodiesel fuel cloud point additive | 8/22 11:47:24 |
42 | $B6l3%4d$NH?1~@-$K5Z$\$9N37B$N1F6A(B | dolomite calcite reaction | 8/22 12:13:11 |
43 | 2$BCJ=D7?YxYBAe$N1U$N8r49N.NL(B | Mixing Exchange rate Vertical vessel | 8/22 12:13:16 |
45 | $B%8%U%k%*%m%\%m%s%"%\%Y%s%>%s7k>=$N%T%(%>%/%m%_%:%`FC@-$HAjE>0\(B | crystallization crystal structure fluorescence | 8/22 12:46:26 |
46 | Indomethacin$B$N7k>=B?7A@)8f$K4X$9$k8&5f(B | crystallization polymorphism indomethacin | 8/22 12:48:35 |
47 | $B?eAj(B/ $BM-5!Aj4VJ* | crystallization hollow crystal aqueous/ organic phase | 8/22 12:51:11 |
48 | $BYxYB>=@O%W%m%;%9$K$h$k%0%j%A%k%j%A%s;@1v7k>=$N@)8f$K4X$9$k8&5f(B | crystallization glysyrrhizic acid agitation | 8/22 12:57:52 |
49 | $BHy@8J*G3NAEECS$K$h$kGQ?e=hM}A`:n$K$*$1$kM-5!J*G;EY$N1F6A(B | microbial fuel cell wastewater treatment organic loading | 8/22 13:00:01 |
50 | L-$B%$%=%m%$%7%s7k>=$N@.D9$KBP$9$k3&LL3h@-:^$N1F6A(B | amino acid crystal growth crystal structure | 8/22 13:01:15 |
51 | $BE:2CJ*6&B82<%"%9%Q%i%.%s;@7k>=$NLLA*BrE*@.D95sF0$N0c$$$rMxMQ$7$?8w3XJ,3d(B | amino acid crystal growth crystal structure | 8/22 13:04:09 |
52 | CO2$BNW3&E@6aK5$K$*$1$k(BCO2+$B%"%k%3!<%k7O5$1UJ?9U$NB,Dj(B | Vapor-Liquid Equilibrium(VLE) Subcritical Conditions | 8/22 13:51:03 |
57 | $BD6NW3&Fs;@2=C:AG$rMxMQ$7$?%$%*%s1UBN%2%k%P%$%s%@! | supercritical carbon dioxide ionic liquid gel carbon electrode | 8/22 16:12:03 |
59 | $BD6NW3&4%Ag$K$h$k%K!<%I%k7?%A%?%K%"%J%NN3;R$N:n@=$K$*$1$kMOG^ | supercritical drying titania nano-needle | 8/22 16:27:16 |
60 | $B6I=jAH@.$r9MN8$7$?6u9&M}O@$K$h$kD6NW3&Fs;@2=C:AG(B+$B?e7O$NAjJ?9U%b%G%k$N9=C[(B | local composition hole theory supercritical carbon dioxide | 8/22 16:43:31 |
62 | $BD6NW3&Fs;@2=C:AG=hM}$K$h$k%P%C%-!<%2%k$N@V305[<}%9%Z%/%H%kB,Dj(B | supercritical carbon dioxide bucky gel Infrared spectrum | 8/22 17:10:12 |
63 | Effect of organic solvent on formation of homogeneous phase during supercritical carbon dioxide drying | homogeneous phase formation supercritical drying organic solvent | 8/22 17:36:56 |
65 | $BCf29:nF08GBN;@2=J*7AG3NAEECSMQ(BBi4Mg0.2V1.8O11-$B&D%+%=!<%I$N;n:n$HI>2A(B | BiMgVOx SOFC Cathode | 8/22 21:48:36 |
66 | Beta$B7?%<%*%i%$%H$K$h$k%$%?%H%jM3Mh%P%$%*%*%$%k$N%"%C%W%0%l!<%G%#%s%0(B | Biooill zeolite upgrading | 8/22 22:04:18 |
68 | $BN.F0AX0l4S%W%m%;%9$K$h$k>.N37BC4BN$X$N?(G^C4;}!"%+!<%\%s%J%N%A%e!<%V9g@.$H2s<}(B | carbon nanotubes fluidized-bed chemical vapor deposition | 8/23 15:19:53 |
71 | $BIOMOG^E:2C>=@OK!$K$h$k%"%;%A%k%5%j%A%k;@7k>=$N@=B$(B | Anti-solvent crystallization Pharmaceutical compounds Mono dispersed crystal | 8/25 11:13:02 |
72 | $B | cooling crystallization monodisperse crystals postassium aluminium | 8/25 11:14:07 |
74 | $BC1J,;69b | Multiple emulsion Microfluidics Stereolithography​ | 8/25 11:43:17 |
78 | Pt/Al2O3$B?(G^AX$N7A@.$K$h$kEE5$2=3XE*ItJ,;@2=H?1~$N(BCO$BA*BrN(8~>e(B | SOFC Exergy Recuperation Electrochemical Partial Oxidation | 8/25 13:26:19 |
79 | Li$BFse$X$NB?9&xCe$HEE5$2=3XI>2A(B | lithium secondary batteries porous silicon films physical vapor deposition | 8/25 13:48:05 |
80 | $B%0%k%3%"%_%i!<%<$r8GDj2=$7$?@8BN%]%j%^! | alginate membrene glucoamylase | 8/25 15:29:29 |
82 | $B%(%C%A%s%0@O=PK!$K$h$k%0%i%U%'%s$N4pHD>eD>@\7A@.$H!"Kl9=B$$NB.EYO@E*@)8f(B | graphene crystal growth dry-etching | 8/25 16:27:54 |
83 | Schizophyllum commune $B$rMQ$$$?E|2=H/9ZF1;~?J9T$K$h$k(BCellulose$B$+$i$N(BL-$B%j%s%4;@$ND>@\@8;:(B | #Schizophyllum commune# L-Malic acid CBP | 8/25 16:36:45 |
84 | $B1U1U7O$K$*$1$kC10l1UE)$N1?F0$K4X$9$k?tCM%7%_%e%l!<%7%g%s(B | Droplet Motion Liquid-Liquid Systems Front-Tracking | 8/25 17:06:43 |
86 | $BD62;GH%^%$%/%m%P%V%k$G:n$k%7%"%N%"%/%j%l!<%HCf6u%J%NN3;R$K4X$9$k8&5f(B | Nanoparticles Microbubble Cyanoacrylate | 8/25 18:16:43 |
87 | $B%^%$%/%m%U%k%$%G%#%C%/%9%G%P%$%9$HKl$rMxMQ$7$?(BW/O/W$B%(%^%k%7%g%sD4@=(B | Membrane Mcrofluidic device W/O/W emulsion | 8/25 18:51:27 |
88 | $BFs7A@-??6](BMucor javanicus$B$N(B $B9ZJl2=6]BN$K$h$k9%5$E*%(%?%N!<%k@8;:(B | #Mucor javanicus# dimorphism ethanol | 8/25 19:00:44 |
89 | Ethanol$BH/9Z;e>u6]$N%$%*%s%S!<%`JQ0[$K$h$k9b29BQ@-2=$*$h$S%P%$%*%^%9$NF1;~E|2=H/9Z$X$N1~MQ(B | ethanol-fermenting fungi thermo-tolerant SSF | 8/25 19:00:48 |
91 | $BIUCeNO$r9MN8$7$??75,@\?(%b%G%k$rAH$_9~$s$@(BDEM$B%7%_%e%l!<%7%g%s$K$h$k%Q%s7?%Z%l%?%$%6Fb$K$*$1$k<>=aN3;R$N5sF02r@O(B | Liquid bridge DEM Contact model | 8/26 12:29:56 |
92 | $B%]%j%(%A%l%s%0%j%3!<%k$rMQ$$$?%"%k%.%s;@Kl$N9=B$2~2A(B | alginate membrene separation polyethylene glycol | 8/26 13:39:12 |
93 | $BD9:?%"%k%-%k4p$rM-$9$k4629@-9bJ,;R%O%$%I%m%2%k$N3+H/$HFC@-I>2A(B | thermosensitive gel amorphous-to-crystalline transformation adsorption | 8/26 14:34:18 |
94 | $BAB?e@-N3;R$N?e7OD4@=!&J,;6@)8f$K4X$9$k4pAC8&5f(B | hydrophobic particle dispersion slurry | 8/26 15:50:12 |
96 | $B%*%l%$%s;@%a%A%k!>%Q%k%_%A%s;@%a%A%k:.9g7O$N%&%#%s%?%j% | crystallization biodiesel winterization | 8/27 13:36:30 |
100 | $B?)IJ0_>C2=$NDjNLI>2A$rL\;X$7$?%R%H0_>C2=%7%_%e%l!<%?!<$N3+H/(B | Stomach model Peristalsis Solid foods | 8/27 16:39:50 |
101 | $B%"%>@wNA$N9%5$E*Hy@8J*=hM}(B | azo dye aerobic decolorization activated sludge | 8/28 12:51:15 |
104 | $BKl>xN1K!$K$h$k%[%(%$$NG;=LA`:n(B | membrane distillation hydrophobic/hydrophilic membrane whey protein concentration | 8/28 14:32:00 |
105 | $B9b1vG;EY;:6HGQ?e$N>K2=C&Cb=hM}$K4X$9$k8!F$(B | biological nitrogen removal saline wastewater immobilized activated sludge | 8/28 15:00:12 |
107 | $B7\J5Dc29C:2=%W%m%;%9$N3+H/5Z$S4xH/J,$NDc29E>2=(B | limonite low temperature carbonization livestock waste | 8/28 16:22:34 |
110 | $B%m!<%i!<7?05:qAuCV$K$h$kE%C:$N4%AgFC@-(B | peat dehydration compression | 8/28 17:29:10 |
111 | $BGr6b%J%NN3;R$N4T85>=@O$K$*$1$k9bJ,;RE:2C$N1F6A(B | Reduction crystallization Nanoparticles Polymer | 8/29 11:47:10 |
112 | RHO$B7?%<%*%i%$%HKl$N9g@.>r7o$N8!F$(B ($BAaBg@h?JM}9)(B/$BAaBgM}9)Am8&(B/JST-CREST) ($B@5(B)$B>>J}(B $B@5I'!&(B | RHO type zeolite Membrane Synthesis | 8/29 11:48:32 |
113 | $B9|3J9=B$Cf$N%j%s4^M-NL$,0[$J$k(BSAPO-18$B7k>=$N9g@.$N8!F$(B ($BAaBg@h?JM}9)(B/$BAaBgM}9)Am8&(B/JST-CREST) ($B@5(B)$B>>J}(B $B@5I'!&(B | SAPO-18 Hydrothermal synthesis Acid solution | 8/29 11:57:11 |
114 | $B5^B.>xCe$H$=$N>lMOM;7k>=2=$K$h$kBgN37B7k>=(BSi$BGvKl:n@=K!$N3+H/(B | Si thin films crystal growth vapor deposition | 8/29 12:56:02 |
115 | $B>K2==hM}$K$*$1$kJq3g8GDj2=K!$H@8J*KlK!$G$N3h@-2=%(%M%k%.!<$NHf3S8!F$(B | activation energy nitrification water temperature characteristics | 8/29 13:39:51 |
119 | $BB@M[G.MxMQ7?N.F0AX$N@=:n$H@-G=I>2A(B | lignite fluidized bed solar heat | 8/29 15:00:59 |
120 | $B0[J}E*<}=L$rMxMQ$7$?%A%e!<%J%V%k%3%m%$%I%U%)%H%K%C%/7k>=%2%k$N9b46EY2=(B | Colloidal Crystals Stimuli-Sensitive Gels Bragg Reflection | 8/29 15:13:24 |
121 | $BE>O'%9%i%0Cf$N%j%s2s<}$K4X$9$k%j%s$*$h$S6bB0$N5sF0(B | phosphorus slag metal | 8/29 15:34:14 |
123 | iPS$B:YK&$N8zN(E*G]M\$K8~$1$?A}?#$HBe | induced Pluripotent Stem cells growth curve metabolism | 8/29 19:05:51 |
125 | $B?75,Jq3g:`NA$G:n@=$7$?Jq3g8GDj2=>K2=6]C4BN$N=hM}FC@-(B | nitrification new immobilized material | 8/29 19:38:02 |
127 | $BJ*M}A*JL$K$h$kF<@=O#%9%i%0$+$i$NM-MQ6bB02s<}$rL\E*$H$7$?=yNd=hM}$,%9%i%0Cf@.J,$K5Z$\$91F6A(B | Copper smelting slag Slow cooling Physical Separation | 8/30 02:27:30 |
129 | $B%[%o%$%H%Z%l%C%H!">>!"?y$NH>C:2=$H4xH/@-J,$NFC@-(B | bio-mass semi-carbonization | 8/30 12:45:18 |
130 | $B?@7P%$%s%?!<%U%'%$%9$rL\E*$H$7$?%^%$%/%m%@%$%"%U%i%`%]%s%W$NEG=P1~Ez@-$N2~NI(B | micro pump neuron responsiveness | 8/31 21:50:42 |
131 | RESS-SC$BK!$K$h$k%F%*%U%#%j%sHyN3;RAO@=$KBP$9$kKDD%D>A0It$*$h$S%N%:%k$N29EY$N1F6A(B | RESS-SC technique Theophylline microparticle production Solid cosolvent effects | 9/1 03:51:53 |
132 | $B%^%$%/%m6u4V$G$ND6NW3&IOMOG^>=@OK!$K$h$k%F%*%U%#%j%sN3;RAO@=$K$*$1$kNIMOG^$N1F6A(B | Supercritical antisolvent recrystallization (SAS) Micro-space Good solvents effects | 9/1 04:00:53 |
133 | $B8GBN9bJ,;R7?G3NAEECS$K$*$1$kEE6K%9%i%j!2A(B | fuel cell slurries | 9/1 11:39:45 |
135 | $B3J;R>u%^%$%/%mN.O)9=B$$rMxMQ$7$??75,O"B3E*:YK&J,2h | Microfluidics Cell sorting Blood separation | 9/1 14:03:06 |
136 | $BD6NW3&MOBN5^B.KDD%(B(RESS)$BK!$rMQ$$$?(BTIPS$B%Z%s%?%;%sGvKl$NAO@=(B | RESS technique TIPS-pentacene Thin film production | 9/1 14:24:01 |
137 | $BG.?eCf$G$N6d%J%NN3;R$N@8@.$K5Z$\$986NAMO1U$N=O@.;~4V$N1F6A(B | silver nanoparticle aging time reduction crystallization | 9/1 14:32:35 |
138 | $B%X%F%m86;R4VAj8_:nMQ$rMQ$$$?8GBN9bJ,;R7AMQ?75,EE2r | Proton exchange membrane Heterocyclic ring systems Multiblock copolymer | 9/1 14:39:55 |
139 | $BLZ | woody biomass methanol steam reforming catalysis | 9/1 15:06:32 |
140 | $B?;DR4pHD>e$X$N%3%m%$%IN3;R$NIUCe8=>](B | Adhesion of colloids Nanoparticles Solid-liquid interface | 9/1 15:20:47 |
141 | $B%[%C%H%=!<%WK!$K$h$k(BZnS$B%J%NN3;R9g@.$K$*$1$kN3;R7A@.%W%m%;%9$N8!F$(B | ZnS nanoparticle hot-soap method fluorescence | 9/1 15:24:12 |
142 | $B2sJ,Nd5Q>=@O$K$h$k%"%_%N;@HyN3;R:n@= | Amino acids Batch cooling crystallization Polymer assisted miniaturization | 9/1 16:07:22 |
143 | $B%"%k%.%K%s$K$*$1$kFs | secondary nucleation particle-size control polythermal method | 9/1 16:07:44 |
144 | $B%$%*%s1UBN$KBP$9$k(BH2$BMO2rEY$N(BCO2$BE:2C8z2L(B | ionic liquid carbon dioxide solubility hydrogen solubility | 9/1 16:45:56 |
145 | V2O5-ZnO-TeO2-(ZrO)2(HPO4)2$B7OL51tJ4Kv%,%i%9$NG.KDD%FC@-$NI>2A(B | Lead-free glass Sealing glass Vanadate glass | 9/1 16:52:35 |
146 | $B;i | vesicle enzyme reaction selective permeation | 9/1 17:06:48 |
149 | $B5[CeB.EY$ND>@\B,Dj$K$h$k5,B'@-%a%=%]!<%i%9%7%j%+(B/$B?e>x5$5[Ce7O$NB.EYO@E*2rL@(B | mesoporous silica adsorption rate water vapor adsorption | 9/1 18:13:32 |
150 | $BN>?FG^@-J* | microcapsule amphipatyic | 9/1 18:33:52 |
151 | $BE7A3J*Cj=P%(%-%9$NJ,N%@:@=$K8~$1$?D6NW3&N.BNCj=PK!$NE,MQ@-(B | supercritical fluid extraction fractionation | 9/1 18:48:13 |
152 | $BJ,;R%$%s%W%j%s%H%]%j%^!<<+8J;Y;}Kl$N%2!<%H8z2L$N%-%i%kA*Br@-$KM?$($k=@Fp@-$N1F6A(B | Gate effect flexibility molecularly imprinted polymer | 9/1 19:23:09 |
155 | $B?;F)05B,Dj$K$h$k%J%NN3;R%9%i%j!<$NJ,;6!&6E=8>uBVI>2A(B | nanoparticle slurry osmotic pressure Dispersion and aggregation state evaluation | 9/1 21:13:30 |
157 | $BD6NW3&Fs;@2=C:AG$rMxMQ$7$?D6NW3&MOBN5^B.KDD%(B(RESS)$BK!$K$h$kLtJ*$N%J%NN3;RAO@=(B | RESS technique Drugs Nanoparticl production | 9/1 21:39:27 |
158 | $BH?1~@-%$%*%s%(%C%A%s%0$K$h$k%F%U%m%s@=%^%$%/%mN.BN%G%P%$%9$N:n@=(B | Stencil mask Reactive Ion Etching Teflon | 9/1 21:55:18 |
160 | VOF-IB$BK!$K$h$k5$1UFsAjN.$N?tCM2r@O(B | Gas-liquid flow Immesred Boundary Method Volume-of-fluid Method | 9/1 22:08:04 |