$B:G=*99?7F|;~!'(B2013-02-12 18:58:58
Facile Solid-State Synthesis (1$B7o(B) | ||||
---|---|---|---|---|
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 5-a (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
708 | $B8G8GH?1~?(G^$rMQ$$$?%(%?%N!<%k9g@.(B
| 5-a | Etanol Facile Solid-State Synthesis catalysts | 12/10 20:06:18 |
Facilitated transport membrane (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 4-a (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
383 | $B%"%_%N;@%$%*%s1UBN4^?;Kl$N%,%9F)2a@-$K5Z$\$9(BCO2
$B5[<}$KH<$&G4EY$N1F6A(B
| 4-a | CO2 separation Facilitated transport membrane Amino acid ionic liquid | 12/10 11:52:14 |
Facility Utilization (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B F-1 (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
349 | [$B>7BT9V1i(B]$BA[Dj%j%9%/$r;XI8$K$7$?:GE,@_Hw4IM}(B
| F-1 | Facility Utilization Productive Operation | 12/10 10:49:20 |
fatty acid
(1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 7-i (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
642 | $B5$1U3&LL$KE83+$7$?;i | 7-i | lipid monolayer amyloid beta fatty acid | 12/10 18:19:28 |
fatty acid vesicle (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 12-i (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
526 | $B;iKC;@%Y%7%/%kKl$NFC@-!&5!G=$K$*$h$\$93&LL=$>~(B
$BJ,;R$N8z2L(B
| 12-i | membranome fatty acid vesicle hydrolysis | 12/10 16:07:21 |
Faujasite (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 4-a (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
652 | $B%^%$%/%mGH2CG.$K$h$k(BLSX$B7?%U%)!<%8%c%5%$%HKl$N(B
$B9g@.$HF)2aJ*@-(B
| 4-a | Zeolite membrane Faujasite Pervaporation | 12/10 18:32:33 |
Fault diagnosis (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 10-b (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
377 | $B0[>o$NEAGEB.EY$*$h$S1F6A$NDxEY$N0c$$$rMxMQ$7$?(B
$BL$CN0[>o$N?GCG | 10-b | Fault diagnosis Fault propagation Dynamic simulator | 12/10 11:31:30 |
Fault diagnosis system (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 10-b (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
581 | $B2=3X%W%i%s%H$K$*$1$k@8;:NLJQ2=$KBP1~$7$?0[>o86(B
$B0xFCDj%7%9%F%`$N9=C[(B
| 10-b | Fault diagnosis system Material feed Principal component analysis | 12/10 17:09:22 |
Fault propagation (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 10-b (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
377 | $B0[>o$NEAGEB.EY$*$h$S1F6A$NDxEY$N0c$$$rMxMQ$7$?(B
$BL$CN0[>o$N?GCG | 10-b | Fault diagnosis Fault propagation Dynamic simulator | 12/10 11:31:30 |
feasibility study (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 4-a (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
456 | $B%P%$%*%^%9$N%,%92=$HKlJ,N%$NM;9g$K$h$k%a%?%s@=(B
$BB$%W%m%;%9$N@-G=I>2A(B
| 4-a | biomass gasification feasibility study membrane separation | 12/10 14:10:02 |
feed oil pretreatment (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 5-i (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
644 | $B%P%$%*%G%#!<%<%k@=B$$K$*$1$k86NAL}$NA0=hM}(B
| 5-i | biodiesel production feed oil pretreatment countercurrent multistage reactor | 12/10 18:21:25 |
feed solution
(1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 4-a (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
523 | $B | 4-a | Pressure retarded osmosis feed solution | 12/10 16:01:56 |
Femtosecond pulse laser (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 3-b (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
71 | $B%U%'%`%HIC%Q%k%9%l!<%6!<$rMQ$$$?5$K"@8@.2aDx$N(B
$B9b;~4VJ,2r7WB,(B
| 3-b | Laser produced plasma Femtosecond pulse laser Bubble formation | 12/4 12:35:24 |
Fenton reaction (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 13-g (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
186 | $B9b8zN(%U%'%s%H%sK!$K$h$k(BCO2$B4T85%"%k%3!<%k2=$K(B
$B$*$1$kCf4V@8@.J*$NGD0.(B
| 13-g | Fenton reaction Carbon dioxide Alcoholize | 12/7 13:54:08 |
Fenton-type reaction
(1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 13-b (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
118 | $BF | 13-b | hydrothermal oxidation chlorophenol Fenton-type reaction | 12/6 11:58:47 |
ferroelectric material (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 5-h (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
596 | $B;@2=J*F3EEBN$r2 | 5-h | ferroelectric material pulsed laser deposition conductive oxide | 12/10 17:26:48 |
fetal liver cells
(1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 7-e (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
726 | $B4NB!FC0[E*%^%H%j%C%/%9$rMQ$$$?B[;F4NB!:YK&$NG](B
$BM\(B
| 7-e | decellularization extracellular matrix fetal liver cells | 12/10 20:42:21 |
film (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 12-h (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
458 | $BG4EZJ,;61U$NEIKl4%Ag2aDx$KBP$9$k%2%k9=B$GK2u$N(B
$B1F6A(B
| 12-h | clay dispersion film gel | 12/10 14:12:40 |
Film Condensation (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 2-a (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
286 | $B8GBNI=LL>e$NKl>u6E=L$N?tCM2r@O(B
| 2-a | Film Condensation Numerical Simulation Front-Tracking | 12/9 14:30:32 |
film growth (2$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 5-h (2$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
600 | $B0[$J$k%W%i%:%^8;$K$h$k(BTi$B7O9E | 5-h | chemiacal vapor deposition film growth titanium carbide | 12/10 17:32:44 |
648 | RF$B%W%i%:%^(BCVD$BK!$K$h$k(BTiCBN$BGvKl$NDc29$G$N@=Kl(B
| 5-h | chemiacal vapor deposition film growth titanium carbide | 12/10 18:23:12 |
filter drying (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 4-h (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
790 | $BJ4BN4%Ag%W%m%;%9$N%b%G%j%s%0(B
| 4-h | spray drying filter drying process modelling | 12/10 21:55:31 |
filtration (3$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 4-b (2$B7o(B), 4-b (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
10 | $BIT?%I[%U%#%k%?!<$NAFBgN3;RJaB*N($K5Z$\$9%9%i%j!<(B
$B@.J,$N1F6A(B
| 4-b | slurry filtration particle retention | 11/14 14:19:21 |
307 | $B>F7k6bB0%U%#%k%?!<$K$h$k?e$*$h$SM-5!MOG^$N=|6](B
$BFC@-(B
| 4-b | stainless filter filtration rejection | 12/9 22:54:12 |
444 | $BIT?%I[%U%#%k%?!<$N9=B$$H_I2aFC@-(B
| 4-b | filtration non-woven fibrous filter structure | 12/10 13:53:43 |
Fine chemicals
(1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 7-a (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
616 | $B5!G=@-2=3XIJ@=B$$rL\;X$7$?%P%$%*%j%U%!%$%J%j!<(B
$B$N9=C[(B
| 7-a | Biorefinery Corn cobs Fine chemicals | 12/10 17:46:08 |
fine particle (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 2-f (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
134 | $B?6F04pHD>e$NHyN3;R5sF0$N2r@O(B
| 2-f | fine particle vibration adhesion force | 12/6 14:49:52 |
Finite Element Method
(1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 9-c (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
300 | $B2CG.$KH<$&_M@DC:$N5$K"@.D95sF0$NM=B,$rL\E*$H$7(B
$B$??tCM%b%G%j%s%0(B
| 9-c | Pore Growth of Coal CPD Model Finite Element Method | 12/9 21:01:46 |
Fischer-Tropsch synthesis (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 5-a (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
175 | Catalyst Preparation and Characterisation of Calcium
Oxide-based Catalyst for Fischer-Tropsch Synthesis
| 5-a | Fischer-Tropsch synthesis hydrocarbon green fuels | 12/7 11:16:56 |
Fixed-bed Reactor
(1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 7-a (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
154 | $B2=>QIJ$X$NG[9g$rL\E*$H$7$?%A%e!<%Y%m!<%:(B(Polianthes
tuberosa)$B%+%k%9$K$h$k:YK&30B?E|@8;:(B
| 7-a | Polianthes tuberosa Callus Extracellular Polysaccharide Fixed-bed Reactor | 12/6 18:06:02 |
flagellum (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 7-a (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
331 | $B$Y$sLS$J$i$S$K@~LS$NH/8=NL$,BgD26]$N@\Ce@-$KM?(B
$B$($k1F6A(B
| 7-a | flagellum curli cell attachment | 12/10 09:21:59 |
Floating zone technique (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 2-a (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
204 | $B29EY:9$HG;EY:9$K5/0x$9$k%^%i%s%4%KBPN.$N6&B88z(B
$B2L$H%R%9%F%j%7%9FC@-(B
| 2-a | Marangoni convection Floating zone technique Hysteresis phenomena | 12/7 16:56:11 |
Floc-structure
(1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 4-b (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
658 | $B3&LLD@9_B,Dj$rMQ$$$?7|ByG4EZ$N9=B$7hDj(B
| 4-b | Clay-suspension Hindered-settling Floc-structure | 12/10 18:39:30 |
flocculant (2$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 4-b (2$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
605 | $BJ4Kv6E=8:^$N:GE,AH@.$K4X$9$k0l9M;!(B
| 4-b | water treatment flocculant coagulation | 12/10 17:37:18 |
614 | $BL55!6E=8:^$H9bJ,;R6E=8:^$rJ;MQ$9$k7O$K$*$1$k4J(B
$B0W$J6E=8%b%G%k(B
| 4-b | water treatment flocculant modeling | 12/10 17:45:44 |
flour (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 7-h (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
342 | $B%Q%sMQ>.G~J4$N%(!<%8%s%0A`:n$K4X$9$kB.EYO@E*9M(B
$B;!(B
| 7-h | flour aging ESR | 12/10 10:31:33 |
Flow behavior
(1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 2-c (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
782 | $B%i%$%6!<$NEy2A2sO)%b%G%k2=(B
| 2-c | Fluidized bed Equivalent circuit model Flow behavior | 12/10 21:48:06 |
Flow distribution (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 5-f (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
413 | $B1?E>>uBV$NIT3NDj@-$r9MN8$7$?%^%$%/%mN.BNJ,G[Au(B
$BCV7A>u$N:GE,@_7W(B
| 5-f | Parallelized microreactor Flow distribution Design under uncertainty | 12/10 12:43:04 |
flow pattern
(1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 2-d (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
794 | $B=[4D7?5$K"Ec$K$*$1$k5$1U%U%m!<%Q%?!<%s$N2r@O$H(B
$B%*%>%s%,%9MO2rFC@-(B
| 2-d | bubble column ozonation flow pattern | 12/10 21:59:58 |
Flow regime
(1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 2-e (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
41 | V$B;z4IFb$N%9%i%C%.%s%08=>]$K4X$9$k8&5f(B
| 2-e | Slugging V-shaped elbow Flow regime | 11/30 09:41:38 |
flow-type optical apparatus
(1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 9-c (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
515 | $B?e(B+$B%S%A%e%a%s7O$N9b299b05AjJ?9U$NB,Dj$*$h$S?d(B
$B;; | 9-c | phase equilibrium bitumen flow-type optical apparatus | 12/10 15:47:17 |
flow-type reactor
(1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 2-a (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
78 | $BCf@-;R@~(BCT$B$rMQ$$$?N.DL<0D6NW3&?eG.9g@.AuCVFb$G(B
$B$N:.9g>uBV$N(Bin situ$B4Q;!(B
| 2-a | neutron radiography computed tomography flow-type reactor | 12/4 22:11:17 |
fluid milk (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 4-e (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
663 | $B1U>uF}$N%$%*%s8r49%W%m%;%9%7%_%e%l!<%7%g%s(B
| 4-e | ionic exchange fluid milk simulation model | 12/10 18:48:42 |
Fluid Mixing (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 2-b (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
63 | $BBPN.:.9g$N4pK\9=B$(B
| 2-b | Fluid Mixing Convective Mixing Mechanism of Mixing | 12/3 18:39:38 |
fluidization behavior (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 2-c (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
399 | $BN.F0AX2=3X>xCeK!$K$h$jD4@=$5$l$?C:AGA!0]HoJ$N3(B
$B;R$NN.F02=5sF0(B
| 2-c | carbon fiber-covered particles fluidization behavior cohesive particles | 12/10 12:31:26 |
Fluidized bed (4$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 2-c (3$B7o(B), 2-f (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
65 | $B5$K"N.F0AXCf$KB8:_$9$kAFBgJ*BN$N5sF0M=B,%b%G%k(B
$B3+H/(B
| 2-c | Fluidized bed DEM-CFD coupling simulation | 12/3 19:26:46 |
381 | $BBg5,LO(B3$BZ(B
| 2-f | Fluidized bed DEM Coarse grain model | 12/10 11:42:41 |
756 | $BN.F0AXFb$K$*$1$kN3;R4%Ag2aDx$N(BDEM-CFD$B%b%G%k3+(B
$BH/(B
| 2-c | DEM-CFD coupling simulation fluidized bed heat and mass transfer | 12/10 21:28:33 |
782 | $B%i%$%6!<$NEy2A2sO)%b%G%k2=(B
| 2-c | Fluidized bed Equivalent circuit model Flow behavior | 12/10 21:48:06 |
fluidized bed
(3$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 2-c (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
160 | $BN.F0AX$rMQ$$$?LZ | 5-g | biomass gasification fluidized bed | 12/6 19:04:15 |
223 | $B%5%V%_%j%a!<%?D9!&C1AX%+!<%\%s%J%N%A%e!<%V$NN.F0(B
$BAX(BCVD$B9g@.(B
| 5-h | single-wall carbon nanotubes chemical vapor deposition fluidized bed | 12/7 18:46:04 |
337 | $B5!G=@-G^BNN.F0AX$K$h$k9b4^?e@-%2%k>uJ* | 2-c | dehydration of hydrogel functional porous media fluidized bed | 12/10 09:52:07 |
fluorescence
(2$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 7-a (2$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
419 | $B9b?FOB@-93BN7k9g%?%s%Q%/ | 7-a | Quenchbody antibody fluorescence | 12/10 12:53:38 |
686 | $B%/%(%s%A2r>C86M}$K$h$k93@8J* | 7-a | Quenchbody rapamycin fluorescence | 12/10 19:24:26 |
food allergy (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 7-e (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
747 | $B%_%k%/%Z%W%A%I%"%l%$$rMQ$$$?%(%T%H!<%W2r@O$K$h(B
$B$k%"%l%k%.!<7P2aM=B,$H45 | 7-e | peptide array food allergy epitope analysis | 12/10 21:15:48 |
Food polymer (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 4-a (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
206 | $B@8BN9bJ,;RJ#9gKl$N?75,D4@=$HE|:?%M%C%H%o!<%/@)(B
$B8f$K$h$k?eMO@-?'AGJ,;R$NA*BrJ,N%(B
| 4-a | Food polymer composite membrane mass transfer | 12/7 17:03:16 |
Forage rice (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 13-b (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
725 | $BC\;:GS?e$r;\Hn$7$?;tNA%$%M?eED$K$*$1$k(BCH4$B$*(B
$B$h$S(BN2O$B$NF1;~:o8:$N;n$_(B
| 13-b | Liquid cattle waste Forage rice Greenhouse gas | 12/10 20:41:29 |
forage rice field
(1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 13-b (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
731 | $BFZ$U$sG"$H0p%o%i$rMQ$$$?9b294%<0%a%?%sH/9Z%W%m(B
$B%;%9$N3+H/$*$h$S=[4D7?FZ$U$sG"=hM}%7%9%F%`$N2A(B
| 13-b | dry thermophilic anaerobic digestion swine manure forage rice field | 12/10 20:51:10 |
Forest industry (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 13-d (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
247 | $B?9NS%P%$%*%^%9$NM-8zMxMQ%7%9%F%`$N9=C[!!!A@E2,?9(B
$BNS$rNc$K!A(B
| 13-d | Biomass resource Forest industry Utilization system | 12/8 13:00:13 |
formic acid (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 8-d (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
77 | $B9b299b05?eCf$N%.;@$NJ,2rH?1~$KBP$9$k?e$N?(G^:n(B
$BMQ$HMOG^OB8z2L(B
| 8-d | formic acid hot-compressed water solvation effect | 12/4 20:51:29 |
Forward Osmosis (2$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 4-a (2$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
565 | $B3$?e$r6nF0MO1U$H$7$?%U%)%o!<%I!&%*%9%b%7%9GS?e(B
$B=hM}%7%9%F%`(B(II):$B%7%9%F%`@-G=$H1?E>>r7o$H$N4X(B
$B78(B
| 4-a | Forward osmosis Membrane module Effluent treatment | 12/10 16:45:48 |
669 | Forward Osmosis$B%W%m%;%9$NKl%U%!%&%j%s%05!9=$N(B
$B8!F$(B
| 4-a | Forward Osmosis Fouling | 12/10 18:56:54 |
fouling (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 4-a (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
395 | $BN3;RJ,;61U$N%G%C%I%(%s%I$m2a$K$*$$$F:Y9&7B$H3+(B
$B9&Hf$,%U%!%&%j%s%05sF0$KM?$($k1F6A(B
| 4-a | fouling dead-end simulation | 12/10 12:03:58 |
Fouling
(1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 4-a (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
669 | Forward Osmosis$B%W%m%;%9$NKl%U%!%&%j%s%05!9=$N(B
$B8!F$(B
| 4-a | Forward Osmosis Fouling | 12/10 18:56:54 |
Free energy analysis
(1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 12-a (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
724 | ZIF-8$B$K$*$1$k5[CeM65/9=B$E>0\$N<+M3%(%M%k%.!<(B
$B2r@O(B
| 12-a | ZIF-8 Molecular simulation Free energy analysis | 12/10 20:40:32 |
free-energy analysis
(1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 12-a (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
441 | $B%l%$%d!<@QAX7?B?9&@-G[0L9bJ,;R$,<($9%2!<%H5[Ce(B
$B8=>]$N2rL@(B
| 12-a | porous coordination polymer adsorption-induced structural transition free-energy analysis | 12/10 13:44:51 |
freeze-drying (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 7-h (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
549 | $B%?%s%Q%/ | 7-h | freeze-drying protein stabilization sugar surfactant | 12/10 16:31:13 |
Front-Tracking
(1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 2-a (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
286 | $B8GBNI=LL>e$NKl>u6E=L$N?tCM2r@O(B
| 2-a | Film Condensation Numerical Simulation Front-Tracking | 12/9 14:30:32 |
fructose (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 12-a (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
607 | $B9b299b052<$G$N(B5-$B%R%I%m%-%7%a%A%k%U%k%U%i!<%kO"(B
$BB3@8;:$X$NCj=PMOG^E:2C8z2L$K4X$9$k9M;!(B
| 12-a | fructose 5-hydroxymethylfurfural extraction | 12/10 17:39:21 |
FSM-16
(1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 5-a (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
74 | FSM-16$B$K$h$k(B1,2-$B%W%m%Q%s%8%*!<%k$+$i%W%m%T%*%s(B
$B%"%k%G%R%I$N9g@.(B
| 5-a | Propionaldehyde 1,2-Propandiol FSM-16 | 12/4 18:40:36 |
fucoidan
(1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 8-d (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
514 | Coupling Microwave Irradiation and Hydrothermal
Treatment for Degradation and Extraction of More
Bioactive Low-Molecular-Weight Fucoidan
| 8-d | microwave hydrothermal fucoidan | 12/10 15:43:02 |
Fuel cell (3$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 9-e (2$B7o(B), 11-a (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
225 | $B%W%m%H%sEAF3@-%j%s;@%,%i%9(B-$B%;%i%_%C%/%9$N9=B$(B
$BI>2A$HEE5$EAF3FC@-(B
| 9-e | fuel cell proton conducting glass-ceramics sol-gel method | 12/7 18:53:00 |
308 | $B%"%K%*%sEAF3AX%O%$%V%j%C%IKl$rMQ$$$kG3NAEECS$N(B
$B@-G=FC@-(B
| 9-e | Fuel cell Anion conductive layer Water management | 12/9 23:12:29 |
521 | $B8F5$Cf%(%?%N!<%k%;%s%7%s%0$N$?$a$N>.7?G3NAEECS(B
$B$NHsDj>o1~Ez(B
| 11-a | Fuel cell Alcohol sensor Nafion membrane | 12/10 16:01:41 |
fuel cell type reactor
(1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 5-e (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
132 | C12A7$B%^%$%(%J%$%H%a%s%V%l%s%j%"%/%?!<$rMQ$$$?(B
$B%a%?%s;@2=H?1~(B
| 5-e | membrane reactor C12A7mayenite fuel cell type reactor | 12/6 14:28:31 |
Functional coating film (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 2-a (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
211 | $B6I=j$9$Y$jB.EY$rM-$9$k5!G=@-EIKl>eMpN.$N?tCM%7(B
$B%_%e%l!<%7%g%s(B
| 2-a | Turbulent flow Functional coating film Numerical simulation | 12/7 17:34:54 |
functional porous media (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 2-c (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
337 | $B5!G=@-G^BNN.F0AX$K$h$k9b4^?e@-%2%k>uJ* | 2-c | dehydration of hydrogel functional porous media fluidized bed | 12/10 09:52:07 |
functionalization (1$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B 12-j (1$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
57 | $B%W%i%9%A%C%/:`NAI=LL$r5!G=2=2DG=$JEII[7?%]%j%^!<(B
$B$N3+H/(B
| 12-j | functionalization dip-coating surface segregation | 12/3 13:33:29 |
Future Society
(5$B7o(B) | ||||
$B$3$N%-!<%o!<%I$,$h$/;H$o$l$F$$$k%7%s%]%8%&%`!&9V1iJ,N`!'(B F-2 (5$B7o(B) | ||||
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | | |
465 | [$B0MMj9V1i(B]$B | F-2 | Energy Systems Future Society | 12/10 14:21:48 |
469 | [$B>7BT9V1i(B]$B | F-2 | Energy Systems Future Society | 12/10 14:26:54 |
472 | [$B>7BT9V1i(B]$B@=E4=j$N>J%(%M5;=Q$H$=$NE8K>(B
| F-2 | Energy Systems Future Society | 12/10 14:29:54 |
473 | [$B>7BT9V1i(B]$B=E2=3X;:6H$K$*$1$k%(%M%k%.! | F-2 | Energy Systems Future Society | 12/10 14:32:44 |
476 | $BAm9gF$O@(B:$B | F-2 | Energy Systems Future Society | 12/10 14:35:20 |