$BBh(B1$BF|(B | |||||
---|---|---|---|---|---|
$B9V1i(B $B;~9o(B | $B9V1i(B $BHV9f(B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $BJ,N`(B | $BHV9f(B $B | |
$B%7%s%]%8%&%`(B $B!c:G@hC<2=3X9)3X$K9W8%$9$k0!NW3&!&D6NW3&N.BN5;=Q!]4pAC$+$i1~MQ$^$G!]!d(B | |||||
(9:20$B!A(B10:20)$B!!(B($B:BD9(B $BFbED(B $BGn5W(B) | |||||
J102 | [$B>7BT9V1i(B]$B!!D6NW3&N.BN5;=Q$N:G6a$NF08~(B | S-17 | 692 | ||
J104 | $B5!G=@-%7!<%I%*%$%k$ND6NW3&(BCO2$BCj=P$H(BChrastil$B%b%G%k$K$h$k2r@O(B | Supercritical CO2 Seed oil Solubility | S-17 | 834 | |
(10:20$B!A(B11:20)$B!!(B($B:BD9(B $B=ULZ(B $B>-;J(B) | |||||
J105 | $B4;5L2LHi$+$i$ND6NW3&N.BNCj=P$J$i$S$KCj=PJ*Cf$NLtM}3h@-@.J,$N?dDj(B | supercritical fluid extraction flavonoid | S-17 | 550 | |
J106 | $B6u9&M}O@$K4p$E$/>uBVJ}Dx<0$rMQ$$$?D6NW3&Fs;@2=C:AG$KBP$9$kMO2rEY$N?d;;(B | Equation of state hole theory supercritical carbon dioxide | S-17 | 918 | |
J107 | $B;g302D;kJ,8wK!$rMQ$$$?D6NW3&Fs;@2=C:AG$KBP$9$k%F%*%U%#%j%s$NMO2rEYB,Dj$*$h$SAj4X(B | UV-Vis spectroscopic measurements Supercritical carbon dioxide Theophylline solubility | S-17 | 502 | |
(11:20$B!A(B12:00)$B!!(B($B;J2q(B $B;y6L(B $BBgJe(B) | |||||
J108 | [$B>7BT9V1i(B] $BD6NW3&Fs;@2=C:AGMxMQ%W%m%;%9$K$*$1$k4pACJ*@-$N:G6a$NF08~$HE83+(B | S-17 | 973 | ||
(13:00$B!A(B13:20)$B!!(B($B;J2q(B $B;y6L(B $BBgJe(B) | |||||
J113 | [$B0MMj9V1i(B] $BE7A3J*$N%+%9%1!<%IMxMQ$K$*$1$kD6NW3&N.BNCj=P(B | S-17 | 966 | ||
(13:20$B!A(B14:20)$B!!(B($B:BD9(B $B2<;3(B $BM52p(B) | |||||
J114 | [$B0MMj9V1i(B] $BD6NW3&Fs;@2=C:AGCf$G$NJ,;R=89gBN$N7A@.@)8f$H>-Mh5;=Q(B | S-17 | 974 | ||
J115 | $BD6NW3&Fs;@2=C:AG4%AgK!$rMQ$$$??'AGA}46B@M[EECS$N:n@=(B | dye sensitized solar cell supercritical carbon dioxide drying method titania aerogel | S-17 | 199 | |
J116 | $BD6NW3&MOBN5^B.KDD%K!$K$h$k%"%s%H%i%;%sGvKlAO@=$K$*$1$kMO | RESS method Anthracene thin film production Dissolution pressure effects | S-17 | 503 | |
(14:20$B!A(B15:20)$B!!(B($B:BD9(B $BC]NS(B $BNI9@(B) | |||||
J117 | $BD6NW3&MOBN5^B.KDD%K!$rMQ$$$?%k%V%l%sGvKlAO@=$K$*$1$k7k>=@.D9>l29EY$N1F6A(B | RESS method Rubrene thin film production Growth field temperature effects | S-17 | 505 | |
J118 | $BD6NW3&Fs;@2=C:AGCf$K$*$1$kM-5!MOG^!&6bB0%U%j!<9b=cEY%]%jF};@9g@.(B | Supercritical Carbon Dioxide Ring-opening Polymerization Organocatalyst | S-17 | 320 | |
J119 | $BD6NW3&Fs;@2=C:AG(B/$B6bB0:xBN$rMQ$$$?%]%j%^!<7O%J%N%3%s%]%8%C%H$N3+H/(B | supercritical CO2 polymer nanocomposite metal complex reduction | S-17 | 781 | |
(15:20$B!A(B16:20)$B!!(B($B:BD9(B $B:m:d(B $B>-?-(B) | |||||
J120 | $BD6NW3&MOBN5^B.KDD%K!$K$h$k%+%U%'%$%sHyN3;RAO@=$K$*$1$kMO | RESS method Caffeine microparticle production Dissolution temperature and pressure effects | S-17 | 501 | |
J121 | RESS-SC$BK!$K$h$k%F%*%U%#%j%s$NHyN3;RAO@=$KBP$9$kMO | RESS-SC method Theophylline microparticle production Dissolution temperature and pressure effects | S-17 | 496 | |
J122 | $B%^%$%/%m%G%P%$%9$rMQ$$$?D6NW3&IOMOG^E:2CK!$K$h$k%F%*%U%#%j%s$NHyN3;RAO@=(B | SAS method Microdevice crystallization Theophylline microparticle productiion | S-17 | 688 | |
(16:20$B!A(B17:00)$B!!(B($B:BD9(B $BEDCf(B $B@i=)(B) | |||||
J123 | $BD6NW3&Fs;@2=C:AGCf$N6bB0:xBN$NMO2rEYB,Dj5Z$S%J%NN3;R%3!<%F%#%s%0$X$N1~MQ(B | supercritical carbon dioxide nano particle solubility | S-17 | 976 | |
J124 | $BD6NW3&Fs;@2=C:AG$H?e$rMQ$$$?LJA!0]$NI=LL2~ | Supercritical carbon dioxide Wrinkle formation Support nanoparticle | S-17 | 58 | |
$BBh(B2$BF|(B | |||||
$B9V1i(B $B;~9o(B | $B9V1i(B $BHV9f(B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $BJ,N`(B | $BHV9f(B $B | |
$B%7%s%]%8%&%`(B $B!c:G@hC<2=3X9)3X$K9W8%$9$k0!NW3&!&D6NW3&N.BN5;=Q!]4pAC$+$i1~MQ$^$G!]!d(B | |||||
(10:00$B!A(B11:00)$B!!(B($B:BD9(B $BFbED(B $BGn5W(B) | |||||
J204 | [$B>7BT9V1i(B]$B!!9bL)EYN.BN%W%i%:%^J|EE$rMxMQ$9$k:`NA:n@.5;=Q$N8=>u$H:#8e$NE83+(B | S-17 | 695 | ||
J206 | $BFs;@2=C:AG2C05$K$h$kM;E@9_2<8=>]$N6a@V30J,8w2r@O(B | carbon dioxide solubility near infrared spectroscopy | S-17 | 809 | |
(11:00$B!A(B12:00)$B!!(B($B:BD9(B $B0MED(B $BCR(B) | |||||
J207 | $B9b05N.BN$KE,MQ2DG=$J4JJX$JG4EYB,DjAuCV$N3+H/(B | viscosity high-pressure fluid magnetic stirrer | S-17 | 31 | |
J208 | $BD6NW3&Fs;@2=C:AGCf$G$N5~BgK!%K%H%m2=(B | Supercritical CO2 Kyodai nitration | S-17 | 865 | |
J209 | An exceptionally rapid hydrogenation of aromatic nitro compounds on Pd/MCM-41 in supercritical carbon dioxide | Supercritical carbon dioxie hydrogenation nitroaromatics | S-17 | 192 | |
(13:00$B!A(B14:00)$B!!(B($B:BD9(B $B@nyu(B $B?50lO/(B) | |||||
J213 | [$B>7BT9V1i(B] $BD6NW3&?eCf$NH?1~$K$*$1$k?e$NLr3d(B | S-17 | 965 | ||
J215 | [$B0MMj9V1i(B] $BD6NW3&?eCf$G$N%0%j%;%k%"%k%G%R%IJQ49H?1~$KBP$9$kMO1U9=B$$NLr3d(B | S-17 | 772 | ||
(14:00$B!A(B15:00)$B!!(B($B:BD9(B $BK\4V(B $BE/M:(B) | |||||
J216 | $BD6NW3&?e$rMQ$$$?%0%i%U%!%$%H$N0[J}@-%J%N%+%C%F%#%s%0$H%(%C%8@)8f%0%i%U%'%s$N:n@=(B | Supercritical water Graphene | S-17 | 535 | |
J217 | $B9b299b05?eCf$K$*$1$k%.;@$rMQ$$$?%j%0%K%s$NJ,2r(B | hydrogeneration lignine subcritical water | S-17 | 890 | |
J218 | $BD6NW3&?eCf$G$N4^N22+2=9gJ*$NJ,2rH?1~7PO)$*$h$SB.EYO@(B | $BD6NW3&?e(B $B4^N22+2=9gJ*(B $BH?1~7PO)(B | S-17 | 894 | |
$BBh(B3$BF|(B | |||||
$B9V1i(B $B;~9o(B | $B9V1i(B $BHV9f(B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $BJ,N`(B | $BHV9f(B $B | |
$B%7%s%]%8%&%`(B $B!c:G@hC<2=3X9)3X$K9W8%$9$k0!NW3&!&D6NW3&N.BN5;=Q!]4pAC$+$i1~MQ$^$G!]!d(B | |||||
(10:00$B!A(B11:00)$B!!(B($B:BD9(B $BEDCf(B $B@i=)(B) | |||||
J304 | [$B>7BT9V1i(B]$B!!D6NW3&N.BN$rMQ$$$?6bB0GvKlBO@Q!=%a%j%C%H$HE8K>!=(B | S-17 | 694 | ||
J306 | [$B0MMj9V1i(B]$B!!D6NW3&N.BNCf$K$*$1$kHy:Y9&$X$NM-5!:`NAKd$a9~$_5;=Q(B | S-17 | 697 | ||
(11:00$B!A(B12:00)$B!!(B($B:BD9(B $BAj_7(B $B?r;K(B) | |||||
J307 | $BMO2rEYB,Dj$rDL$8$?(BCu-SCFD$B$K$*$1$k86NA0BDj6!5k$N;X?K9=C[(B | Supercritical Fluid Deposition Solubility | S-17 | 295 | |
J308 | $BD6NW3&Fs;@2=C:AG$rMxMQ$7$?%3%s%?%/%H%l%s%:(BDDS$B$N:n@=(B | supercritical carbon dioxide drug delivery system contact lens | S-17 | 909 | |
J309 | $B%7%j%3%s%"%k%3%-%7%I(B/$B%]%j%^!<(B/CO2$B$N9b05Aj@)8f$rMxMQ$7$?!IK*$N;R!I%J%N%3%s%]%8%C%H$NAO@=(B | Polymer Nanocomposite Silica high pressure phase control | S-17 | 357 | |
(13:00$B!A(B14:00)$B!!(B($B:BD9(B $B@nGH(B $BH%(B) | |||||
J313 | $B5$1UAjHsM}A[@-=8Cf2=%Q%i%a!<%?K!$K$h$k%"%k%+%s(B+$B%"%k%+%s(B2$B@.J,7O5$1UJ?9U%G!<%?$NAj4X$H7rA4@-H=Dj(B | Thermodynamic cconsistency line lumped non-ideality parameter vapor-liquid equilibria | S-17 | 939 | |
J314 | $B0!NW3&?eCf$X$N%F%l%U%?%k;@$NMO2rEYB,Dj(B | subcritical water terephthalic acid solubility | S-17 | 353 | |
J315 | $BD6NW3&?eG.9g@.K!$rMxMQ$7$?I=LL=$>~(BZrO2$B%J%NN3;R$N9g@.(B | supercritical water nanoparticle ZrO2 | S-17 | 608 | |
(14:00$B!A(B15:00)$B!!(B($B:BD9(B $BED8}(B $B | |||||
J316 | $BD6NW3&>uBV$G$N>K;@?eMO1U$KBP$9$k%A%?%sFbD%4I$N6bB0MO=P5sF0(B | supercritical water corrosion tubular reactor | S-17 | 522 | |
J317 | $BD6NW3&N.BN$rMQ$$$?%J%N7k>=3hJ* | Nanoparticle lithium ion battery electrodes | S-17 | 463 | |
J318 | $B;0N&;:%$%+Fp9|$N9b299b05?e=hM}$H9ZAGJ,2r$K$h$k(BN-$B%"%;%A%k%0%k%3%5%_%s@8@.(B | chitin N-acetylglucosamine biomass | S-17 | 1003 |