$BBh(B1$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 | |||||
(10:00$B!A(B11:00)$B!!(B($B:BD9(B $B:4!9LZ(B $BK~(B) | |||||
K104 | $BD6NW3&?eCf$G$N5U?e@-%,%9%7%U%HH?1~$K$h$k%S%A%e%a%sJ,2r(B | Heavy oil Supercritical water Water gas shift reaction | S-17 | 5 | |
K105 | $B9b299b05?eCf?(G^L5E:2C$G(B1,3,5-$B%H%j%Y%s%>%$%k%Y%s%<%s$r9g@.$9$kM-5!H?1~%W%m%;%9$N:GE,2=(B | Pressurized hot water as solvent Synthesis of 1,3,5-triaroylbenzenes Reaction mechanism | S-17 | 321 | |
K106 | $B%O%m%2%s2=%"%k%-%k$N?e;@4pCV49H?1~$K$*$1$kN>?FG^@-MOG^E:2CG.?e$N8z2L(B | 1-Dodecanol hydrothermal amphiphilic solvent | S-17 | 514 | |
(11:00$B!A(B12:00)$B!!(B($B:BD9(B $B:4F#(B $B9d;K(B) | |||||
K107 | $B9b299b05?eCf$K$*$1$k8GBN;@?(G^H?1~$KBP$9$k?e$N8z2L(B | Sub- and supercritical water Solid acid catalyst Role of water | S-17 | 546 | |
K108 | $B6bB0;@2=J*?(G^$rMQ$$$?9b299b05?eCf$K$*$1$k%0%j%;%j%s$NC&?eH?1~(B | Sub- and supercritical water Solid acid catalyst Glycerol | S-17 | 868 | |
K109 | $B0!NW3&$+$iD69b05$^$G4^$a$?9b299b05?eCf$N;@2=!&J,2rH?1~$K5Z$\$905NO$N1F6A(B | Supercritical Water Kinetics High Pressure | S-17 | 158 | |
(13:00$B!A(B14:00)$B!!(B($B:BD9(B $BEOn5(B $B8-(B) | |||||
K113 | $BJ,;R%5%$%:9`$X0[ | High temperature and pressure water VLE and LLE PC-SAFT | S-17 | 914 | |
K114 | $B;@?(G^$H?eG.H?1~$K$h$kApK\%P%$%*%^%9$NE|2=(B | lignocellulose hot compressed water acid catalyst | S-17 | 662 | |
K115 | $BBg7?AtN`$+$i%P%$%*%(%?%N!<%k$N9b<}N(@8@.5;=Q$N3+H/(B | subcritical water macro algae glucose | S-17 | 972 | |
(14:00$B!A(B15:00)$B!!(B($B:BD9(B $B@nyu(B $B?50lO/(B) | |||||
K116 | $B0!NW3&?e$rMQ$$$?%3%i!<%2%sGS?e=hM}5;=Q$N3+H/(B | Subcritical water collagen waste water methane fermentation | S-17 | 948 | |
K117 | $B3F | Hydrothermal carbonization micro spheres glucose | S-17 | 424 | |
K118 | $BG.?e>r7o2<$NDcG;EY;@?eMO1U$rMQ$$$?%;%k%m!<%9$N2C?eJ,2r(B | hydrothermal cellulose dilute acid | S-17 | 712 | |
(15:00$B!A(B16:00)$B!!(B($B:BD9(B $BD9ED(B $B8w@5(B) | |||||
K119 | $BD6NW3&?eH?1~>l$K$*$1$k%"%k%.%s;@%J%H%j%&%`$N2=3X86NA2=(B | Biomass Lactic acid Supercritical water | S-17 | 696 | |
K120 | $BD6NW3&?e=hM}$K$h$k%7%j%3%s%9%i%C%8$+$i$N%7%j%3%s$NJ,N%!&2s<}(B | Supercritical water Silicon sludge Recovery of silicon | S-17 | 97 | |
K121 | $BM-5!!&L55!J#9gGQ4~J*$ND6NW3&?e=hM}$K$*$1$kH?1~2aDx$N2D;k2=(B | supercritical water material recycle visualization | S-17 | 916 | |
(16:00$B!A(B16:40)$B!!(B($B:BD9(B $BNS(B $BN\H~;R(B) | |||||
K122 | $B0!NW3&?e$rMQ$$$k8:05>xN1;D^V$N7Z | Subcritical water Decomposition Vacuum residue | S-17 | 481 | |
K123 | $B?eG.Cj=P(B-$BHyN3;R2=O"B3%W%m%;%9$NNn | Subcritical water Extraction Micronization | S-17 | 891 | |
(16:40$B!A(B17:20)$B!!(B($B:BD9(B $Bcx5o(B $B9bL@(B) | |||||
K124 | $B6bB0;@2=J*HyN3;R$X$NM-5!%1%$AG2=9gJ*$NI=LL=$>~$K$*$1$k9b299b05?eH?1~>l$N1F6A(B | supercritical water surface modification functional nanoparticles | S-17 | 889 | |
K125 | $B9b299b05?eCf$K$*$1$k<'@-BN%J%NN3;R(BNixCu1-xFe2O4$B$*$h$S(BNixZn1-xFe2O4$B$NO"B3?eG.9g@.(B | Ferrite Nano particles Supercritical water | S-17 | 474 | |
$BBh(B2$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 $B!c:G@hC<%W%m%;%9$rC4$&4pACJ*@-!]B,Dj$H%7%_%e%l!<%7%g%s!]!d(B | |||||
(8:40$B!A(B9:40)$B!!(B($B:BD9(B $BBgED>; | |||||
K200 | $B%0%i%$%`(B-$B%j%A%&%`1vMO1UL)EY!&G4EY$NG;EY!&29EY0MB8@-(B | glyme density viscosity | S-18 | 607 | |
K201 | $B%[%9%[%K%&%`7O%$%*%s1UBNEE5$EAF3EY$N05NO!&29EY0MB8@-(B | ionic liquid electrical conductivity high pressure | S-18 | 579 | |
K202 | $B>.7?Mn?K<0G4EY7W$rMQ$$$?(BTFSI$B%$%*%s1UBN$KBP$9$kG4EYB,Dj(B | Viscosity Ionic liquid Viscometer | S-18 | 732 | |
(9:40$B!A(B10:40)$B!!(B($B:BD9(B $B;y6LBgJe(B) | |||||
K203 | $B%$%_%@%>%j%&%`7O%$%*%s1UBN$KBP$9$kL)EY$*$h$SI=LLD%NO$NB,Dj(B | Surface tension Ionic liquid Density | S-18 | 708 | |
K204 | $BG4@-4KOBK!$K$h$k=a3jL}$NG4CF@-$K4X$9$k8&5f(B | lubricant viscosity viscoelasticity | S-18 | 235 | |
K205 | $B&B(B-$B%8%1%H%J!<%H$r%"%K%*%s$H$9$k%$%*%s1UBN$NL)EY!"G4EY!"EE5$EAF3EY(B | ionic liquid density viscosity | S-18 | 207 | |
(10:40$B!A(B11:20)$B!!(B($B;J2q(B $BDT!!CRLi(B) | |||||
K206 | [$BE8K>9V1i(B]$BJ*@-?d;;$N$J$+$NJ,;R%7%_%e%l!<%7%g%s(B-$BElKLBg3X$G$N8&5f$r?6$jJV$C$F(B | Computational Chemistry Simulation Estimation | S-18 | 540 | |
(11:20$B!A(B12:20)$B!!(B($B:BD9(B $B;3K\=( | |||||
K208 | $BHsJ?9U(BMD$B7W;;$K$h$k9b299b05%a%?%N!<%k?eMO1U$NG4EY5sF0$N2r@O(B | supercritical MD viscosity | S-18 | 361 | |
K209 | $B%]%j(B(n-$B%V%A%k%a%?%/%j%l!<%H(B)+$B?];@%(%9%F%k7O$NAj8_Aj8_;678?t$NB,Dj$HAj4X(B | mutual diffusion coefficient acetate ester poly(n-butyl methacrylate) | S-18 | 55 | |
K210 | $B:.9g%O%$%I%l!<%H$K$*$1$k?eAG$HJd=u:^$N6%AhE*dF@jM-(B | Gas hydrate Hydrogen storage Cage occupancy | S-18 | 299 | |
(13:00$B!A(B14:00)$B!!(B($B:BD9(B $B7*86(B $B@6J8(B) | |||||
K213 | $B8w%;%s%5!<$rMxMQ$7$?%3%s%Q%/%H7?MO2rEYB,DjAuCV$N3+H/(B | solubility optical sensor compact appratus | S-18 | 926 | |
K214 | $BD6NW3&Fs;@2=C:AG$KBP$9$kLt:^$NMO2rEYB,Dj(B | supercritical carbon dioxide uv vis spectroscopy solubility | S-18 | 285 | |
K215 | $B%j%A%&%`(B-$B6u5$EECS$K$*$1$k%$%*%s1UBN4^?;Kl$rMxMQ$7$?;@AG!?CbAG$NF)2aJ,N%(B | ionic liquid membrane COSMO-SAC oxygen | S-18 | 923 | |
(14:00$B!A(B15:20)$B!!(B($B:BD9(B $B2<;3(B $BM52p(B) | |||||
K216 | $BJ,8w3XE* | Spectroscopic measurements Supercritical carbon dioxide Anthracene solubility | S-18 | 494 | |
K217 | $B%0%i%$%`(B-$B%j%A%&%`1vMO1U$NFs;@2=C:AG5[<}FC@-(B | glyme carbon dioxide solubility | S-18 | 600 | |
K218 | $BDc4D6-Ii2YMOG^$r$a$0$k(B2$B@.J,7O:.9gJ*$NAj8_MO2rEYB,Dj$HAj4X(B | liquid liquid equilibria environment benign solvent ionic liquid | S-18 | 590 | |
K219 | $B%H%i%C%W%0%j!<%9%b%G%kJ*AE$B7?:.9gB'$rMQ$$$?(B3$BuBVJ}Dx<0$K$h$kAj4X(B | Triolein Hydrogen Solubility Cubic Equation of State | S-18 | 576 | |
$BBh(B3$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 $B!c:G@hC<%W%m%;%9$rC4$&4pACJ*@-!]B,Dj$H%7%_%e%l!<%7%g%s!]!d(B | |||||
(9:00$B!A(B10:00)$B!!(B($B:BD9(B $BHf9>Eh(B $BM42p(B) | |||||
K301 | 2$B@.J,7O6&J(:.9gJ*$KBP$9$kG.NO3X7rA4@~$rMxMQ$7$?5$1UJ?9U=c?h?d;;$H%G%b%W%m%0%i%`$N | Thermodynamic consistency line azeotropic mixture vapor-liquid equilibria | S-18 | 593 | |
K302 | $BG.NO3X7rA4@~$rMQ$$$k(B3$B@.J,7ODj295$1UJ?9U$N=c?h?d;;$H | Thermodynamic consistency line ternary vapor-liquid equiliebria UNIQUAC equation | S-18 | 855 | |
K303 | $B@E;_%;%kCf5$AjD>@\:N | Thermodynamic consistency line vapor-liquid equilibria static cell | S-18 | 928 | |
(10:00$B!A(B11:20)$B!!(B($B:BD9(B $B=ULZ(B $B>-;J(B) | |||||
K304 | $B>x5$05IU6a$G$N3K2=$K$h$k;6Mp$NB,Dj(B | nucleation vaporization scattering | S-18 | 143 | |
K305 | $BHs@~7A%l!<%6! | diffusion coefficient ionic liquids nonlinear laser spectroscopy | S-18 | 370 | |
K306 | $B%(%?%N!<%k(B+$B?e(B+$B%(%9%F%k(B($B?];@%V%A%k!"?];@%"%_%k!"Mo;@%(%A%k(B)$B$N(B3$B@.J,7O$N1U1UJ?9U$H!"%(%?%N!<%k(B+$B?e(B+$B?];@%V%A%k(B+KCl$B$N(B4$B@.J,7O$N1U1UJ?9U$NB,Dj(B | Bioethanol Butyl acetate Potassium chlorise | S-18 | 703 | |
K307 | $B9-$$29EY!&05NO>r7o$K$*$1$k%$%*%s1UBN(B-CO2$B7O$N(BpVT$B$HEE5$EAF3EY(B | ionic liquid carbon dioxide pVT | S-18 | 589 | |
(11:20$B!A(B12:00)$B!!(B($B;J2q(B $BKRLn(B $B5.;j(B) | |||||
K308 | [$BE8K>9V1i(B]$B%,%9%O%$%I%l!<%H$NG.NO3XE*0BDj@-$H%2%9%HJ,;R$NdF@jM-@-(B | Gas Hydrate Phase equilibria Cage occupancy | S-18 | 405 | |
(13:00$B!A(B14:00)$B!!(B($B:BD9(B $BIZED(B $BBgJe(B) | |||||
K313 | $BD6NW3&Fs;@2=C:AGB8:_2<$K$*$1$k%]%j%+!<%\%M!<%H$N7k>=2=(B | polycarbonate carbon dioxide crystallization | S-18 | 761 | |
K314 | $B%0%k!<%W4sM?>uBV<0$r3hMQ$7$?(BCO2$BJ*M}5[<}:^$NA*DjK!(B | Group Contribution Equation of State CO2 Physical Absorption | S-18 | 953 | |
K315 | $B=cJ* | Vapor-Liquid Equilibrium Wilson Parameter Ester | S-18 | 50 | |
(14:00$B!A(B15:00)$B!!(B($B:BD9(B $BBg>l(B $BLPIW(B) | |||||
K316 | $B%0%k!<%W4sM?K!$rE,MQ$7$?(BCOSMOSPACE$B$K$h$k%"%k%3!<%k(B+$B%"%k%+%s7O$N5$1UJ?9U$NAj4X(B | COSMOSPACE activity coefficient vapor liquid equilibrium | S-18 | 749 | |
K317 | $BG;EY0MB8I=LL@Q%Q%i%a!<%?%b%G%k$K$h$kAjJ?9U$NAj4X(B | Activity coefficient model Quasi chemical Concentration dependent surface area parameter | S-18 | 266 | |
K318 | $B86;RCDJ,2r$K$h$k6~@^N($N?d;;K!(B | refractive index property prediction QSPR | S-18 | 65 | |
(15:00$B!A(B16:20)$B!!(B($B:BD9(B $B4d0f(B $BK'IW(B) | |||||
K319 | $B4J0W7?(BWilson$B<0$K$h$k(B3$B@.J,7O5$1UJ?9U$N?d;;(B | Wilson equation T-K Wilson equation ASOG | S-18 | 255 | |
K320 | $B5$1UJ?9U$K$*$1$k%$%*%s1UBN$N8z2L$N?d;;(B | vapor-liquid equilibria ion liquid solvation method | S-18 | 581 | |
K321 | $BI8=`J(E@(BTb$B$rI,MW$H$7$J$$L56K@-J* | Critical temperature Normal boiling point Group contribution method | S-18 | 737 | |
K322 | $B>o29>o05$+$iD6NW3&>uBV$K$*$1$k%"%k%3!<%k?eMO1U$NL)EY!&G4EY5sF0$NE}0lE*2r@O(B | alcohol density viscosity | S-18 | 748 |