
| $BEZ4t(B $B5,?N!J4d |
$B0eLtIJ$d?)IJ!"?75,:`NA$N@=B$$K$*$$$F!">=@O$O7g$/$3$H$N$G$-$J$$5;=Q$G$"$k!#K\%7%s%]%8%&%`$G$O!"M-5!!&L55!2=9gJ*$N7k>=2=8=>]$d$=$l$i$rMQ$$$?N3;R@=B$$dJ,N%@:@=$K4X$9$k:G@hC<$N5;=Q8&5fH/I=$r9T$$5DO@$7$^$9!#K\%7%s%]%8%&%`$G$O!"8}F,H/I=#1#2J,!\F$O@(B7$BJ,$H$7$^$9!#(B
$B:G=*99?7F|;~!'(B2021-02-07 15:20:01
$B$3$NJ,N`$G$h$/;H$o$l(B$B$F$$$k%-!<%o!<%I(B | $B%-!<%o!<%I(B | $B | |
|---|---|---|---|
| Crystallization | 8$B7o(B | ||
| Reaction crystallization | 3$B7o(B | ||
| Cocrystal | 3$B7o(B | ||
| Amino acid | 2$B7o(B | ||
| nucleation | 2$B7o(B | ||
| zeolite | 2$B7o(B | ||
| quality control | 2$B7o(B | ||
| microwave | 2$B7o(B | ||
| Polymorphism | 2$B7o(B | ||
| Agglomerates | 1$B7o(B | ||
| $B | $B9V1iBjL\!?H/I=| $B%-!<%o!<%I(B | $BH/I=7A<0(B | |
|---|---|---|---|
| 46 | $BITK0OB;iKC;@$N9b05NO>=@O$K$*$1$kNW3&2a2C05NO$H2C05B.EY$N4X78(B | High pressure Crystallization Super-pressure | O |
| 79 | $BD@EB$+$iH?1~>=@O$K>GE@$rEv$F$?@oN,(B | Precipitation reaction crystallization Crystal quality | O |
| 80 | $B3NN(O@E*3K2=$, | Seeding Simulation Stochastic process | O |
| 96 | ZMH$B$NIUCe$K29EYJQ2=$,5Z$\$91F6A(B | Encrusration Reaction crystallization Zirconium Molybdate Hydrate | O |
| 186 | LTA$B7?%<%*%i%$%H9g@.$K$*$1$k%^%$%/%mGH=PNO$N<}N($*$h$S7k>=2=EY$X$N1F6A(B | zeolite microwave crystallinity | O |
| 223 | $B%^%$%/%mGH%U%m! | microwave zeolite flow proess | O |
| 225 | $B%7%e%&;@$rMQ$$$?%i%s%?%s7k>=2s<}J}K!$N8!F$(B | Lanthanum Reaction crystallization Recovery | O |
| 256 | [$BE8K>9V1i(B] $B9bJ,2r8w3X82Hy6@$G8+$kI97k>=$NI=LLM;2r(B | surface melting ice crystal optical microscopy | O |
| 303 | m-$B%/%m%m%K%H%m%Y%s%<%s!?(Bm-$B%U%k%*%m%K%H%m%Y%s%<%s6E=8>=$N4%<0H/4@$K$h$k@:@=(B | Purification Agglomerates Dry sweating | O |
| 314 | $B%+%j%_%g%&%P%s$NE)2 | Semi-batch cooling Feeding design K-alum | O |
| 344 | $B?6F0N.%P%C%U%kH?1~4o$rMQ$$$?(BL-$B%0%k%?%_%s;@Nd5Q>=@O$K$*$1$k7k>=@.D9B%?J8z2L(B | Crystallization Process Intensification Oscillatory baffled reactor | O |
| 357 | [$B>7BT9V1i(B] $B5pBg%?%s%Q%/ | hemocyanin protein crystal | O |
| 476 | [$BM%=(O@J8>^(B] Effect of Two Kinds of Supersaturation on Crystal Qualities during Cocrystallization | crystallization cocrystal quality control | O |
| 505 | $BD62;GH>H | Amino Acid Polymorphism Ultrasound | O |
| 516 | $B%+%k%P%^%<%T%s(B-$B%5%C%+%j%s6&7k>=$NMOG^OBJ*$K4X$9$k0l9M;!(B | cocrystal solvate polymorphs | O |
| 524 | [$BE8K>9V1i(B] $B9bIJ=N3;R72@=B$$N$?$a$N>=@OA`:n@_7W$NE83+(B | crystallization operation design quality control | O |
| 550 | $B>W7b3K2=$K$*$h$\$9A`:n0x;R$N1F6A(B | Nucleation Supercooled Melt Solid Collision | O |
| 565 | L-$B%0%k%?%_%s;@$NB?7A@)8f(B | Polymorphism Amino acid ultrasonic | O |
| 647 | L-$B%U%'%K%k%"%i%K%s7k>=$N7ABV$H@.D9$K4X$9$k8&5f(B | phenylalanine crystal growth morphology | O |
| 681 | [$B>7BT9V1i(B] PAT$B%D!<%k$r3hMQ$7$?>=@O%W%m%;%92r@O;vNc>R2p(B | crystallization PAT In situ | O |
| 716 | $B8GAjJ,;6M;1U>=@OK!$K$h$k9bMO2r@-8GBN$N3+H/(B | Melt crystallization Dissolution rate Eutectic | O |
| 724 | $BMO1U>=@OK!$K$h$k6&7k>=N3;R72$N(BHomogeneity$BI>2A(B | Crystallization Cocrystal Homogeneity | O |
| 750 | $B6E=87k>=N3;R72$N=cEY2~A1$N$?$a$N%j%9%i%j!=@O$K$h$kN3;R@_7W(B | Crystalline agglomerates Crystallization Reslurry | O |
| 859 | Cucurbit[7]uril$B?eOBJ*7k>=$N0BDj@=B$$K8~$1$?>=@OA`:n$H8G1UJ,N%>r7o$N8!F$(B | Cucurbit[7] uril Crystallization Solid-liquid separation | O |
| 862 | $B3K7A@.2aDx$K$*$1$k%j%>%A%&%`$NJB?J3H;6FC@-$K5Z$\$9;i | lysozyme nucleation diffusivity | O |
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