$B:G=*99?7F|;~!'(B2020-09-26 15:59:01
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | $B?=9~(B | $BJ}K!(B | |
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751 | [$B0MMj9V1i(B] CO2$BJ,N%2s<}5;=Q$N8&5f3+H/F08~(B | HC-11 | CO2 Capture Separation Process | 12/22 19:58:57 | WWW |
752 | $BD6NW3&Fs;@2=C:AGCf$G$NJ,;6@wNA$NMO2rEY7W;;$X$N%K%e!<%i%k%M%C%H%o!<%/%b%G%k$NE,MQ(B | 1-a | Supercritical CO2 Solubility neural network model | 12/22 20:00:48 | WWW |
753 | CHO$B:YK&$K$*$1$k(BERGIC-53$B$N2a>jH/8=$,93BN$N@8;:@-$KM?$($k1F6A(B | 7-d | CHO cells biopharmaceuticals protein secretion | 12/22 20:02:42 | WWW |
754 | $B%l$N1F6A(B | 2-f | Electricphoresis Zeta Potential Ion species | 12/22 20:19:43 | WWW |
755 | $B9ZAG?(G^$K$h$k%Z%W%A%I<+8J=89g:`NA$N;v8e5!G=2=(B | 7-i | Post-modification Enzymatic reaction Self-assembly | 12/22 20:35:44 | WWW |
756 | $B%i%$%V%i%j!<%G%6%$%s%5%$%/%k(B:$BCe | 7-a | Molecular evolution protein antibody | 12/22 20:43:02 | WWW |
757 | $BD6NW3&Fs;@2=C:AG$rMQ$$$?Fs;@2=%A%?%sI=LLAB?e@-=hM}$H%J%N%3%s%]%8%C%HMQ%U%#%i!<8z2L(B | 8-e | Supercritical CO2 Nano-sized titanium oxide filler | 12/22 20:48:42 | WWW |
758 | Chinese hamster ovary cell$B$rMQ$$$?%5%aM3Mh=E:?93BN@8;:$K$*$1$kCGJR2=$NM^@)(B | 7-d | Chinese hamster ovary cell Shark-derived heavy chain antibody fragmentation | 12/22 20:51:50 | WWW |
759 | $BIi6K%0%i%U%!%$%H$N5$Aj=$>~$K$h$k(BLIB$B$N9b29J]B8@-G=8~>e(B | 9-e | lithium ion battery graphite high temperature characteristics | 12/22 20:56:11 | WWW |
760 | $B8O3i0zNO$,M65/$9$k%3%m%$%I<+8J=8@Q5!9=$N2rL@(B | 12-a | Self-assembly Colloid Depletion force | 12/22 20:58:45 | WWW |
761 | $BJ4Kv5[F~@=:^$NGYE~C#5sF0$K$*$1$kN3;RIUCe8=>]$N2r@O(B | 2-f | Dry Powder Inhalation Numerical simulation particle behavior | 12/22 20:58:59 | WWW |
762 | $B%J%N%U%!%$%P!<$rMQ$$$?@5?;F)Kl$NGvKl2=$*$h$SF)?e@-I>2A(B | 4-a | forward osmosis | 12/22 21:00:42 | WWW |
763 | $B!c$O$8$/!d$3$H$H!c?;$_$J$$!d$3$H$NAj0c$N;vNc(B | 12-a | unpredictability impermeability surface repellency | 12/22 21:02:29 | WWW |
764 | $B%"%k%4%s(B-$BCbAGJ70O5$$K$*$1$kB?Aj8rN.%"!<%/$N29EYJQF0(B | 3-b | Thermal plasma High-speed visualization Nanoparticle | 12/22 21:07:11 | WWW |
765 | $BC&?e%;%a%s%H$N:F?eOB2aDx$G$N3&LL7kCe@-$NIT2sI|MW0x$K$D$$$F(B | 12-a | dehydrated Portland cement rehydration interfacial breakoff | 12/22 21:09:17 | WWW |
766 | [$B%"%8%"9q:]>^(B] Analysis and Design of Solid Oxide Fuel Cell Systems for Highly Efficient Power Generation | K-3 | SOFC Analysis Highly Efficient Power Generation | 12/22 21:21:05 | WWW |
767 | Preparation and protein separation application of cibacron blue-modified electrospun PVA membrane | 4-a | membrane preparation protein separation nanofiber membrane | 12/22 21:21:23 | WWW |
768 | $B?75,EE5$%Q%k%9K!$rMQ$$$?%j%5%$%/%k%W%m%;%9$N%i%$%U%5%$%/%kI>2A(B | 13-e | Life Cycle Assessment Recycling Environment | 12/22 21:23:31 | WWW |
769 | [$B>7BT9V1i(B] PEMFC modeling based on characterization of effective diffusivity in cathode catalyst layer | K-3 | PEMFC catalyst layer diffusivity | 12/22 21:28:04 | WWW |
770 | ($B9V1iCf;_(B) | 100 | 12/22 21:32:25 | WWW | |
771 | [$B>7BT9V1i(B] Nano-catalyst Engineering for Hydrogen Storage and Delivery Utilizing Formic Acid as a Carrier | K-3 | Hydrogen carrier Formic acid Catalyst | 12/22 21:36:31 | WWW |
772 | $BJ,;RF0NO3XK!$rMQ$$$?%,%9Cf$K$*$1$k%$%*%s4V>WFMB.EYDj?t$N;;=P(B | 2-f | Molecular synamics | 12/22 21:37:59 | WWW |
773 | [$B>7BT9V1i(B] Progress and outlook of proton-conducting ceramic fuel cells for highly efficient energy conversion, electrolysis, and energy carrier | K-3 | Proton conductor Mixed ionic electronic conductor Electrode reaction | 12/22 21:41:02 | WWW |
774 | $B=[4DN.$l$rH<$&8GBN9bJ,;R7AG3NAEECS%7%9%F%`$N9b8zN(1?E>>r7o$N8!F$(B | 9-e | polymer electrolyte fuel cell water management operation conditions | 12/22 21:43:25 | WWW |
775 | [$B0MMj9V1i(B] $B5!G=@-%J%NN3;R$N4D6-DcIi2Y7?9g@.K!$N3+H/(B | HQ-21 | nanoparticle environmentally-friendly functional particle | 12/22 22:22:56 | WWW |
776 | Connected Pt-Co Catalysts Possessing Chemically Ordered Structures for Improved Oxygen Reduction Performances | 9-e | Polymer electrolyte fuel cell Carbon free ORR electrocatalyst | 12/22 22:23:37 | WWW |
777 | $BDcFG@-$H%2%k2=G=$rN>N)$7$?C;:?%Z%W%A%I%2%k2=:^(B | 7-i | peptide self-asembly hydrogel | 12/22 22:25:47 | WWW |
778 | $B%P%$%*%^%9H>C:2=J*$N?':9B,Dj$K$h$kG3NA@->uI>2A5;=Q$N3NN)(B | 9-c | biomass torrefaction color | 12/22 22:27:54 | WWW |
779 | CO2$BJ,N%$N0Y$NDcJ,;R%"%_%s4^M-%J%N%2%kKl$N0BDj@-I>2A(B | 4-a | CO2 separation nano gel particle low molecular amine | 12/22 22:30:39 | WWW |
780 | $B%P%$%*%^%9;q8;MxMQ$N$?$a$N%5%W%i%$%A%'%$%s:GE,2=LdBj$N0lHLE*I=8=K!$N9M;!(B | 6-f | supply chain superstructure optimization | 12/22 22:31:33 | WWW |
781 | $B9b05>r7o$K$*$1$k@PC:%A%c!<$K$h$k%?!<%k2~ | 9-c | Coal Gasitication Tar reforming | 12/22 22:32:08 | WWW |
782 | $B7V8wLH1V%;%s%5!<(BQ-body$B$rDs<($7$?9ZJl:YK&$N9=C[$H93868!=P(B | 7-i | antibody quenchbody yeast surface display | 12/22 22:32:33 | WWW |
783 | $B%,%i%9E>0\E@6aK5$K$*$1$k(BMMA / EA$B6&=E9g$KBP$9$k(BCO2$BMO2rEY$*$h$S3H;678?t$NB,Dj$*$h$S?d;;$K4X$9$k8&5f(B | 1-a | Glass transition Equation of state free volume theory | 12/22 22:36:55 | WWW |
784 | Taylor$BK!$K$h$k9b05Fs;@2=C:AG(B+hexane$B:.9gN.BNCf$N(Bbenzene$B$N3H;678?t$NB,Dj$H?d;;(B | 1-a | mixture of CO2 and hexane diffusion coefficient benzene | 12/22 22:37:29 | WWW |
785 | $B%]%j%^!<(B/$B?e3&LL$KBP$9$k%"%_%N;@%"%J%m%0$*$h$S;D4p$N5[Ce<+M3%(%M%k%.!<2r@O(B | 1-a | Molecular Dynamics Simulation Free energy Polymer | 12/22 22:38:20 | WWW |
786 | $B%a%s%V%l%s%/%m%^%H%0%i%U%#!<$K8~$1$?B?=E%b!<%I1~Ez@-9bJ,;R%0%i%U%HKl$N@_7W$HFC@-I>2A(B | 4-a | Membrane chromatography Protein Ion recognition | 12/22 22:42:15 | WWW |
787 | Domestic or foreign biomass for power generation in Japan? A life cycle assessment (LCA) of Malaysian palm kernel shell (PKS) and Japanese wood chip in biomass-power generation in Japan | 13-i | Palm kernel shell Life cycle assessment Biomass-based power | 12/22 22:42:46 | WWW |
788 | $B%=%U%HB?9&@-:xBN$N@.7A2C9)$H%2!<%H5[Ce5sF0$N4KK}2=(B | 12-a | metal-organic framework gate adsorption external force | 12/22 22:48:33 | WWW |
789 | $BB?9&@-G[0L:xBNHyN3;R$N5e>u=8@Q9=B$$N:n@=$H5[CeFC@-I>2A(B | 12-a | Metal-organic frameworks Hierarchical structures Microfluidic device | 12/22 23:12:56 | WWW |
790 | $BIbM7@-(BCHO$B:YK&$N_I2a%1!<%/(B | 4-b | microfiltration filter cake CHO cell | 12/22 23:21:48 | WWW |
791 | $BAjJQ2=:`NA$K$h$kG.Jd=~8z2L$r | 4-e | non-isothermal detailed column model phase change material breakthrough curve | 12/22 23:21:52 | WWW |
792 | S/O$B@=:^$rMQ$$$?7PHi%o%/%A%s$N:GE,EjM?@_7W(B | 7-e | vaccine optimisation Formulation | 12/22 23:23:34 | WWW |
793 | [$B0MMj9V1i(B] $B%l!<%6!<%I%C%W%i!<$;$sCG1~NO7WB,K!$N3+H/$K$h$k5$K"N.$K$*$1$kK`;$Dq93$NI>2A(B | HQ-21 | Shear stress Turbulent flow Drag reduction | 12/22 23:25:43 | WWW |
794 | Preparation of selective sorbents for selenium(IV) and selenium(VI) composed of lysine-peptide and porous silica using molecular imprinting technology | 13-a | Selenium adhesive peptide Molecular imprinting technology | 12/22 23:27:10 | WWW |
795 | $BJ#?t2r$N7OE}E*Ds<($K;q$9$kG.8r494o%M%C%H%o!<%/9g@.%D!<%k$N3+H/(B | 6-e | Heat exchange Optimization | 12/22 23:34:28 | WWW |
796 | [$B0MMj9V1i(B] $B9ZAGH?1~$HB?E|$rMQ$$$?(BCpG DNA-(dA)m $B7?%"%8%e%P%s%H$N9g@.(B | HQ-21 | schizophyllan CpG adjuvant terminal transferase | 12/22 23:38:45 | WWW |
797 | $B;@?(G^N3;R$r= | 4-d | alumina particle acidic functional group solvent regeneration | 12/22 23:39:55 | WWW |
798 | Thermopower Wave$B$K4p$E$$$?H/EE%G%P%$%9$K4X$9$k8&5f(B | 9-e | thermopower wave carbon nanotube power generation | 12/22 23:43:29 | WWW |
799 | $BB?9&@-%7%j%+$H%Z%W%A%I$H$+$i@.$k(BSe(IV)$B$*$h$S(BSe(VI)$BG'<1G=$rM-$9$k5[CeC4BN(B | 13-b | Selenium Adhesive peptide Molecular imprinting technology | 12/22 23:45:56 | WWW |
800 | [$B>7BT9V1i(B] Redox Flow Batteries for Large-scale Electrical Energy Storage: The Third Generation | K-3 | Redox flow battery Porous electrode Design and optimization | 12/22 23:48:28 | WWW |