$BBh(B1$BF|(B
|
$B9V1i(B $B;~9o(B | $B9V1i(B $BHV9f(B | $B9V1iBjL\!?H/I=| $B%-!<%o!<%I(B | $BJ,N`(B $BHV9f(B | $B$BHV9f(B | |
| $B4D6-(B |
| (10:00$B!A(B11:00)$B!!(B($B:BD9(B $B0f>e>!Mx(B) |
| 10:00$B!A(B 10:20 | R104 | $B1xBy8P>B>t2=:v8!F$$N$?$a$N1xByJ* ($B@EBg9)(B) $B!{(B($B3X(B)$B>._7(B $B9*(B$B!&(B($B3X(B)$BEDCf(B $B:c$B!&(B($B@5(B)$B>>ED(B $BCR(B | water pollution material balance model simulation
| 13-a | 680 |
| 10:20$B!A(B 10:40 | R105 | $BD,<.$N1F6A$r2A%b%G%k(B ($B@EBg9)(B) $B!{(B($B3X(B)$B:d8}(B $BFX$B!&(B($B%/%\%?(B) $B5WJ](B $B??8c(B$B!&(B($B@EBg9)(B) $BKRLn(B $BBY>;(B$B!&(B($B@5(B)$B@%Ln(B $BCi0&(B | ecologocal model eutrophic lake water quality
| 13-a | 777 |
| 10:40$B!A(B 11:00 | R106 | $BIM>>CO0h$NCO2 ($B@EBg9)(B) $B!{(B($B3X(B)$BB<>e(B $B2BF`(B$B!&(B$BC+8}(B $B7CN<(B$B!&(B($B@5(B)$B@%Ln(B $BCi0&(B | ground water water permeability numerical simulation
| 13-a | 781 |
| (11:00$B!A(B12:00)$B!!(B($B:BD9(B $B@%LnCi0&(B) |
| 11:00$B!A(B 11:20 | R107 | $BN.0h4IM}$H?e4D6-J]8n$N$?$a$N2O@n%b%G%k$N9=C[(B ($B;37ABg1!M}9)(B) $B!{(B($B3X(B)$BEDCf(B $B=SLi(B$B!&(B($B@5(B)$B9bH*(B $BJ]G7(B$B!&(B($B@5(B)$B9b66(B $B9,;J(B | river model simulation watershed management
| 13-a | 197 |
| 11:20$B!A(B 11:40 | R108 | $BDl ($B:4Bg1!(B) $B!{(B($B3X(B)$BBg@P(B $BL@9-(B$B!&(B($B:4BgM}9)(B) ($BIt(B)$B86ED(B $B9@9,(B$B!&(B$B2OLn(B $BBY71(B$B!&(B$B;V4t(B $B>;I'(B$B!&(B($B2,;3Bg4D9)(B) ($B3X(B)$B9bHfNI(B $B=$B!&(B($B:4BgM}9)(B) ($BIt(B)$B@n4nED(B $B1Q9'(B$B!&(B($BIt(B)$BBgEO(B $B7<2p(B$B!&(B($B:43X!&M}9)(B) ($BIt(B)$B0f>e(B $B>!Mx(B | exopolysaccharide Ariake sea sediment rheology
| 13-a | 157 |
| 11:40$B!A(B 12:00 | R109 | $BIe?"J* ($B6bBtBg1!(B) $B!{(B($B3X(B)$B?y1:(B $B=$J?(B$B!&(B($B6bBtBg1!B4(B) Van Anh Dieu$B!&(B($B6bBtBg(B) $BLZ2<(B $B@i?R(B$B!&(B($B6bBtBg1!(B) ($B@5(B)$BNS(B $BNILP(B$B!&(B($B@5(B)$B@n@>(B $BBvLi(B | PAHs Partition Humic substance
| 13-c | 453 |
| (13:00$B!A(B14:00)$B!!(B($B:BD9(B $BH( |
| 13:00$B!A(B 13:20 | R113 | $BAt>l:F@8B%?J$K8~$1$?Ie?"J*2A(B ($BElBg1!9)(B) $B!{(B($B3X(B)$B@>ED(B $BFX(B$B!&(B($BF|E44D6-%(%s%8(B) $BBgDM(B $B7I;L(B$B!&(B($BKLBg1!9)(B) $BJ!Eh(B $B@5L&(B$B!&(B($B;:Am8&(B) $B6p0f(B $BIp(B$B!&(B($BElBg65M\(B) ($B@5(B)$B;3K\(B $B8wIW(B | humic substances iron barren ground
| 13-a | 720 |
| 13:20$B!A(B 13:40 | R114 | $BN2;@%"%k%_%K%&%`$rMQ$$$?%P%i%9%H?eCf$N3$@8@8J*$ND@9_J,N%(B ($BEl9)BgM}9)(B) $B!{(B($B3X(B)$BCf86(B $B@598(B$B!&(B($B@5(B)$B$O$P$-(B $B9-82(B$B!&(B($B@5(B)$B@n:j(B $B=gFsO:(B | ballast water alum separation
| 13-a | 451 |
| 13:40$B!A(B 14:00 | R115 | Power Law Tailing in Air-sparging of Groundwater (Dastagir) $B!{(B($B3X(B)Dastagir Muhammad Rehan$B!&(B(Ninagawa) ($B3X(B)Ninagawa Koji$B!&(B(Fujimaru) ($B3X(B)Fujimaru Atsushi$B!&(B(Hayashi) ($B@5(B)Hayashi Yoshishige$B!&(B(Kawanishi) ($B@5(B)Kawanishi Takuya | Groundwater pollution Air-sparging Powerlaw Tailing
| 13-a | 190 |
| (14:00$B!A(B15:00)$B!!(B($B:BD9(B $B@n@>BvLi(B) |
| 14:00$B!A(B 14:20 | R116 | $B?eAG;@2=%P%/%F%j%"$K$h$kGS?eCf$N>K;@@-CbAG=|5n(B ($BKL6e=#9b@l(B) $B!{(B($B@5(B)$BH*Cf(B $B@i=)(B$B!&(B($B$B!&(B($B@5(B)$B5HED(B $B>;90(B | biochemical engineering denitrification hollow fiber bioreactor
| 13-b | 91 |
| 14:20$B!A(B 14:40 | R117 | $B%(%?%N!<%k$r= ($BEECf8&(B) $B!{(B($B@5(B)$B?"K\(B $B90L@(B$B!&(B($B@5(B)$B?9ED(B $B?NI'(B$B!&(B$BEOJU(B $B=_(B | nitrification denitriifcation plastic film
| 13-b | 539 |
| 14:40$B!A(B 15:00 | R118 | $B9bJ,;R%U%#%k%`$NA*BrF)2a@-$rMxMQ$7$?9bG;EY%U%'%N!<%kGS?e$NHy@8J*=hM}(B ($BEE5!Bg9)(B) $BBg2<(B $B9,M:(B$B!&(B($BEECf8&(B) ($B@5(B)$B?"K\(B $B90L@(B$B!&(B$B!{(B($B@5(B)$B?9ED(B $B?NI'(B$B!&(B($BEE5!Bg9)(B) $B | phenol plastic film wastwater treatment
| 13-b | 563 |
| (15:00$B!A(B16:00)$B!!(B($B:BD9(B $B?"K\90L@(B) |
| 15:00$B!A(B 15:20 | R119 | $B%3%s%/%j!<%HGQ4~J*$rMxMQ$7$?2 ($BElBg(B) $B!{(B($B3X(B)$BLP86(B $B8`O:(B$B!&(B($BElBg1!(B) ($B@5(B)$BHSDM(B $B=_(B$B!&(B($B;:Am8&(B) ($B@5(B)$B;3:j(B $B>O90(B$B!&(B($BElBg1!(B) $B7'C+(B $B0l@6(B$B!&(B($B@5(B)$BLxBt(B $B9,M:(B | phosphorus recycling waste cement sawage
| 13-b | 294 |
| 15:20$B!A(B 15:40 | R120 | $B%3%s%/%j!<%HGQ4~J*$rMxMQ$7$??75,$JC&N25;=Q$N3+H/(B ($BElBg1!(B) $B!{(B($B3X(B)$B8b(B $B2BM#(B$B!&(B($B@5(B)$BHSDM(B $B=_(B$B!&(B($B;:Am8&(B) ($B@5(B)$B;3:j(B $B>O90(B$B!&(B($BElBg1!(B) $B7'C+(B $B0l@6(B$B!&(B($B@5(B)$BLxBt(B $B9,M:(B | desulphurization waste cement SO2
| 13-f | 194 |
| 15:40$B!A(B 16:00 | R121 | $BGONk=r%G%s%W%s9)>lGQ?e$K$*$1$k%?%s%Q%/ ($B>BDE9b@lJ*$B!&(B($B>.@6?eD.G@6((B) $B??Lx(B $B@5;L(B$B!&(B$B:4F#(B $B@5><(B$B!&(B($B>.@tE49)(B) $B>.AR(B $B42(B$B!&(B($B>BDE9b@lJ*$B!&(B($BIt(B)$BC]8}(B $B>;G7(B | potatostarch protein recovery
| 13-b | 70 |
| (16:00$B!A(B17:00)$B!!(B($B:BD9(B $BHSDM=_(B) |
| 16:00$B!A(B 16:20 | R122 | SBMBfR$B$K$h$k@8J*3XE*CbAG!&%j%s=|5n5;=Q$N3+H/$HDc(BC/N$BHfGS?e$X$NE,MQ@-I>2A(B ($BAaBgM}9)(B) $B!{(B($B3X(B)$B0KF#(B $B=aJ?(B$B!&(B($B%G%s%^!<%/9)Bg4D6-;q8;8&(B) ($BIt(B)$B;{ED(B $B>$B!&(B($BAaBgM}9)(B) $B>>K\(B $B?5Li(B$B!&(B($BIt(B)$B>oED(B $BAo(B | membrane simultaneous nitrogen and phosphorus removal DNPAOs
| 13-b | 49 |
| 16:20$B!A(B 16:40 | R123 | Treatment of Wastewater Containing Model Pyroligneous Acid Preservative by Rubberwood Charcoal ($BEl9)BgM}9)(B) $B!{(B($B3X(B)Othaman Rizafizah$B!&(B($B3X(B)Susilo Agus$B!&(B($B@5(B)Egashira Ryuichi | rubberwood residues wastewater treatment charcoal
| 13-b | 86 |
| 16:40$B!A(B 17:00 | R124 | $B%<%*%i%$%H$rC4BN$H$7$?7y5$@->C2=$N8zN(2=$K4X$9$k8&5f(B ($B:42lBgM}9)(B) $B!{(B($BIt(B)$B86ED(B $B9@9,(B$B!&(B(EXEO) ($B6&(B)$B>eEh(B $B9/90(B$B!&(B$B1vF;(B $BF)(B$B!&(B($B:42lBgM}9)(B) ($BIt(B)$B0f>e(B $B>!Mx(B$B!&(B($BIt(B)$B@n4nED(B $B1Q9'(B$B!&(B($BIt(B)$BBgEO(B $B7<2p(B | anaerobic digestion bacterial carrier zeolite
| 13-b | 166 |
$BBh(B2$BF|(B
|
$B9V1i(B $B;~9o(B | $B9V1i(B $BHV9f(B | $B9V1iBjL\!?H/I=| $B%-!<%o!<%I(B | $BJ,N`(B $BHV9f(B | $B$BHV9f(B | |
| $B4D6-(B |
| (9:20$B!A(B10:40)$B!!(B($B:BD9(B $B9>F,N50l(B) |
| 9:20$B!A(B 9:40 | R202 | $B%Q!<%`%*%$%k;:6H$NL$MxMQ%P%$%*%^%9$K$h$kM-5!HnNA$N@=B$$H(BCDM$B;v6H$N2DG=@-(B ($B6e9)Bg(B) Azhari Baharuddin$B!&(B$B!{(B($B@5(B)$BGr0f(B $B5A?M(B$B!&(B($B@5(B)$BOF:d(B $B9A(B$B!&(B($B6eBg(B) $B$B!&(B(FBBS) Hassan Mohd Ali | Palm Oil Palm Biomass CDM
| 13-e | 475 |
| 9:40$B!A(B 10:00 | R203 | $BG.BS%W%i%s%F!<%7%g%s$K$*$1$k%*%$%k%Q!<%`$N<}NL%7%_%e%l!<%7%g%s%b%G%k$N9=C[(B ($BK-665;Bg(B) $B!{(B($B@5(B)$B5L(B $BN40l(B$B!&(B$B3w86(B $B907Q(B$B!&(B($B@5(B)Anugerah Widiyanto$B!&(B($B@5(B)$BG.ED(B $BMN0l(B$B!&(B($B@5(B)$BBgLg(B $BM5G7(B$B!&(B($B@5(B)$B8eF#(B $B>090(B$B!&(B($B@5(B)$BF#9>(B $B9,0l(B | Plantation Fertilization Yield simulation model
| 13-d | 439 |
| 10:00$B!A(B 10:20 | R204 | $B%$%s%I%M%7%";:%Q!<%`%*%$%kM3Mh$N(BBDF$BM"F~$K$*$1$k%(%M%k%.!<<};Y$NI>2A$H%b%G%k2=(B ($BK-665;Bg(B) $B!{(B($B3X(B)$B3w86(B $B907Q(B$B!&(B($B@5(B)Anugerah Widiyanto$B!&(B($B@5(B)$BG.ED(B $BMN0l(B$B!&(B($B@5(B)$B5L(B $BN40l(B$B!&(B($B@5(B)$BBgLg(B $BM5G7(B$B!&(B($B@5(B)$B8eF#(B $B>090(B$B!&(B($B@5(B)$BF#9>(B $B9,0l(B | Oil palm BDF LCA
| 13-d | 447 |
| 10:20$B!A(B 10:40 | R205 | $B;D%P%$%*%^%9Mx3hMQ$N$?$a$N%7%_%e%l!<%7%g%s%7%9%F%`$N3+H/$H1~MQ(B ($BElBg1!9)(B) $B!{(B($B@5(B)$B9S@n(B $B@544(B$B!&(B($BK-665;Bg1!9)(B) ($B3X(B)$B3w86(B $B907Q(B$B!&(B($B@5(B)$B8eF#(B $B>090(B$B!&(B($BElBg1!9)(B) ($B@5(B)$BA%DE(B $B8x?M(B | biomass simulation system energy substitution
| 13-d | 647 |
| (10:40$B!A(B12:00)$B!!(B($B:BD9(B $B8eF#>090(B) |
| 10:40$B!A(B 11:00 | R206 | $BLZ (RITE) $B!{(B($B@5(B)$B>.6L(B $BAo(B$B!&(B($B@5(B)$BF#2,(B $BM40l(B$B!&(B$BB@Ea@n(B $B42(B$B!&(B$B;0Bp(B $B?F90(B | Global warming reforestation bioenergy
| 13-d | 555 |
| 11:00$B!A(B 11:20 | R207 | Effects of operating conditions on biodiesel production from binary model feed oil ($BEl9)BgM}9)(B) $B!{(B($B3X(B)Sinthupinyo Patima$B!&(B($BEl9)Bg9)(B) ($B3X(B)Hayashi Tomoki$B!&(B($BEl9)BgM}9)(B) ($B@5(B)Egashira Ryuichi | biodiesel model feed oil operating condition
| 13-i | 51 |
| 11:20$B!A(B 11:40 | R208 | $B29CH2=BP:v$H$7$F$N%P%$%*%(%?%N!<%k$N8zMQI>2A(B ($B@EBg9)(B) $B!{(B($B@5(B)$B>>ED(B $BCR(B$B!&(B($B3X(B)$B9uLZ(B $BM5<#(B$B!&(B($BEl9)Bg(B) ($B@5(B)$B5WJ]ED(B $B9((B | bio-ethanol carbon neutral energy balance
| 13-g | 707 |
| 11:40$B!A(B 12:00 | R209 | $BHy@8J*MxMQ7?@8$4$_=hM}AuCV$K$*$1$k2aIi2Y>uBV$N2r@O(B ($B@EBg9)(B) $B!{(B($B3X(B)$BG_ED(B $B8w?.(B$B!&(B($B@5(B)$B>>ED(B $BCR(B | garbage treatment microbial decomposition over loading
| 13-e | 699 |
$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$BHV9f(B | |
| $B4D6-(B |
| (9:00$B!A(B9:40)$B!!(B($B:BD9(B $BA0_7> |
| 9:00$B!A(B 9:20 | R301 | $BIB866]M^@)6]$r9bG;EY$K4^$`5!G=@-%3%s%]%9%H$rMQ$$$??"J*IB32$NKI=|(B ($B@EBg9)(B) ($B@5(B)$BCf:j(B $B@6I'(B$B!&(B$B!{(B($B3X(B)$B?@C+(B $B>;K'(B$B!&(B$B2&(B $B4dK2(B$B!&(B($B3X(B)$BNkLZ(B $B?->O(B | Compost plant disease microorganism
| 13-e | 22 |
| 9:20$B!A(B 9:40 | R302 | $B%;%k%m!<%9G[9g$K$h$k%3%s%]%9%H2=2aDx$G$N%"%s%b%K%"=-Dc8:8z2L(B ($BLp:jAm6H(B) $B!{(B($B@5(B)$BB?!9NI(B $BOB2B(B$B!&(B($B@EBg9)(B) ($B@5(B)$BCf:j(B $B@6I'(B | Compost Cellulose Actinomycetes
| 13-e | 17 |
| (9:40$B!A(B10:40)$B!!(B($B:BD9(B $BFs5\A1I'(B) |
| 9:40$B!A(B 10:00 | R303 | $BBgNL=hM}$,2DG=$J%1!<%/%l%99bG;=LO"B3$m2a%7%9%F%`(B ($BL>Bg1!9)(B) $B!{(B($B@5(B)$B?9(B $BN4>;(B$B!&(B$B;3ED(B $B5.Bg(B$B!&(B$B>!2,(B $B5.5W(B$B!&(B$B%*%A%k%[%d%0(B $B%P%d%s%8%c%k%,%k(B$B!&(B($B@5(B)$BDX(B $B=_0lO:(B$B!&(B($BCf1{2=9)5!(B) ($B@5(B)$B?yK\(B $BM}=<(B | cake-less continuous filtration large treatment dispersant
| 13-b | 291 |
| 10:00$B!A(B 10:20 | R304 | $B%U%)%H%U%'%s%H%sH?1~$K$h$kM>>j1xE%$N8:MF2=(B ($BElMNBg9)(B) $B!{(B($B3X(B)$BFAB<(B $B2m90(B$B!&(B$B2CF#(B $B5W?M(B$B!&(B($B@5(B)$B@n@%(B $B5A6k(B | excess sludge Photo-Fenton reaction solubilization
| 13-a | 510 |
| 10:20$B!A(B 10:40 | R305 | $B%U%)%H%U%'%s%H%sH?1~$K$h$k3&LL3h@-:^$NJ,2r(B ($BElMNBg9)(B) $B!{(B($B3X(B)$BFAB<(B $B2m90(B$B!&(B($B3X(B)$BNS(B $B>"(B$B!&(B$B>.Ln(B $B3(M}:Z(B$B!&(B($B@5(B)$B@n@%(B $B5A6k(B | surfactant Photo-Fenton reaction degradation
| 13-b | 514 |
| (10:40$B!A(B12:00)$B!!(B($B:BD9(B $BNkLZ7 |
| 10:40$B!A(B 11:00 | R306 | SPCP$BH?1~4o$rMQ$$$?1UAjCfG"AG$N%*%>%sGx5$=hM}(B ($BAO2ABg9)(B) $B!{(B($B3X(B)$BF#ED(B $BM-4u(B$B!&(B($B3X(B)$BEOIt(B $BAO;N(B$B!&(B($B@5(B)$B0fED(B $B=\0l(B$B!&(B($B@5(B)$B>>;3(B $BC#(B$B!&(B($B@5(B)$B;3K\(B $B1QIW(B | aerator ozone urea
| 13-b | 657 |
| 11:00$B!A(B 11:20 | R307 | Decomposition of orange II in water using micro-bubble ozone ($BCfItBg(B) $B!{(B($B@5(B)$BWE(B $B>.@;(B$B!&(B$B8EED(B $B>$B!&(B($B@5(B)$BFs5\(B $BA1I'(B$B!&(B($B2,ED;:6H(B) $BLnB<(B $B7=;T(B | orange II decomposition micro-bubble ozone
| 13-b | 458 |
| 11:20$B!A(B 11:40 | R308 | $B%*%>%s$rMQ$$$??eCf$KMO2r$7$?4uGv$J%U%'%N!<%k$NJ,2r5sF0(B ($B4X@>Bg(B) $B!{(B($B3X(B)$B?[K,(B $B?50l(B$B!&(B($B3X(B)$B9b8+(B $BK'Li(B$B!&(B$BCSED(B $BFR$B!&(B(JFE$B%(%s%8(B) $BDT(B $BLT;V(B$B!&(B($B4X@>Bg(B) ($B@5(B)$B<<;3(B $B>!I'(B | ozone water treatment environmental
| 13-a | 396 |
| 11:40$B!A(B 12:00 | R309 | $B%*%>%s$rMQ$$$?M-5!J*4^M-GQ?e$N=hM}(B ($B@EBg9)(B) $B!{(B($B@5(B)$BA0_7(B $B>$B!&(BNguyen Trowg Nghia$B!&(B($BCf1{H/L@8&(B) $BEOJU(B $B@59T(B | Ozon wasterwater treatment
| 13-b | 182 |
| (13:00$B!A(B14:00)$B!!(B($B:BD9(B $BCf:j@6I'(B) |
| 13:00$B!A(B 13:20 | R313 | Extruder$B$K$h$k%]%jF};@$N%1%_%+%k%j%5%$%/%k(B (KIT$B%(%3%?%&%s(B) $BImLZ(B $B5.9T(B$B!&(B$B0BED(B $B?.I'(B$B!&(B(KIT$B%(%3%?%&%s(B,$B6e9)Bg(B) $B!{(B($B@5(B)$BGr0f(B $B5A?M(B$B!&(B($B6e9)Bg(B) ($B@5(B)$BOF:d(B $B9A(B$B!&(B(KIT$B%(%3%?%&%s(B) $B@>ED(B $B<#CK(B | Poly (L-lactic acid) Chemical Recycling Extruder
| 13-e | 465 |
| 13:20$B!A(B 13:40 | R314 | $B%]%jF};@$N9b05?e>x5$$K$h$k2C?eJ,2r$H(BNPO$B$K$h$k%1%_%+%k%j%5%$%/%k$NZ(B(Hydrolysis behavior of poly (L-lactic Acid) under high pressure steam) ($B6e9)Bg(B) Mohd Adnan Ahmad Faris$B!&(B($B6e9)Bg(B,$B6e9)Bg%(%3%?%&%sZ8&5f%;%s%?!<(B,NPO$BKL6e=#%(%3%5%]!<%?!<%:(B) $B!{(B($B@5(B)$BGr0f(B $B5A?M!&(B($B6e9)Bg%(%3%?%&%sZ8&5f%;%s%?!<(B) $B@>ED(B $B<#CK(B$B!&(B($B6e9)Bg(B,NPO$BKL6e=#%(%3%5%]!<%?!<%:(B) ($B@5(B)$BOF:d(B $B9A(B$B!&(B($B6e9)Bg(B) $B1JED(B $B9@0l(B | Hydrolysis Poly(lactic acid) Auto-catalytic degradation
| 13-e | 452 |
| 13:40$B!A(B 14:00 | R315 | $B@8%-%c%C%5%P$r86NA$H$7$?F};@$NO"B3H/9Z(B ($BElG@9)Bg(B) $B!{;3@>(B $B7<2p(B$B!&(B$BN-(B $B$;$$(B$B!&(B($B@5(B)$B9q4c(B $B9'M:(B | substrate inhibition continuous fermentation fresh cassava root
| 13-f | 407 |
| (14:00$B!A(B15:20)$B!!(B($B:BD9(B $B0BItF;8<(B) |
| 14:00$B!A(B 14:20 | R316 | $BJF$+$i%W%i%9%A%C%/(B(1)$BJF$r86NA$H$7$?F};@H/9Z(B ($BElG@9)Bg(B) $B!{W^EZ(B $B$f$j7C(B$B!&(B$B3J:,(B $BEcU1(B$B!&(BNugroho Riyanto Heru$B!&(B($B@5(B)$B9q4c(B $B9'M:(B | high-yielding rice lactic acid fermentation substrate inhibition
| 13-f | 429 |
| 14:20$B!A(B 14:40 | R317 | $BJF$+$i%W%i%9%A%C%/(B(2)$BJFM3Mh$NH/9Z%V%m%9$+$i$NF};@$N2s<}(B ($BElG@9)Bg(B) $B!{(B($B3X(B)$BN-(B $B;V1s(B$B!&(B$B2CF#(B $BBYM5(B$B!&(BNur Adlin$B!&(B($B@5(B)$B9q4c(B $B9'M:(B | esterification hydrolysis fermentation
| 13-f | 391 |
| 14:40$B!A(B 15:00 | R318 | $BJF$+$i%W%i%9%A%C%/(B(3)$BJFM3Mh$N%]%jF};@$N9g@.%W%m%;%9(B ($BEl5~G@9)(B) $B!{(BMuniandy Kalai Madhi$B!&(B($B3X(B)Achmad Feerzet$B!&(B($B3X(B)$B@P(B $B8"(B$B!&(B($B@5(B)$B9q4c(B $B9'M:(B | direct-polymerization non-catalyst biomass
| 13-f | 515 |
| 15:00$B!A(B 15:20 | R319 | $BJFM3Mh$NF};@H/9Z1U$N%$%*%s8r49$K$h$k5[CeFC@-(B ($BElG@9)Bg(B) $B!{3J:,(B $BEcU1(B$B!&(BNugroho Riyanto heru$B!&(B$BW^EZ(B $B$f$j7C(B$B!&(B($B@5(B)$B9q4c(B $B9'M:(B | Rice fermentation Ion-exchange Adsorption
| 13-f | 419 |
| (15:20$B!A(B16:20)$B!!(B($B:BD9(B $B>>EDCR(B) |
| 15:20$B!A(B 15:40 | R320 | Characterization of Polylactic Acid by direct polycondensation ($BEl5~G@9)(B) $B!{(B($B3X(B)Achmad Feerzet$B!&(B($B3X(B)$B@P(B $B8"(B$B!&(BMuniandy Kalai Madhi$B!&(B($B@5(B)$B9q4c(B $B9'M:(B | direct-polymerization biomass polylactic-acid
| 13-f | 524 |
| 15:40$B!A(B 16:00 | R321 | Lactobacillus rhamnosus$B$K$h$kJF$L$+$rM-8zMxMQ$7$?F};@H/9Z$K4X$9$k8&5f(B ($BBgJ,Bg9)(B) $B!{(B($B3X(B)$B6b;R(B $BLo1{(B$B!&(B($B@5(B)$B9b(B $BZaE7(B$B!&(B($B@5(B)$BDL:e(B $B1I0l(B$B!&(B($B@5(B)$BJ?ED(B $B@?(B$B!&(B($BBgJ,Bg(B) ($B@5(B)$B1)Ln(B $BCi(B | lactic acid rice bran lactobacillus rhamnosus
| 13-f | 792 |
| 16:00$B!A(B 16:20 | R322 | $BJF86NA$NF};@%(%A%k@:@=9)Dx$N8!F$(B ($B;37ABg1!(B) $B!{(B($B@5(B)$B8c6?(B $B7r0l(B$B!&(B($B@5(B)$B]/0f(B $BFD;N(B$B!&(B($B@5(B)$BD9C+@n(B $BCR(B$B!&(B($B@5(B)$B9b66(B $B9,;J(B | Rice Ethyl Lactate Purification
| 13-e | 351 |