$B9V1i(B $B;~9o(B | $B9V1i(B $BHV9f(B | $B9V1iBjL\!?H/I= | $B%-!<%o!<%I(B | $BJ,N`(B $BHV9f(B | $B$BHV9f(B |
B$B2q>l(B $BBh(B2$BF|(B |
(9:00$B!A(B10:00)$B!!(B($B:BD9(B $BOBEhN4>;(B) |
9:00$B!A(B 9:20 | B201 | $B%T%j%8%k7?%+%j%C%/%9(B[4]$B%"%l!<%s4^?; ($B:42lBgM}9)(B) $B!{(B($B@5(B)$BBgEO(B $B7<2p(B$B!&(B$B668}(B $BD>Li(B$B!&(B($B@5(B)$B@n4nED(B $B1Q9'(B$B!&(B($B@5(B)$B86ED(B $B9@9,(B$B!&(B($B@5(B)$B0f>e(B $B>!Mx(B | calix[4]arene ion exchange silver
| S-17 | 468 |
9:20$B!A(B 9:40 | B202 | Na$BE:2C$K$h$k4uEZN`A*Br@-$N0[$J$k%+%k%\%s;@7O%+%j%C%/%9(B[4]$B%"%l!<%s$N3+H/(B ($B:42lBg(B) $B!{(B($B3X(B)$B2VB<(B $BCN9((B$B!&(B($B@5(B)$B@n4nED(B $B1Q9'(B$B!&(B($B@5(B)$BBgEO(B $B7<2p(B$B!&(B($B@5(B)$B86ED(B $B9@9,(B$B!&(B($B@5(B)$B0f>e(B $B>!Mx(B | calix[4]arene extraction rare earth
| S-17 | 460 |
9:40$B!A(B 10:00 | B203 | Novel Lignin Gel for the Recovery of Precious Metals (Saga uni.) $B!{(B($B3X(B)Khunathai Kanjana$B!&(B($B3X(B)Parajuli Durga$B!&(B($B3X(B)Adhikari Chaitanya$B!&(B($B@5(B)Kawakita Hidetaka$B!&(B($B@5(B)Ohto Keisuke$B!&(B($B@5(B)Inoue Katsutoshi$B!&(B(Mie uni.) ($B@5(B)Funaoka Masamitsu | precious metal recovery adsorption
| S-17 | 172 |
(10:00$B!A(B11:00)$B!!(B($B:BD9(B $B9>F,N50l(B) |
10:00$B!A(B 10:20 | B204 | $B%8%A%*%+!<%P%a%$%H4p$rF3F~$7$?%-%H%5%s$K$h$k6bB0$N5[CeJ,N%FC@-(B ($B:42lBgM}9)(B) $B!{(B($B3X(B)$BB@ED(B $B?58c(B$B!&(B($B@5(B)$B0f>e(B $B>!Mx(B$B!&(B($B@5(B)$B86ED(B $B9@9,(B$B!&(B($B@5(B)$BBgEO(B $B7<2p(B$B!&(B($B@5(B)$B@n4nED(B $B1Q9'(B | chitosan dithiocarbamate adsorption
| S-17 | 837 |
10:20$B!A(B 10:40 | B205 | $B2=3X=$>~$7$?8E;f$rMQ$$$?6bB0$N2s<}(B ($B:42lBgM}9)(B) $B!{(B($B@5(B)$B@n4nED(B $B1Q9'(B$B!&(B($B3X(B)Chaitanya Raj$B!&(B($B@5(B)$BBgEO(B $B7<2p(B$B!&(B($B@5(B)$B86ED(B $B9@9,(B$B!&(B($B@5(B)$B0f>e(B $B>!Mx(B | wastepaper precious metal adsorption
| S-17 | 618 |
10:40$B!A(B 11:00 | B206 | Adsorptive removal of phosphate, phosphite and hypophosphite from aqueous solution using Zr(IV)-loaded orange waste (Saga uni.) $B!{(B($B3X(B)Biswas Biplob$B!&(B($B@5(B)Inoue Katsutoshi$B!&(B($B@5(B)Harada Hiroyuki$B!&(B($B@5(B)Ohto Keisuke$B!&(B($B@5(B)Kawakita Hidetaka | Orange waste Adsorption pH effect
| S-17 | 234 |
(11:00$B!A(B12:00)$B!!(B($B:BD9(B $B>>7(MN2p(B) |
11:00$B!A(B 11:20 | B207 | $B3A=B1U$rMQ$$$?6b$N6E=8!&J,N%(B ($B:42lBgM}9)(B) ($B@5(B)$B@n4nED(B $B1Q9'(B$B!&(B$B;3Fb(B $BM}3((B$B!&(B$B!{(B($B@5(B)$B0f>e(B $B>!Mx(B$B!&(B($B@5(B)$BBgEO(B $B7<2p(B$B!&(B($B@5(B)$B86ED(B $B9@9,(B | gold persimmon juice coagulation
| S-17 | 599 |
11:20$B!A(B 11:40 | B208 | A new adsorbent prepared from Ferric Hydroxide and Chitosan for As adsorption (Chemeng,TIT) $B!{(B($B@5(B)Le Hai Thanh$B!&(B(Envir che, HUS) ($B@5(B)Phuong Thao$B!&(B(Chemeng,TIT) ($B@5(B)Habarki Hiroaki$B!&(B(Envir che, HUS) ($B@5(B)Tran Hong Con$B!&(B(Chemeng,TIT) ($B@5(B)Kawasaki Junjiro | arsenic chitosan ferric hydroxide
| S-17 | 788 |
11:40$B!A(B 12:00 | B209 | Removal of As from Ground water by Ferric Hydroxide/Chitosan adsorbent (Chemeng,TIT) $B!{(B($B@5(B)Le Hai Thanh$B!&(B(Envir che, HUS) ($B@5(B)Phuong Thao$B!&(B(Chemeng,TIT) ($B@5(B)Habarki Hiroaki$B!&(B(Envir che, HUS) ($B@5(B)Tran Hong Con$B!&(B(Chemeng,TIT) ($B@5(B)Kawasaki Junjiro | arsenic adsorption chitosan ferric hydroxide
| S-17 | 809 |
|
(13:00$B!A(B13:40)$B!!(B($B;J2q(B $B;y6L> |
13:00$B!A(B 13:40 | B213 | [$BE8K>9V1i(B]CO2$B=|5n!&G;=L%7%9%F%`$N:GE,2= ($B6eBg1!9)(B) $B!{(B($B@5(B)$BJw85(B $B2m | Adsorption and Desorption of CO2 Honeycomb Absorbant System Optimization
| S-17 | 194 |
(13:40$B!A(B14:40)$B!!(B($B:BD9(B $BBgEO7<2p(B) |
13:40$B!A(B 14:00 | B215 | $BE7A3%<%*%i%$%H$N%$%*%s8r49G=$K$h$k3$?e$+$i$NG@6HMQ:OG]MO1U:n@.(B ($B=)Bg9);q(B) $B!{(B($B@5(B)$BOBEh(B $BN4>;(B$B!&(B($B:4Bg3$%(%M(B) $B;V?e(B $BNQ7C(B$B!&(B($B@5(B)$BCS>e(B $B9/G7(B | natural zeolite seawater ion exchange
| S-17 | 898 |
14:00$B!A(B 14:20 | B216 | Nitrate Adsorption on Bamboo Charcoal, and Carbonized Rice Husk (PhilRice) $B!{(B($B@5(B)Espiritu Rosana$B!&(B(TIT) ($B@5(B)Kosuge Hitoshi | adsorption bamboo charcoal carbonized rice husk
| S-17 | 1031 |
14:20$B!A(B 14:40 | B217 | REMOVAL OF HEXAVALENT CHROMIUM FROM AQUEOUS SOLUTION BY ADSORPTION USING MONGOLIAN NATURAL ZEOLITE (Tokyo Tech) $B!{(B($B3X(B)Tserendorj Bolortamir$B!&(BRentsennorov Ulambayar$B!&(B($B@5(B)Egashira Ryuichi | Hexavalent Chromium Adsorption Mongolian Natural Zeolite
| S-17 | 373 |
(14:40$B!A(B15:20)$B!!(B($B:BD9(B $B@n4nED1Q9'(B) |
14:40$B!A(B 15:00 | B218 | $B%"%_%s=$>~%j%s;@%8%k%3%K%&%`$N?eG.>r7o2<$G$N%3%P%k%H5[Ce(B ($B;:Am8&(B) $B!{(B($B@5(B)$BNS(B $BBsF;(B$B!&(B$B>eED(B $B><;R(B$B!&(B($B@5(B)$BGlED(B $B9,Li(B | zirconium hydrogenphosphate cobalt adsorbent hydrothermal conditions
| S-17 | 121 |
15:00$B!A(B 15:20 | B219 | $B%?%s%Q%/ ($B6eBg1!9)(B) $B!{2VLZ(B $BH~$B!&(B($B@5(B)$B4];3(B $BC#@8(B$B!&(B($B@5(B)$B?@C+(B $BE5Jf(B$B!&(B($B@5(B)$B8eF#(B $B2m9((B | biomass precious metal adsorption
| S-17 | 684 |