• 検索結果がありません。

!"#$%&'()*+,-%./012345.67

N/A
N/A
Protected

Academic year: 2022

シェア "!"#$%&'()*+,-%./012345.67"

Copied!
2
0
0

読み込み中.... (全文を見る)

全文

(1)

!"#$%&'()*+,-%./012345.67

89:;<=>=? @(=)AB? CD? (=) Wilasinee Yoochatchaval? (E)FG? HI JKLM(N)? OP? QR? STUVWXY? ? (E)Z[? D\

1.]^_`!!

? abcd.ef3ghijklm34.no]pq r(10-20s)tu/klv01(CODcr 01?wxyyy?mg/L z{)|}~p•€m•‚vƒ„…†hi‡ˆj‰Ši

`‹Œ‡•€mƒ„]pŽ€d•…•‘|’“'(.

”‚•…–—op˜-™š›œ•ž&Ÿ% .¡¢…£

¤—¥¦§•ž&Ÿ%¨.ƒ„©ª|}j‰ŒtŒp /0134.qr•€mƒ„|]!"#$%&'(.

« ¬ p - ® … ¯ ° | } ~ UASB(Up-flow Anaerobic Sludge Blanket)ª±.²³:;.67]°Œˆ´hi

‡µ¶‰·Š|¸¹]EGSB(Expanded Granular Sludge Bed ª`ºˆ‡ƒ„4»U¼½¾¿`À~ÁŠ´`

Ã~p/0134ƒ„ÄÅ{|.•‚vcm.-®p Æ®'(tÇ.š›ÈÉÊËœ'(ÌÍÎÏ ¼2Рj IR-GSB? (Intermittent-Recirculation Granular Sludge

Bed)¼Ñ”Œ¶1)‰ÒWX|]pÓ:;.27Ô.¶_

.ÕÖר¼Ùj¶_pLMÚÛtÇ3ghij23

45.IR-GSB*+,-%.67¼Üˆp·.34ƒ„

Ým¼Þߌ¶‰?

2.2੪!!

2.1.á⃄2 à!

? LM34.á⃄2à]pãä`•€mƒ„|}

j IR-GSBpåä`掀•€ƒ„. DHS(Down-flow Hanging Sponge)¼çèPéê¶"ë›ì%&*+,-

%`Ã~Üí¶‰îïw `ð‘î¼ñ‰IR-GSB]*+

,-%òó8.8 L.*+,-%|-ôõ%ö÷`Ã~ƒ

„4»U¼Üø‰60Ƚ1ùô,&´Œpúû10Ƚ ]Õüýþ´ÿ`*+,-%!".Í#$%&… 5 m/hr`—jÃø`ƒ„4»U¼Üí¶‰'~50Ƚ]

Õü.ýþ.è¼Üí¶‰åä.DHS]ƒ„4ü(Í .¶_`)*Œ¶‰+,´Œ‡-.`/h 2.5 cmp0 4.0 cmp1ܵ20.5 cm.2.…J3,.›4™5¼6 407/h©(`89Œp›4™5:,ó]4.1 L´—í

¶‰;'(´Œ‡IR-GSB]˜-™”<!"#$%&' (¼pDHS]cm'(¼=;Œp>?r1]ÿ`20s

`ö÷Œ¶‰HRT ]›-%@+ABC¼Dµ IR-GSB

| 2 C½(DHS]E1C½)`)FŒ>?¼Üí¶‰

2.2.GH34!

? 2àÑI41JKL|]MÚ34¼7ˆ‡ƒ„2༠Üí¶‰MÚ34]CODN´Œ‡OPpBQRS™Pp

›,Q%›p<T•U›¼7ˆp·iViCODWX|

2.25 : 2.25 : 4.5 : 1.YP|pCOD cr(z{COD)01…

600 mg/L`—jÃø`Z[Œ¶‰L¶p34`]æl

\]^p••_`ppH abc(dePf@*gh)¼i jŒ¶‰

? 2àÑI 42 JK`GH34笼2LM345k

~lm¶‰LM34]0nŒ¶o.¼234´Ó±p q&.COD01500 mg/L`—jÃø`4r4|st Œu7Œ¶‰—ºLM34]Fv¿`ÚÛÃ~wxŒ 2à`7ˆ¶¶_n–4ü.yd…}í¶z{P^0 1±|‰L¶pORP(Oxidation Reduction Potential}PÔ~

•€•)ö÷.¶_{Ôf@*gh¼2.7 mgS/LijŒ

¶‰2àÑI 84 JKz‚]34`dePf@*ghp æl\]^p••_`.ij¼Üí¶‰

3.2àef!!

3.1.á⃄2 à!

U%ƒ%„? •€mƒ„, UASB, EGSB, /0134, DHS

á…†? ‡940-2188? ˆ‰Š89‹ÍŒ9•1603-1? 89:;<=>=? UV¦Ž)•?

? ? ? ? ? 4•‘’UVö÷WX“? TEL 0258-47-1611 (!$ 6646)? E-mail : [email protected] î-1 IR-GSB+DHS*+,-%ð‘î

7-048 土木学会第63回年次学術講演会(平成20年9月)

-95-

(2)

? î-2 `áâ34ƒ„2à.ef¼ñ‰(a)]ƒ„4 .”COD01pIR-GSB.è´DHS¼•_¶”COD D–—p(b)]IR-GSB*+,-%`º˜jD–COD`

‹Âj˜-™š›p”˜-™´{P~•`ÃjCODD –`‹ÂjYPp (c)]IR-GSB*+,-%.ƒ„4SS 01´òó™š(OLR)¼ñŒ¶‰

? 2àÑIC]MÚ34¼GŒHRT 4C½|>?¼Ü í¶‰HRT]䛿`œnŒp15JKz‚]2 C½´

Œ¶‰MÚ34GHC.”CODD–—]IR-GSB|90%p DHS¼•_‡98%•1´ž•|}í¶‰2àÑI42 J K`2LM345.k~lm¼Üí¶‰·.åpIR-GSB

|.CODD–—… 60%Ÿo`L|/{Œpƒ„4`

&õ&¡P±.VFA.¢ópƒ„4pH./{(pH 7.2

£ 6.6)o¤¥hi¶‰L¶pGHŒ¶LM34]\]

^…/tí¶¶_(1 mgNH4-N/L z{)p2àÑIÃ~

77 JK`34`dePf@*ghpæl\]^p••

_`¼ijŒ>?¼Üí¶‰

? ú¦¿—ƒ„ef´Œ‡IR-GSB.è|”CODD–

— 77%p%g”COD01]E 100 mg/L¼§¬Œ¶‰

Š.ø¨ƒ„4.©ªmCOD01] 90 mg/L|VFA 01]E25 mgCOD/L´/opIR-GSBƒ„4«COD .>"È]¬1¬È—-.°Èªmklv|}j´®

mÇi¶‰L¶pDHSo•_j´E 90%.ƒ„…Üé i‡º~pDHS ƒ„4|.” COD 01]E 50 mg/L

´—í¶‰

3.2.IR-GSB* +,- %Æ® '(˜ -™‚ ¬cm?

? î-3 `¯ys`º˜jIR-GSBÆ®'(.˜-™‚¬

cm.ef¼ñ‰°F]pMÚ34GHC.43JK

´2LM34GHå70J•±²Œ¶112JK.IR-GSB Æ®'(¼7ˆ‡Üí¶‰?

? MÚ34]COD01`‹ÂjGHC.OPpBQR S™P.YP…·iVi22.5%p22.5%|}í¶‰D©p 2LM34]·iVi10%p5%•1|}í¶‰2LM 34GHå]4³¼Õü´Œ¶cm… 2 ´•1`Í#

Œ¶‰4³µÔcm…Í#Œ¶„¶]MÚ34C`·

¸2LM34ƒ„`ºˆ‡P‚¬`¹ø4³tÇ.˜

-™‚¬.YP…ºjŒ¶¶_´®mÇij‰Ši`

‹ŒOPpBQRS™P¼Õü´Œ¶cm]2LM3 4ƒ„`ºˆ‡ 47»•1`/{Œ¶‰Ši]pOP¼ 7ˆ¶˜-™‚¬.YP…¼–Œ¶¶_´®mÇij‰?

4.L´_?

w /012LM34. 20s`º˜já⃄2à|

]ú¦¿`IR-GSB|”CODD–— 77% (”COD0 1 100 mg/L)¼§¬Œž•—ƒ„…£¤|}í¶‰

¯ DHSƒ„4.”COD01]50 mg/L•1|}~Р܃„ª(cm'(ª , ƒ„4ü 60-70 mgCOD/L)´

Ó±.ƒ„m¤¼”½ÂjŠ´…g¾¶‰

5.¿À

? ÒWX.D"]pÁTܪMˆ•ž&Ÿ%¦ab :;:PÑ”lÃ(NEDO)Äab:;WXŬÆbÇÅ

¬_È.Ŭ¼É˜‡2†Œ¶o.|}j‰?

6"Ê®ËÌ!

! 1) W.Yoochatchaval, K. Syutsubo et al. (2008), Influence of effluent-! recirculation condition on the process performance of EGSB reactor for treating of low strength wastewater, Water Science & Technology, vol. 57(6) in press

î-2á⃄2àef

î-3 Æ®'(.˜-™‚¬cm (20s)

7-048 土木学会第63回年次学術講演会(平成20年9月)

-96-

参照

関連したドキュメント

– High-performance, low power x86 multi-core CPU • High INT-FP, high cost performance, Highly reliable • Latest process technology – high performance and low power

 Reactor water level increased to above L-8 and the low quality two-phase flow removed energy equivalent to decay heat from the reactor by continued operation of RCIC due to loss

Journal of the Tokyo University of Marine Science

Journal of the Tokyo University of Marine Science

These results shows that ductility performance of RC pier specimens under low axial force condition has not been improved even if high strength materials (SD685, σ ck = 60N/mm 2 )

“Innovative Power Control for Ultra Low-Power and High-Performance System LSIs”, supported by Japan Science and Technology Agency as a CREST research program. One of

Abstract A high ductility performance of low-yield-strength steel shear panel damper (LYSPD) was developed in this research. The low cycle fatigue strength

Miura: Hydrogen Production from Ammonia Using Plasma Membrane Reactor, J. Sustainable Development of Energy, Water and Environment