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平成 21 年度CDM - Global Environment Centre Foundation (GEC)
Contents
1. RAJ LT COD 35 000 45 000ppm
2. 85
3. 2
4. E SEH EE ES
5. j 26 4 Sludge Blacket UASB Contact CA
6. 25 ttCO2
7. W 1 f 10 1 5 KI Ka CDM
8. 3 ARI 4 9 E SPC SPC Ri
9. 3 33 2 34 88 4 5 7 2518 1975 12 2 LE
10. 1 ILEBRE
11. 1984 90 ES KE e
12. 1 2
13. 3 2 2518 1975 48 0 Kn DU E DS eck Ee 125 W 7A 21 2551 2008 4 Paa E 1 H 11 ja E
14. BOT BOT 15 BOT SPC 4 3 CS
15. Q amp M O amp M Ee ZOO EGAT EE 2 4
16. 3 12 5125 H 7A 2551 2008 1 11 ul 4 5 21 4 21 1 21 2 4 6 7 5 6
17. RIDA E H
18. Dip Ae An BOT 52 HH 53 4 2 10 4 1 bjo D
19. COD COD CH4 CO2 21 CO2 KS DI
20. gt IPP KEN E
21. 76 EE 2000 80 2 CDM Zi BUS rer a EE TO e DL 22MW CER H 10
22. 1 B 2 TARO KENES TED EZ OMWEN DN A ERR EL E T
23. Z 14 2 1 2008 TEAN DHH D 100kg Mea Wang Sugar Industry Uttaradit Sugar Industry Thai Identity Kampangpetch Ruamphol Nakhonsawan Nakornphet Kaset Thai Thai Roong Ruang Industry Phisanulok 70 440 98 79 087 23 1 324 717 17 98 649
24. AM0039 Methane emissions reduction from organic wastewater and bioorganic solid waste using co composing ACM0014 Mitigation of greenhouse gas emissions from treatment of industrial wastewater 3 1 3 1 AM0039 ACM0014 1
25. PDD te d t 12 2 2 1 2 1 0 20
26. 2 2 1 1 1 2 275 16 EA 2 2 2008 6 hai Agro Energy hai Alcohol Khon Kaen haiNguan Ethanol hai Sugar Ethanol Ethanol is rathPathana Ratchburi Ethanol 3 4 5 ES Power upThip vo je je je je e 1 m BI N w Di om ZDR 2009 12 SN i PawnWiLai Inter Group Trading etro Green Kanlaseen etro Green Chaiyapoom haiRungRueng Energy Maesawd Clean Energy Total
27. a 2
28. 78 Sit TEZIE AT ELE GO Lo ur Ze H E HO el ADB GAS CMI ADB CER ADB
29. 125 W 7A 3 2551 2008 7 E 1 11 DR 3 GE 4
30. 2000 EE Qr EE EE T 2 1 0 E E 21 400 EE Er CE ON
31. 3 65 ADB ADB ADB ADB 2011
32. 1 1 2 3272 5 23 2518 1975 5 34 35 86 3 4
33. 2 15 IRR EE CER CER kr 2 9 2 a b 1 2
34. CDM E Lic 5 1 2009 1H 12 2009 CDM 1 13 E
35. T RORA CDM 7 E 3 CDM 2 1 0 CDM 3 1
36. a b CDM 3 2 ACM0
37. 90 iv PEsmuage LA y v CO HEI PEsc EE LT vi COo PErcy LT 4 3 ACM0014 4 5 E
38. 2008 11 MW MW SPP 40 1001 85 595 82 30 689 15 382 32 VSPP 344 1943 92 1352 51 116 557 63 576 63 J R 384 2945 77 1948 33 146 1246 78 958 95 4 476 233 4 476 233 SPP F 388 3421 77 2181 33 150 1722 78 1191 95 EPPO 2 5 VSPP 2008 12 MW MW 355 1755 55 1681 62 156 523 84 485 82 199 1231 71 1195 80 89 796 34 791 13 175 1602 73 1000 30 XbA 68 575 97 479 75 38 603 176 00 36 241 25 199 45 17 105 21 80 90 3 1 64 1 46 5 27 76 23 34 8 47 90 39 40 90 163 36 143 21 26 3 17 2 77 52 151 58 133 19 12
39. 200 000 90 000 MOU 2 8 2008 1 A 2005 3 781 921 27 161 276 85 2006 5 549 337 66 251 973 50 2007 5 428 272 79 237 130 91 2008 5 500 000 00 220 000 00 2 B kom CL 2005 1 162 667 71 53 556 98 2006 1 650 248 52 69 868 11 2007 1 830 725 75 82 571 94 2008 1 650 000 00 72 600 00 3 C kom CL 2005 1 526 640 75 67 515 16 2006 1 746 244 16 71
40. gt D 42 COD BOT 40
41. RIA 7 EE IEE 4 1 170km 1 10km
42. 4 2 IEE DIER MONRE ONEP 73 e e e Dohm H 1 e
43. 80 380 GE 4 1 EE 20 AI DORH Gi 2000 EK E z E
44. 3 1 31 2518 1975 46 46 44 90
45. eck 24 5125 H 7A 2551 2008 1 11 1 1 3 75 000 jel 70 EE 1 30 000 30 4 3 3 1 6 2 1 0
46. ADB 25 5 5 ADB EE
47. 80 H Return on Equity ROE 283 51 IRR 17 4 10 10 2 10 IRR 18 27 10
48. 2 1 5 5125 H 7A 2551 2008 1 11 Paa Al Ba 3E 2 4 1 5 2518 1975 7 2 RN Er EE 6 2518 1975 10 10 1
49. 2 10 K WAE Keen 30 1 897 000 0 44 1 630 000 9 7 350 000 0 2 105 000 0 1 150 000 0 3 750 000 2 1 5 000 2 33 d Lei 10MW 2 11 11 PPA IEE
50. 29 AT 4v 2 4 2 9 3 7 10
51. ED BOD COD 43 2 10 2008 2 2550 2007
52. 1 Lt 2002 200 1 ul LNG 2008 4 4 A KANZ ROFI IER GDRMAK MAEN 8 2005 2011 2005 H G G Gi F 2004 E 2011 Gv
53. g h E E E WML L TRIE 10 E 125 W 7A 10 2551 2008 1 11 i 5 Lo 6
54. PDD 8 A o DE 2 IEE FS
55. 211 Ce KN UFJ PDD 1 2009 9 2 2009 11 3 2010 1 Hi
56. 2007 SC GE 5 EE EE MOU
57. ce Dn SA
58. 4 14 IRR 30 355 000 US EFA 18 213 000 US H 12 142 000 US 81 5 383 000 US 5 1 128 000 US 100 000 US 85 000 US 64 944 000 kWh 0 08 UD kWh 8 1 0 009 UD kWh DNA CDM
59. ES E n SS Hi eck Ee 125 W 7A 2551 2008 1 11
60. CDM T CER E E
61. MCF D m 1 Procedure for the identification of he most plausible baseline scenario ECBr MWh yYear CDM 3 1 Procedure for the identification of the most plausible baseline scenario
62. 15 2518 1975 23 1 1 2 3 16 2518 1975 25 26 25 26 15 E EES 17 2518 1975 28
63. COD E H 1 24 m3 m3 m3 1900 1800 1 700 1 600 1 500 1 400 1 300 1 200 1 800 1700 F 1 600 F 1500 F 1400 F 1300 F en m3 COD ppm 10 2008 10 15 20 m3 COD ppm 1200 9 1800 1700 F 1600 F 1500 F 10 2009 4 20 140 1300 F COD ppm 1 1 1200 2 1 0 15 2009 5
64. 4 13 3 COD http www env go jp press file view php serial 13728 amp hou id 11242 1 0 85 PDD Tier1 Tier3 Tier1 f Tier2
65. 5125 H 7A 6 2551 2008 4 E 1 11 12 KEES 1 SCH H 3 1 ul Kli EN Y 8 2518 4 12 34 1 2 14
66. ZS JI E 88
67. 10 2009 15 6 3
68. 2 6 1 2 9 2 6 71 46 66 46 64 24 1 2 47 dS m N 0 6 P205 2 71 K20 0 08 2 7 2 7 1
69. QA QC g Wcop digm kg m COD E QA QC Tom K H QA QC MCF 67
70. 2 2 27 EE les l SS G 2 2
71. E L 3 1 3 4 4 1 a E 21 1 21 2 b be FIERO RKE O ER c d e f
72. 21 ff R 9 125 7A 2551 2008 1 11 el 5 6 7 4 5 18 2518 1975 4 22 1 2 EE
73. GE of Intend Lol EIA 1EE SDC CDM 10 22 10 9 4 E ZE TGO ONEP E E Sustainable Development Criteria SDC TGO TGO
74. 20 2518 1975 32 1 82 2 Sr ez 5125 H 7A 14 2551 2008 1 11 821 1 2 3 32 2 fai
75. 2 4 E 32 3 22 33 1 2518 1975 33 1 3372 1 2 15 5125 H 7A 2551 2008 1 11 832
76. WI W5 W2 E3 El W2 3 3 4 2 4 2 WI 7 OM
77. BE CO MWh Tool to calculate the emission factor for an electricity system FLbiogas digest 65 m biogas leaked m biogas produced IPCC 0 05 m biogas leakedm biogas produced EFAporA studse tN20 tN Stehfest E Bouwman AF
78. 7 4 5 H 22 22 1 e Ze HK H WORRIE EE F F 2 DEES 3 4 1
79. EN 11 EE A E E RG ee
80. PPA 1IEE PPA PRA 45 15 PPA 45 2 11 F Pr P
81. VSPP 7 By E PEA VSPP RD ADDER 0 30 THB kWh 2 9 2 9 VBPP ADDER 32 ADDERS i EEN gege THB kWh 1MW 0 50 1 00 7 1MW 0 30 1 00 7 1MW 0 50 1 00 7 1MW 0 30 1 00 7 MSW 2 50 1 00 7 3 50 1 00 50kW 1 50 1 50 10 50kW 1 50 1 50 10 c
82. 4 000 4 7271 72 2 43 400 CO E IT oz Kebab ell i HF Siem ci NA 4 DW HEIR 25 5125 H 7A 2551 2008 1 11 7273 22 23 23 1 60 2 1 60
83. DN 2518 lt 1975 gt
84. 1 2 3 4 5 21 2518 1975 38 33 1
85. PPA 91 1 PDD ACM0014 2 R S PDD WS 3 COD
86. E oul o Dp z z ez 27 5125 H 7A 2551 2008 1 11 41 2518 1975
87. COD CDM TEE Ee COD zH 7
88. EGpjy MWh year QA QC HGi GJ year QA QC Fpjefdigm Eprefmjagm Stay m7 month QA QC y
89. 29 33 41 43 45 1 2 2550 2007 2 3 2518 1975 3 4 se 5125 h 7A 2551 2008 1 11 3
90. E y e mi Ka 45 2 47d8 m 200 000ppm COD 10 dS m 6d8 m 29 7dS m COD 230 000ppm
91. e e Tool to calculate emission factor for an electricity system 4 3 H KH CH NO D r 0 E E CO CO2 NX CO
92. COD BOD
93. CDM CDM VSPP N CER CDM E CDM CDM E CDM CDM CDM MSW
94. 54 b 1 1 ACM0014 1 St a e 1m e e e
95. COD input value 4 4 5 6 2007 2008 7
96. CDM BOT PEA VSPP CDM
97. 2010 Ee 4 1 3 ek dE lk 4 13 1 1 5 COD BOD
98. 46 H 01 EH 2000 4 1ha E 2 1 13 2007 08 2010 4 1981 1 29
99. 2 4 2 5 2 5 1 SD ET 2 6 2 7 2 7 1 2 7 2 2 8 2 9 NEE EEN 2 10 1 2 10 2 2 10 3 2 10 44 PDD 3
100. 20 tCO2 2011 10MW 9 O 10MW 9 2
101. CDM LE 4 ACM0014 Mitigation of greenhouse gas emissions from treatment of industrial wastewater Version 3 1 4 1 4 1 ACM0014 2 1
102. fVin a CH4 CO CO2 O2 HN QA QC CH N FVuei m7h QA QC Ey Taare degrees C
103. CDM E RE CDM CDM ACM0014 A AM0039 AEREA 2 1 0 AM0039 ACM0014 AM0039 CDM EE
104. 20 4 E i VSPP ep E 7 7 7 IRR 8 35 7 i E i a H 2 12 3 840 240 A x16 7 920 330 x 24 1 80 2 90 3
105. I La H via gt ZE E 6 3 3 2518 1975 51 br EE 3 4 2518 1975 54 54 bt 51 F 60 HH 1 35
106. PEcny4 effuluent y COze t N PECH4 digest y COze IN CO gt e PEaagerAy CO gt e Pro CO2 COze PErc CO2 CO gt e ACM0014 PE CS E Tomaten T PEcn4 digesty PEnare y al P Estudge LA y Doc PErc 0 23 450 17 550 0 0 0 41 000 CO UI PEcH4 mucnty GWPcn4 x MCFp x Box 23 450 CO gt
107. 100 25km SPC 2011 a D 1 2 2006 9 2006 10 2007 2008 2 2008 12 2008
108. 77 1 2 CDM 3 CER EN 4 1 0 30 855 60 12 10 2 15 10
109. CDM CER 30 TGO F LH 1 3 3 CDM T4 2009 11 65 380 t COs 2012 S ES 28 CDM 91 CDM
110. f t Ei 1MW VSPP Wa 7 Eg 2008 1 VSPP PEA PPA 2 3 SPP ADDER ADDER 3 BE EIES 0 30 1 00 0 30 1 00 MSW 2 50 1 00 3 50 1 00 3 50 1 50 10 8 50 1 50 10 18 2 4
111. E H 7 5125 H 7A 2551 2008 1 11 4 10 16 e 1 2 3 4 5 6 7 1 ul 1 5 F 2 3 D ou w w 2 2 28 2518 1975 16
112. 2518 1975 180 39 2518 1975 1 40
113. ACM0014 AM0039 AMO039 90 000 JE Jb 1 1 1 160km 10km 9 597kmz
114. VSPP MOU EGAT Pre F S 10MW
115. 10MW 8MW L KEZIT
116. 28 60 Er LI DU 13 5125 h 7A 2551 k Paa 2008 1 11 1 E 18
117. 57 CH NO CO CH NO CH E O Es G ii
118. CDM TGO q BCgr l MZ KYRR NA Do CO Gii 31 419 CO gt e EJ CO BEncy H 4 4 4 7 ai N 0 CO gt e 4 7 E 199 058 CO 2011 2012 2013 2014
119. E 1975 41 EKEN LHE lil 30 2518 1975 42 1 5 43 44 42 1 KEE EE
120. 60 25 830 2 7 Late 2 7 1 200 0002 1 1600m3 330 528 000 m3 140 200 000t H 1 2 400 000 m3 1t 1kg t 1t 5kg t 240 62 9 29 amp
121. EE 5 6 70C 50 60 50 5
122. 22 23 2871 2 4 000 20 000 61 2171 1 4 000 20 000 21 2 1 62 24 1 25 42 4 000 63 80 1 5 154 20 2 15 1 5 64 30 1
123. 73 E 90 000t 2 8 2 1 0 al 1 200 000 Y 830 1 600 m3
124. 4 3 PMMA 1 2 3 4 4 20 5125 H 7A 2551 2008 1 11 1 2
125. P 1 4 10 1 8 24 Lid 1 34 2 30 102 9 6 0 32 0 17 0 78 0 30 0 30 0 12 0 10 0 04 0 33 0 10 lt 10 0 12 0 05 0 20 0 10 1 5 1995 5 H 4 11 bett ppm gt 500 MW 320 320 20 60 300 500 MW 450 450 20 60 lt 200 MW 640 640 20 60 ppm 330 180 120 200 mgm 120 120 60 120 74
126. 2010 ISO9001 23 2 6 1 1 COD PH B
127. 30 e 1 2 ACM0014 1 WI W2 W3 W4 W5 55 El E2 E3 2
128. EGAT SPP VSPP 4 6 GWh a CCO2 b EGAT 1 631 IPP 34 491 15 170 168 SPP 2 136 VSPP 64 G eh 38 322 15 170 168 Ko b a 1000 0 3959 The estimation of emission factor for an electricity system in Thailand 2007 0 3716kgCOzkWh Si 0 5057kgCOzkWh 0 4838kgCOzIWh Do ECgr EGpyy x EFBLELy 0 64 944 x 0 4838 62
129. 28 2518 4 E 1975 4 E 40 40 5 o 5 19 125 7A 2551 2008 1 11 LEL 29 JERES Langg 41
130. 3 10 12 40 8 000 8 m Hf e 9 J 23 5125 H 7A 2551 2008 1 11 65 80 1 5 6 7 63 2 64
131. HG dAn Capacity Feedstock Main Feedstock Commencing Remark I d Raw Material Date 25 000 Molasses Cassava Oct 03 an 05 Aug 04 an 06 Aug 05 Apr 07 un 07 an 08 Dec 06 Mar 08 Mar 08 an 09 an 09 um Molasses Molasses 200 000 Molasses wee 150 000 Molasses olasses 130 000 Fresh Cassavar Cassava ren Cassava Molasses olasses Molasses 200 000 Molasses sugarcane juice 200 000 Molasses sugarcane juice olasses M M olasses olasses 200 000 Molasses Molasses 120 000 Molasses baggase Mo 150 000 Cassava Molasses Cassava 150 000 Molasses Cassava asses 200 000 Sugarcane Juice 200 000 Cassava Cassava 2 275 000 B BE 1 E EE EE fk 1 E 1 13 4 H 8 DEEG 1 4
132. HK 9 EZ W ba 1 8 1 EDE Gi I 2001 9 5 EE E CDM 7
133. 180 12 88 1 60 2 1
134. Type N 500 QA QC 700 70 4 5 3 4 1 CDM ZAD HEH 4 6 H PLANT MANAGER PRODUCTION BIOGAS PLANT SUPERVISOR GENSET BOILER PLANT SUPERVISOR LAB STAFF SHIFT 1 2 3 M amp E MAINTENANCE STAFF 4
135. Gy v NH YI ek CO gt CO2 NO CO LE Es CH D r 0 E E N20 4 2 H CDM 58 EA 4 4
136. Wer _ Ke S rie _ 89 5 CDM elt
137. GT A i Ne A 12 000 TCD E 300 400 80 000TCD 5 000 22 2 5 2 54 46 2004 WE 1 20
138. VSPP 2 1 0 Ee Ah MA INS E H H T J u E H RI E SH A
139. Le Tier3 Teir2 Ki 4 5 0 21 tCOD m 45 000 m month kE Op 4 4 COD 0 21 tCOD m 45 000 m month COD 4 Geier 90 10 x 70 COD 97 COD 86 J45 COD E Vi cop y BEcop y PEcop y ERcop COD tCOD year BEcop y
140. GG AEN LEET EE E
141. 4 E Ju O 1 1 4 3 BEc4 208 639 COzyr 1 2 4 3 BEgry 31 419 COz yr 1 3 90 000 Ba 3 BEcrswy w U D OW Po 1 OX 16 12 F DOCr MCF WC SI Wix DOCee TT ei
142. f IS09001 E MM E E
143. 10MW j 14 TK I bg 3 251MW ES 838MW 2011 VSPP ADDER VSPP 4 VSPP VSPP E S H
144. 25 500 000 450 000 400 000 350 000 300 000 250 000 200 000 150 000 100 000 50 000 0 500 000 450 000 400 000 350 000 300 000 250 000 200 000 150 000 100 000 50 000 0 500 000 450 000 400 000 350 000 300 000 250 000 200 000 150 000 100 000 50 000 0 ppm ppm ppm X 2 1 2008 2009 1 600 1 700m3 COD 150 000 200 000ppm 250 000ppm
145. T 4 er A 18 ul 2518 4 16 F aJ REZSIT 1 J y ul I5 d Kli 2 3 E RY UL au ir oi EH Ou z A ul 1 1 4 ir rn d KI 5 1 o EE 5
146. 6 TGO CDM Letter of Approval LoA 5 wm 1 2 5 DNA 1 2 CDM SDC 1 S Ex GHG
147. HJ W R 17 E EGAT 2007 120 6 082MW SPP Use for producing Ascetic Acid Produce for Exporting 95 Purity Produced from Cassava in Oct 09 May 09 Production terminated until Oct 09 May 09 SE Ed BT P KEN t ai Ei 1 421MW Very Small Power Producers VSPP GEN 2002 5 DEES d ECZA
148. Ka 28 4 E
149. H 208 639 208 639 208 639 208 639 H 41 000 41 000 41 000 41 000 0 0 0 0 H 31 419 31 419 31 419 31 419 H 0 0 0 0 0 0 0 0 Ge 199 058 199 058 199 058 199 058 CO CO CO CO 4 5 PDD PDD ZS 4 5 1 63
150. 42 KE EZAN 1 1 10 000 2 1 5 000 3 1 2 500 4 1 500 5 1 5 000 6 1 1 000 7 1 500 8 1 100 9 1 10 000 1 0 1 5 000 1 1 1 2 500 1 2 1 100 1 3
151. m 68 by S WCOD effl dig m S WCOD effl lag m tCOD m COD COD QA QC Wysudgey t N t sludge e YISA QA QC
152. Il Et E CDM 20 E 10MW EE
153. 2 1 0 3 55 75 Upflow Anaerobic FY y F Se Dh SEKR Anaerobic 10MW 1MW EE v
154. 90 5 1 5 2 A MER D I ABITO D I X CH Er Cer EOR Ki
155. W1 B2 ACM0014 3 4 W1 E2 ACM0014 e e e e e
156. CDM 3 1 47 3 2 48 3 3 51 3 4 52 3 5 ee 52 4 CDM 4 1 54 4 2 58 4 3 60 4 4 63 4 5 F 1 63 4 5 1 4 5 2 4 5 3 4 6 een 71 4 7 ee 73 4 8 o eee e 76 ee EO e on r ir ee de 76 4 10 NEA RE EE EE J
157. 2 5 2 5 1 WR 1967 3 000 TCD 5 000 TCD 1988 8 000 TCD 45 000TCD
158. CO 4 5 Bou CO gt e Do CO CO gt e 60 Bac CO CO gt e BE BEy BEcy4 cb Do F Doc 208 639 31 419 0 240 058 CO2 4 II BEcr a Methane Conversion Factor MCF Method b Organic Removal Ratio ORR Method a
159. 12 5 x 12 5 mm 35 5 5mm 5 5 8 5 20 1 6 dS m N 1 0 P205 0 5 K20 0 5 DL 44 10 80 50 mg kg 5 mg kg 300 mg kg 500 mg kg 500 mg kg 2 mg kg 2551 2008
160. CDM Crown Standard i ii SDC j 4 ADR CER 1 fi CDM 2010 CDM BAE CHV TGO CDM 1 Ex 3 4 TGO
161. 2009 3 H E 3 h 2008 1 99
162. 2011 2003 RPS 5 2007 SPP Small Power Producers VSPP Very Small Power Producers 10MW VSPP EGAT 0 3 kWh 1 7kWh Jee 2007 CDM 6 DNA Thailand Greenhouse Gas Management Organization TGO EE TGO
163. 9 1 0 1 1 1 2 24 2518 1975 36 1 86 2 86 1 35 Ka 17 5125 H 7A 2551 2008 1 11 Or Sc ONE EN ENKE CH 2
164. DNH ier1 4 17 Tieri COD 90 5 4 19 Tier1
165. TIJPCC PDD ACM0014 4 8 DN e BER GOD COD COD COD 10 COD
166. 1 1 4 1 15 1 300 28 125 7A 2551 2008 1 11 2518 1975 gt EE
167. 2 1 4 72 4 20 2 30 1 5 6 7 60 63 1 64 1 66 1 67 1 71 1 72 1 60 63 1 64 1 66 1 67 1 71 1 72 1 1 4 72 5 72 2
168. 3 4 92 93 E 2 2550 2007 sek 5125 H 7A 2551 2008 1 11 2 2550 2007 ILIE 2550 1975 12 30 624 ij
169. Vu 2 3 4 2009 11 LoA 91 TGO LoA CDM LoA CDM SE D N H FE UTE O A F TGO
170. 1 30 2 3 4 5 6 16 5125 H 7A 2551 2008
171. 2 1 2
172. PEco gt Tansy K Nvehicles i y xDist xFC xNCVi xEEFcoi 7 10 000 x 25km x 0 5L km x 0 84kg L 1 000 000 kt x 43TJkt x 74 1tCO TJ 300 tCOz yr 2 4 a a PE PE PECH4 effuluenty PECH4 digest y PEN20 Comp y PEC02 Trans y 23 450 17 550 1 200 300 0 51 3 4 3 2 42 500 tCO2 yr i 247 058 tCOs 3 2 CDM 2011 2012 2013 2014 208 639 208 639 208 639 208 639 31 419 31 419 31 419 31 419
173. RE 4 4 2518 1975 F 5 lt 5 1 1 E 29 1 1 1 10 4
174. 6 G A G2011 Ee 4 1 CES 1 4 1 1 12 7 9 2 1 1 2005 2011 H IS 21 8 9 14 4 2 1992 Energy Conservation Promote Act 2002 2011 10 4
175. Fbiogas y mr year QA QC PDD WCH4 biogas y kgCH4m 69 959 QA QC
176. 0 2 1 1
177. 0 9 f 0 OX 0 GWPcr4 21 F 0 5 DOCr 0 5 MCF 0 8 Wj x 90 000 DOC 0 15 kj 0 4 BEcr4sw 49 500 tCO2 yr 7 BE BE BEcp4 y BErr BEcr4 swy 208 639 31 419 49 500 289 558 tCO2 yr 50 3 3 2 1 4 2 PEcuetuluenty 23 450 tCO2 yr PEcm4 aset al 17 550 tCO2 yr 41 000 tCO2 yr 2 2 N2O PEnz0 comp y Qcomposty xBFNo Com xGWP so 90 000tyr x 0 043kgxpo t x 310kgCO2 kgtoo 1 000 1 200 tCO2 yr 2 3
178. 1 1 5 7 132 491 2 2 14 938 1 1 397 500 N20 1 1 142 402 17 36 38 91 59 078 CDM 2007 CER 2 CER 1 i CDM CDM Hi 1 4 2 1 0
179. COD COD a MCF BEcr SC GWPcy4 x MCFsr x Bo x CODer 21 x 0 596 x 0 21 x 79 380 208 639 CO gt e ii CO BEL 10MW 18 10MW x 1 18 8 2MW 330 x24 7 920 BGr 64 9444MWh
180. 1995 5 H 4 12 dB A 11 24 70 1997 3 4 13 1 pH 5 5 9 0 pH 2 TDS lt 3 000 mg l 1 103 105 3 lt 50 mg l 4 lt 40C 5 DR 6 lt 1 mg 7 lt 0 2 mg l 8 lt 5 mg l 9 lt 1 mell 10 lt 1 mgl 11 lt mg l 12 13 BOD lt 20 mg l 5 20 14 TKN lt 100 mg l
181. 6d8 m Electric Conductivity EC NH4 NOs 1 S m 8 cm EC EC 20 40m8S m EC 80mS m
182. Gii TA ALF D HEH E Ee PBcH4 emuiuenty J COD am as CPDpiem is 21 x 0 6699 x 0 21 x 11 340 3 402 PEc ge Dou aisesty H 17 550 ki CO 59 EH EX Fpiogas y FLbiogas digest WCH4 biogas y X GWPcn4 42 443 280 x 0 05 x0 3937 x 21 x 0 001 Oo PEnarey
183. Pa ra 1 ECH 1 1 2 000 10 3 71 30 5 1 5 4 20 3 15 72 830 5 6 3 2 12
184. n o Dez ai ahkam LS 84 34 E 1975 14 50 50 3 i 1 9 15 o 2518 1 1 2 3 Ai 1975 15
185. 49 500 49 500 49 500 49 500 41 000 41 000 41 000 41 000 1 200 1 200 1 200 1 200 300 300 300 300 0 0 0 0 247 058 t 247 058 t 247 058 t 247 058 t CO2 CO2 CO2 CO2 3 5 1 LC Fum og bi Eu DOTEA E E B i
186. CDM TEE PDD E Gold Standard Foundation SDC G Es DERE iv CER F HS LoA H 20 30 SD TGO 2009 4 E1 CDM See 2022 20
187. CER CMI 2012 CER 25 50 APCE ADB v CMI ADB ADB CDM E A FIK FR E S PDD CER Ae CER CRIL ADB ADB CMI 2013 CRR ADB Ea
188. 815 224 CCO0 1 HFE 1 1 3 CDM 2009 11 CDM 2012 KESS F CERs 17 59 788 5 625 752 714 546 1 3 85 690 1 965 827 3 3 23 869 346 809 2 82 897 727 837 N20 1 142 402 504 719 1 EFB 1 106 592 422 929 ADE 1 70 772 497 537 100 678 1 28 65 380 10 026 718 815 224 SC 1 1 4 CDM 2009 11 2007 2008 2009 amp F i 9 24 21 54 47 569 6 18 51 584 4 4 8 47 701
189. COD PEcop y COD HEH COD Eat BEcop y CODeonsi reament 1 Recon pl QBLy CODeonsttreatment COD Bonn COD Qgry F RT COD PEcop y CODonst treatment 1 a Ronn Op CODeonst ureatment COD Rcopm COD Du Opry 4 18 COD COD COD siae RcopBL Qasry 0 21 tCOD i 70 45 000 m month 12 months BEcop y 0 21 1 0 7 45 000 12 34 020 tCOD COD CODE e Ronn Uni 0 21 tCOD m 97 45 000 m month 12 months PEcop y 0 21 1 0 97 45 000 12 3 402 COD BEcop y PEcop y 34 020 COD 3 402 COD 87 ERcop y 34 020 tCOD 3 402 tCOD 30 618 tCOD 4 13 4
190. W3 AEDO JU SEX OM W4 E 1 EN 1 1 CDM WS W4 H
191. 36 cb 56 11 2518 1975 2518 Dm Ne VK UI H E 55 1975 9 DE jf rh 6 M
192. KR 4 a b c d e Hz Zi Ek 1 2 2518 1975 3 20 v 10
193. 2009 0 4 3 2009 2010 3 2009 9 2010 2009 2010 3 0 2009 11 gt H 2009 4 L
194. 3 4 5 6 7 8 9 10 11 36 2 35 1 2 3 4 5 6 7 8 9 1 0
195. 4 1975 18 ep E 8 125 7A 2551 2008 1 11 5 1 cb 3 20 1 2 21 1 2 3 E
196. H SU TGO 20 01 O 25 E 28 mum F 10 026 718 t CO2 CER E 3 CDM F 1 3
197. 2006 2008 2551 2008 fai H bf 2551 2008 SS na Zn E CH 2 16
198. CODi COD 0 89 X B tCH4COD COD 4 2006 IPCC IPCC 0 2SkgCH4kgCOD 0 21tCH4tCOD B 0 21kgCH4kgCOD fa S 64 5m 70 1 5m 50 1 0
199. Teg ez
200. 1 1 2 AL AMO0 EEr 2 39 ver 2 EA 1 49 E Tool to calculate the emission factor for an electricity system
201. 27 2518 4 E 1975 4 E 1975 38 1 E 39 39 1 36 36 1 36 2 38 2 3 4 5 6 3
202. 99 85 95 3 3MW MNO MM BEE COD BOD 95 0 96 5 99 8 200 00009 2010 3
203. I Dl 44 2 22 5125 H 7A 2551 2008 1 11 57 12 1 5 20 58 14 84 5 7 5 59 20 1 26 RENIE 27 48 4 000 20 000 60 20 21 2 8 000 40 000
204. 1 2 84 4 13 2 201 Ei 1 0 1 uh CDM 4 17 4 17 CDM
205. DNA 2009 1 26 61 Di an electricity system l gt ba The estimation of emission factor for an electricity system in Thailand 2007 Tool to calculate the emission factor for Ee UU Bh OSKAR GEREEST et CDM it H 0 5057kgCOzkWh EGAT SPP VSPP IPP
206. 2012 CER 25 50 FCF CDM CER CER ADB 2012 100 000 t CO2 5 4 1 1 30
207. 10 Continuous Stirred Tank Reactor CSTR Ein CSTR UASB E 55 E UASB 5 210Nm3h 64 944MWh 1 24 330 330 2 7 2
208. 15 COD lt 120 mg l 1 lt 5 mg l 2 lt 0 25 mg l 3 lt 0 75 mg l 4 lt 2 mg l 5 lt 0 03 mg l 6 lt 1 mg 7 lt 0 2 mg l 75 8 lt 1 mg 9 lt 5 mg l 10 lt 0 25 mg l 11 lt 0 02 mg H 12 lt 0 005 mei 1996 1 4 8 CDM 2
209. 95 A IS LS 90 000 200 000t x0 45 kW 10 000 kWh 79 200 000 10 000kW x 7920 18 kW 8 500 10 000kW x 1 0 15 kWh 67 320 000 8 500kWx 7920 CERs GO 247 000 A t 10 000 000 100 000t 0 02 LS 200 000 10 000 000 x 0 02 0 45 LS 650 U S 307 000 1 A I 13 32 A A E 1000USD 113 5 1000USD 50 bon 1 1000USD 201 5 59 1000USD 75 596 50 1 1000USD 3 43 10 000THB A O 0 3 1 1000USD 5 14 15 000THB A O 8 33 1
210. 2001 2002 8 2005 06 2003 2005 dn Lo
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255. E De 78 4 11 3 79 4 12 84 4 13 0 84 4 13 1 4 13 2 4 13 3 COD H l 4 13 4 5 90 2 2550 4 E 2007 BOD Biological Oxygen Demand CER Certified Emission Reductions COD Chemical Oxygen Demand EC Electric Conductivity EGAT Electricity Generating Authority of Thailand IEE Initial Environmental Evaluation LoA Letter of Approval CDM Lol Letter of Intend CDM ONEP Office of Natural Resources
256. IK KK Kg AZZI KT INNN siBe 4 IGOR HA out 1 Eee EL9 L 6g0 EL PEL BZ 0 L E89 LL 99 OL Ge 0L SEIL Z66 0L SES OU g600L 699 6 e9 0L 660 EL g99 L Leg L L828 L DEEIL 690 LL ELZ0L Ver ee OS 0004 R S R R R R R 0 0 0 0 0 0 0 0 ES Oe 000 Saz eZr9 ore s ss9 s 09 Leer eoe 680 yg85 mei 66p Jee eZg 06rU Jor yee U 0 0 0 0 0 0 0 0 asn 000 Kaes 8660Z gzS 6L COD 8871 TI 8ZE9L ger 866 OH DH See seet S20 2L Coeur Cour een 360 6L zech ECH LZ28 LL Opt LL een glZ0L asn 000 ELAES 341514 HHl 14T EZA ZZA TZA OZA D SLL A ITA SL EL Dn LA DC 5A BA TA E SA YA EL ZA TA an SEL JOEL ZLUEL POEEL 99 L PELUZL 2t9 LL HL SLLOL 82 0L 6LS LL 00 LL 95 OL PLUDL 89 6 g870L 260 EL Eb9 ZL 0s 9 8LY G 0s9 t 868 E ELZ S AS 000L 0V9 0LT4hk 4143H kb RS gt gt S gt S 68 Z0 19 SCC S Hien 000 EE S lt EG EG EG EG te R WSn 000 gyp 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 Err Wen 0001 gees 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 9757 WS oo ks 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 90 9z IAqSn 0o00 eg ENPA 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 ostor WaSn000 Raus EIN oeg s99 9 Dor Jeer oer 680 KIK 895 66r E eet D Omer Dr TEE gt S S gt S E s Was 000 Ke s R S S S 5 amp 3 S R x S ec 3 EL DEI JUL
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260. and Environment Policy and Planning PEA Provincial Electricity Authority PTT PTT Public Company Limited SPP Small Power Producers TGO Thai Greenhouse Gas Management Organization VSPP Very Small Power Producers 1 1 1 1 10MW P8
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