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鹿児島県大島紬技術指導センター 昭和63年度 業務報告書
Contents
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6. 8
7. TB 2
8. 1 5 gp
9. 7 1 4 2
10. 2 2 1 VG P10 PC TV471 X 68000 CZ 600D0 DT 3500 JX 450 Co GX P1 1 WM S050 1 57 1
11. 68
12. 1 1 0 1 0
13. C 1 IC 1
14. RO NTR 7250
15. 20 10 0 30 60 12 3 2 K S 11 7 4 1 pH 12 1 2
16. 63 8 23 63 8 26 S 63 2 63 8 31 RCC HP CAD YHP 63 9 17 24 63 9 22 NHK 63 10 1 15 21 11 4
17. 2 5 b 1 5 a
18. G a AG p 3 1 3 b c d
19. 20 ppm 50ppm 1 20cm 1 80 Torr 1 30
20. 55 13 4 1
21. Cc d 4 Ges G9 AG GVs G7 K D D exp G a RT D AG G Gs GA GT 106
22. 8 2 2 74 2 2 3 5 5 NaO D 1 6 iC p 5 Na O pH 7 0 2 PH8 T0560 pH9 2 5 3 pH Pp HOR TBA M 7E 200 20 280nm Lowenthal 4 Dp HH DH5 5
23. 15 40 2 6 1 6 1 1 1 B 50ppm 6 Run 3 2 Ron 4 4 1 2 1 10 10 TC 1800 1 3
24. 1 109 lt O ER PS C gt SS Q 3 2 a b d S0 CH CH TNH 0 H NN 2 H 2 2 3 NN 9 0 se Se a b c d 3 110 G s Go A AG G Gp 4 11 c b a
25. 3 1989 12
26. 1 0 kg cW 1 0 kg cW 8 0 0 2m min 0 4 0m min 0 4 0m min
27. 3 0 3 0 17 2 1 0 1 0 1 0
28. J C 1 2 3 4 4 6 3 34 4
29. 3 CG 3
30. 1 8 mm 4 65 1 mm 3 2 0 1 0 0 5 6 2
31. 200 1 K S 5 4 4 1 100 1 0 SK S pH pH 2 0 p 2 9 00 2 0 4 0 g 6 pH 12 pH 12 9 4 3 0 30 C 5 1 p 1 0 pH 5 p H 7 pH 6 3 3 5 8 pH 6 p
32. PIXEL 88 5 P47 87 87 88 71 6 1
33. 103 IN 80 Torr 48 16 hr
34. 2 2 1 Stobilanthes Cusia O Kuntze 1 5 0 cm 3 0g g 2500m 0 g g 2500m 1 SI GMA 2 2 2 2 1
35. 3 2 1 3 3 6 1 0n m 6 60nm 6 10nm 1 4 0 5 0 ppm y 0 036x 0 0095 0 999 0 1 5 ppm
36. 90 ky amp RO 2 RO NTR 7250 RO NTR 7410 NTR 7410 NTR 7250 NTR 7250 1 1 1 4
37. WCHK 54 4 2 WH CH 830 40 CH O 1 50 V in CH SW
38. 2 8 15 K
39. Re OO 6 RE Rr 0 5 7 0 5 R eo O 8 Re 0 24 0 24 3 3 17 6m m 4 0cmO L 4 4 1 1 8 4
40. 4 4 1 R 0 1 3 3 RO NTR 7250 R O 1 1 1 3 5 1 2
41. A 1 PH h Cg 0 066 10 7 222 55 60 1 2 063 11 2 22 2 2 31 054 8 6 25 7 3 4 040 8 5 23 7 4 5 030 7 5 21 1 5 6 024 6 7 18 4 65 7 0 060 120 30 1 1 2 0 66 13 5 31 2 2 31 053 14 2 28 7 3 4 040 81 200 4 5 029 6 8 15 2 5 6 026 5 1 11 9 75 80 0 1 0 64 15 3 30 0 1 2 0 81 10 1 225 2 3 058 9 3 20 7 3 4 0 52 68 13 7 4 5 040 7 2 126 5 6 0 34 5 0 92 8 5 9 0 0 0 54 22 3 39 7 1 2 092 18 1 37 9 2 3 0 62 18 8 37 0 3 4 019 15 B 30 6 4 5 090 11 9 23 4 5 6 073 8 9 17 2 15 hr 1 2 75
42. 2 3 No1 No4 Nol2 No2 No3 No13 41 50 No 5 11 Nol4 No1 2 No4 No3 No5 6 51 60 No 9 11 No14 No 7 8 12 13 2 4 1 30 40 WD 41 50 1 3 51 60 2 5 0 SO 1 W H W 3 1 3 3 3 1 52 1 1 RES 3 2 bh No 1 No 11 12 14 No 6 7 9 10 13 No4 No8 No1 No4 No 2 3 5 No 6 7 8 9 10 No 11 14 No1 No2 No12 No13 No 3 No 6 7 8 9 10 No 11 14 No 4 5 No1 No2 No 7 8 9 10 12 No13
43. 2 0 1 mg D 3 0 0 0ci 9 0 0 5
44. 3 ei
45. F G C NO 1 6 LTD 2 A B 2 4 C D E F 1 4 5 7 cm 3
46. 15 0 5 2 6 40 1 6 4 0602Ahr wood 0 5 0 982 hr kg Wood 2 7 84
47. 8 mm 5 2 60 4 1 2 RUW 5 RO UF UF NN 93 F 105 1987 1 1 2 7 2 8 3 2 gt
48. 2 2 C 2 105
49. 24 L lt pe 1 pH 6 0 30 30 C 1 100 300g 6 Lp 1 2 1 DO pH 4 4 1 4 1 2 0 0 C 7 5 80 C 1 1 0 kg ci 0 4 0m min 1 h 5 0 5 C
50. K 6 3 2 A B C D E F G 2 1 A 27 oo mm Rw MW nn Rw ow x wy 18 19 20 No 2 Na 1 7 x 1 4 1 4 3 1 3 2 1 7 1 6
51. Myricitrin iC 87 3 D _ 2 7 3 3 4 3 4 3 4 4 5 4 5 5 5 5 5 8 5 4 5 3 5 15 8 5 253 a 475 455 4 4 2 5 3 10 0YR 06YR 5YR 38Z50 43 23238 1 1973
52. 1 SD 2 2 1 1 4 2 2 2 2 1
53. RGB 1 3 pH pH HORI BA M 7E 200 20 1 4 JIS LO842 72 85 1 JIS LO849 71 A 1 JIS LO844 3 1 JIS LO845 75 A JIS LO848 78 2 2 1 K 2 0 2
54. 20m 70 80 C 45 200mMWP 1 1 Green 2 2 4 GA 3 2 2
55. 3 a 1 b 8 0 1 c d c 1 4 0 d 1 0 a b 5 1 1
56. p CC D 2 3 A 2 D pH5 5 6 0 pH 0 3 4 5 6 8 Time hr pH 9 2 i Di DE mt pS 3 2 1 D 400 mm 700nm 2 KS
57. RGB 1 3 10 0 m 06 Y i T 0 0 0 0 05 10 15 20 0 05 10 15 20 Time Hri Time fr D 1 D 2 O R G A B O R D G A B 15 3 KC 2
58. 100 2 10gg hr 50Torr 105 min 2 min 125 8 40kg hr 7kg c i 3602 hr 6 a dd si 102 2 Cyclic Sequential 8 6 2 1 3 7 3 8 31g kg wood 11 61 g kg wood 9 55 g kg wood
59. 1 P 20 1981 2 22 Na 2 1972 93 3 2 A Pp 2 3 D H 9 D 7 2 K J 1
60. iC 2ppm 2 10ppm 5 50ppm 6 6 11 6 g kg wood 2 8 9 g kg wood
61. 51 60 4 3 oS oo Ey S
62. 5 300g 6 PP p H 1 2 2 p H 4 p H 4 2 g 5 0 4 245 2 4 2 0 5 0 2 0 0 C 0 35 0 2 WAmin 1 0 kg c 9 0 5 C 3 3 5 0
63. Na No 9 No 1 No 1 0274 brn No12 No 6 Na 9 ET Dp 1 1 1 soft Warm 9 coo1 hard EN 1 2 EN A ER aa em
64. 2 a 1 D 30g 2500m 300T m 6 0 2 30g 2500m 300T m 6 0 8 0 3 yYyJyYf 60 4 5
65. 2 2 S D 1 6 2 3 6 3 3 1 46 3 15 10 05 0 05 10 15 3 2 4 NB rr ene ne me 1 No12
66. 4 6 0 P80 8 4 6 2 P57 6 3 1
67. K 7 0 2 3 4 OH OV 0 _ OH 0 OH HO Gtc 0 0H oH oH 0H 7 0 107
68. 7 cm H 1 16 hr 10 ppm 20cm 80Torr 98 3 1 22 50 pm 2 30 10 ppm 4 13
69. NTR 7250 55 NTR 7410 15 P WE NTR 7250 85 NTR 7410 25 NTR 7410 NTR 7250 L 250 m6 F 1 NTR 74 10 NTR 7250 2 2 NTR 7410 F 2 NTR 7250 NTR 7410 3170 2 2910 90 S com 1018 16 682 151 99 9 95 3 97 6 69 0 gg d 1 48 1 59 PWFE b 2 71 10 53 PWF c 230 260 a b 0 55 0 15 c b 0 85 0 25 2 5 20 Ee 1 5 x 1 0 0 5 0 0 0 02 0 04 0 06 0 Permeate mW m F 1 NTR 7250 NTR 7410
70. 6 8 10 mn 70 150 200 55 52 0 3 0 33 pH p H 12 1 6 R UW 5 NTU 35100 P18B 076 MAX10kg f f NTR 7250 S 2 17 MAX30ggf lt 50kgf Aj x152 min 2 2kw UF 2 10kgf28 RO 10 50kgf er 9
71. 14 19 20 24 25 29 220 264 63
72. 8 mm 5 kg 2 62 KM 72F 2 2 80 Torr iC 7 2 2 3 1 60 KM 72F 50 ppm 8 2 30g 1 1
73. C 60 2 3 5 S 2 2 1 8 23 S 2 1 24 7 8 wc lt 3 S 2 10 600 2 30 RO RO 3 NTR 7250
74. 8 0 40m min 0 45m Amin 2 43 8 63 6 37 72 5 78 4 72 3 CC min 1 10 8 13 4 C 5 7 5 2 7 5 2 5009 1 2 0 0 C 2 7 5 8 0 C 3 1 0 kg cWw 4 0 4 0m min 1 1 2 6 100g 105 2 6 260m 1 0 09 1 5 23 TLC 2 3 1 0 17
75. 9 5 C 1 0 6 0 10 3 0 C 10 1 0 0 5mm 2 2 2 1 1 0 30 C 2N 1 0 2 0g 8 7 0 C 1 5 5
76. Rf 0 4 3 Rf 5 2 8 0nm 2 8 2nm 2 8 8nm 3 2 3nm 2 8 2nm max 280nm max 282nm 2 08 Rs 0 4 3 04 OO 9 300 200 4 nm 5 95 C 20
77. 1 2 3 Na 2 4 5 6 G1 7 8 3 9 10 Nal 3 31 1 1 Na 1 1 2 1 4 1 3 1 4 1 4 x 1 4 15 7X 16 7X 2 6 3 7 1 15 1 1 1 3 520 40cw 1 2 1 4 3 1 4 4 1 4 5 14
78. 2 1 1 1 3 CastanopsiSs cuspidata var Sieboldii Myrica rubra Schima Wallichii Korth 8 1 2 2 5 gg Cy 60 8
79. 5 7 1 14 4 2 6 8 3 3 0 C gq 2K2S KS 200 14 2 200 14 1 150 11 2 150 11 9 110 18
80. RE I aw 2 2 3 3 2 3 2 3 1 45 1 SD 3 2 1 0 1 2 3 2 3 2
81. No 4 1 3 1 No 3 5 6 9 No 11 14 2 2 53 3 3 3 3 r 3 4 ee 3 5 4 4 1 CH S WK
82. 30 C 5 6 0 i gt PH 12 1 0 3 0 5 1
83. IC D H 7 4 pH Da 2 3 DH 9 1 2 D H 7
84. pH 6 5 3 0 6 0 16 Ei 3 0 1 1 3 0 C 8 0 C 30 C 40 C
85. I 1 8 A 3 4 5 3 5 5 5 5 B 4 4 3 5 5 5 C13 4 3 4 1 4 4 5 5 5 5 D 4 5 5 5 Wy A 2 5 5 5 B 5 5 5 5 C 5 5 5 5 D 5 5 5 5 A 5 5 5 B 5 5 5 C 5 5 5 D 5 5 5 A 5 5 5 lolol elolonlon lolo wilalalaiw 2 3 4 5
86. 48 1 3 No1 No45 No2 3 Na6 10 No11 13 No14 No 1 2 No 3 11 g No 12 13 No14 1 4 G 2 3 5 3 vr C S S O 1 H W C O 1 a 49 2 2 1 Soft Wa ID 2 2 hard 10 10 25 ee 5 1 6 0 3 0 4 0
87. Maqnetic Stirrer Test cell Permeate RO UF NITTO C70 B E 1 E 1 Cig CO 20 240 33 5 15 25 7 32 3 15 27 6 31 5 NTR 7250 NTR 729HF NTR 739 HF E 2 E 2 E 3 3 mg S Cm NTR 7250 3910 2 0 1200 28 NTR 729HF 3430 3 2 1080 36 NTR 739HF 3620 1 3 1130 16 E 3 Cg d NFR 7250 1 50 99 9 96 4 NTR 729HF 0 83 99 9 95 0 NTR 739HF 0 84 99 9 97 9 89 3 5
88. FBR1 5 BS1 0 2 2 LS P 7 2 3 1 0 20 40 0 5 1 0 2 0 L S L S P 7 2 3 1L 0 2 0 40 M8 0 7 S 2 0 1 0 3 TC 1 800 4 1 5 4 5 1 4 ABC 3 a 1
89. gt pp m 5 1009 J 192 128 1 3 2 1 3 2 2 24 149 3 2 2 1009 500mg 30 C 509 500mg 100 C 60 20 B D 1 4 8 3 ee D 2 0 0g
90. 3 5 c a b b
91. 30 2 ppm 0 4g 10ppm 2g 50ppm 10g 15 8ppm 40ppm 200pp m 78 2 2 30 32 B RGB B 1 3 RGB 2 ppm 2 10ppm 5 50 ppm 6
92. 2 2 1 C 1 CC 7 C 1 Run Na 2 2 2 4 48YR 4 9 9 1 3 B 41YR 47 3 8 82 2 2 1 5 5 5 5
93. 400nm 700nm 2 K S C 1 C 2 K 3 C 3 AD 2 B 4 59 3 19 2 77g 1
94. 2 2 1 4 S NSH N 58 24 1 900 D TV JX 450 IGZP 1 1 4 gt 7 0 100
95. 7 LE Omar cg 1 sker cm 2 Oket oil 0 1 78 1 78 1 78 i 624 616 6 2 4 g 8 7 4 8 7 6 7 0 C ey 6 4 4 68 1 e CC min Fs 10 5 10 2 CE CCAmin C 75 2 7 3 3 7 2 3 75 D 9 22 J 80 C 2 7 1 5 kg cW
96. 80 C GA 32 G 1 DY 2 J 2 2 5 i 3 0 1 0 3 0 1 0 6 0 1 0
97. A 1 60 15gg hr 300 p p 2 2 1 pH 9 10 ba 0S OR Ww 1
98. C 1 3 13 1 43 4
99. L S P 723 5 3 3 8 3 4 4 3 3 4 10 63 i Co LS Le a a P 723 LS 1m lriulwl wl wl wluil nl wlwlwulr i S 1 op 2559 26 91 26 42 26 53 2 5 9 2 3 4 27 21 3 4 2454 LS 1 P 723 2492 27 851 24 51 oilm Wm nl nl nl win ln ba i i i Fr 4 LS 1 0 2 0 40 P 723 1 0 LS 2 0 40 OWS 5 36 7 6 1 B 1 0 5 38 86 5 B 0 5 5 39 48 3 B L S 1 0 5 37 9 9 3 B 2 0 5 36 12 3 B 0 5 5 37 1 5 4 B
100. 42 3 3 14 9 10 63 11 25 2 13 3 7 3 8 3
101. 7 T 1 2 3 c Basic o C Basic E 3 1 2 2 1
102. RO UF C70 B 380 m2 32cg E 1 Composite RO membrane NTR 7250 NTR 729HF NTR 739HF 3 pH Flux Rejection 2 2 1 3 RO 1 00g 2 p 5 7 345 SCm E 1 3 5
103. 1 2 3 4 63 10 7 8 I I 1 EWSI 69 2 3 5 6 7 C AE HP 9000 YHP CAME
104. 15ppm y 0 066x 0 0031 0 999 1 5 ppm 0 037 Green 15r Amax 610nm y 0 036x 0 0095 r 0 999 Ciog Se 10 4 ppm ppm 0 70 20 30 40 50 Y 0 037x 0 010 500 600 0 800 nm y 0 066x 0 0031 0 999 C1og 13 0
105. 1 6 2 1 2 2 3 3 1 1 1 5 1 7 7 1 2 6 9 1 3 86 0 1 85 3 2 10 7 3 4 0 1 6 CC g 6 23 1 32 0 92 77 1 69 1 86 0 1 2 3 4 4
106. 6 7 Na 1 3 7 5 14 800 57cw 32 2 7 G Na 2 1 2 3 1 2 3 4 5 6 7 8 9 0 1 2 io 1 No 1 No 1 Na 1 x 1X1 2X1 1X3 2x3 1X5 2x5 1xX7 2X7 1xX9 2x9 1 x11 2X 11 1 4 6 10 11 1 3 520 40cm 2 8 1 3 1 6 3 x1 3x3
107. 0 05g amp 0 1g 2 0 1g 4 005g 2 5g 0 05g 6 0 05g 6 amp 14 800 57o 2 1 6 0 0 17 5 5 8 2 55 0cm 687g 5 2 D 3 1g Ne1 14 800 57cn U 2 1600 20w 8 5 92m 38 5 5 0cn 480g 5 3 E 4 0 g 1 14 800 57cn 2 16 00
108. 7 x 1 6 16 7 7 1 6 1 6 13 520 2 2 B 1 40cm 2 28 oO No 9 10 1 1 L123 13 1 4 15 2 3 C CO oO O oo me oo MW Na 2 Na 1 1 4 7x 1 4 3
109. 1 46 1974 2 JIS L0803 3 Kubeika FP amp K Munk Z tech physik 12 593 1931 97 4 C E Garland Text Chem amp Col 5 227 1973 5 PD448 1962 1 1 1
110. 5 10 20 60 C 35 C 10 35 C 30 C 30 20 20L EK S EK S 10 10 My 1 L 1 2 3 0 10 Op 0 50 100 O A pH 5 0 pH 7 0 C pH 6 3 3 pH 5 8 11 1 2 5 1 5
111. 200 ppm 10 ppm 1 62 1 0 5 4 8 g pH 7 8 9 5 5 2 A 92YR 1 5 0 6 43 6 2 3 He B 10 02 756 2 3 10 ppm 36 DDm 50 ppm 43 PDm 80Tor
112. 2ppm 1 10 ppm 3 50ppm 5 6 50ppm B 4 10 15 2 DH B 2 B 1 Run No ppm b 1 2 6 2 10 6 50 6 0 2 0 8 FA log RGB 5 4 0 1 1 L 1 he 6 2 3 4 5 6 Time hr B 1 Run 1 2ppm
113. _ MR I 2 63 10 27 63 10 28 88 AI AIR 70 6
114. 4 1 A C508g 7 1 4 3 2 g 3 2 g 1 2 4 0 g 14 32m 14 57gm 800 1 1 1 0 I I 111 111 iol 111 11 1 i i 1 i ol io 11 1 1 NU 1 lo 11 i 1 1 lo i E i 1 i TT 1 1 1 ll 1 11 1 1 1 1 1 ii nt O 5 0 0 5g 4 0 1g 2 0 1 g 2 0 05g 2 0 05 g 0 05g 9 0 CK 2 20 20 5 7 0 C
115. 5 K 4 1 6 1 44 2 2 2 7 2 No1 14 2 0 2
116. 3 1 1 4 5 2 1 2 6 3 2 3 5 4 3 4 6 1 4 1 4 2 1 1 1 1 5 7m 540o 538g jh Le 41 A 6 F IC 2 4
117. 12 13 B 0 A 1 7 12 13 2 3 60 4 5 6 2 7 61 8 9 1 a mn 10 2 11 62 12 13 i 4 4 1 2 13
118. mm Rw ow oo a 1 1 1 1 1 1 1 1 73 3x1 3x2 3x3 3x4 3X5 3x6 3x7 3x8 3x9 3 x10 3 x11 3 x12 3 x13 3 x14 3 x15 3 x16 3 x17 1 3 520 Na 1 1 6 4X1 5x1 4x2 5x2 4X3 5x3 4x4 5x4 4X5 5x5 4X6 5x6 4x7 5x7 4x8 5x8 4x9 5x9 4x10 5x10 4x11 5 X11 4 X12 5x12 4 X13 5x13 4 X14 5x14 4x15 5X15 4x16 5x16 4 x17 5x17 40cm 6x1 6x2 6x3 6x 4 6x5 6x6 6x7 6x8 6x9 6 x10 6 X11 6 x12 6 x13 6 x14 6 x15 6 x16 6 x17 30 7 X 1 7x2 7x3 7 Xx4 7X5 7x6 7x7 7x8 7x9 7 x10 7 x11 7 x12 7 x13 7 x14 7 15 7x16 7x17 1 1 1 1 1 3 3 8x1 8x2 8x3 8x 4 8x5 8x6 8x7 8x8 8x9 8 x10 8 x11 8 x12 8 x13 8 x14 8 x15 8 x16 8 x17 9x1 10x1 9x2 10x2 9x3 10x3 9
119. 2 1 2 3 2 1 3 2 4 97 1 g 2 A 4 B 3 3 1 80Torr 280Torr 80 Torr 1 47 49C 58
120. 1 1 5 g pH pH10 3 12 pH94 13 pH 20 100
121. 1 P604 1967 2 3 3 348 1985 3 15 27 1988 4 1987 5 6 1 3 8 1987 3 1
122. 1 1 2 3 15 5 620 40cm 29 1 1 1 1 1 1 1 1 1 3 1 1 1 1
123. 600 gg 1000 C 2 Run Ma 4 38YR 55 48 7 8YR 42 17 3 B 25YR 50 26 49YR 36 06 3 0 8 20 1 0 0 0 01 02 03 04 0 5 K S at 700nm C 1 400 mm 700 nm KS 4 3 B K S at 400nm 0 0 10 20 K S at 700nm C 2 400 um 700 nmK S O 4 3 B 3 0 83 8 1800 C 3 8 30g Mg wood Run Na 0382 hr p Wood A 4 59YR 19 15 229 3 B 5 0YR 2 0 1 5 18 5 2 8 4 99Y 1 2 0 1 63 9
124. 8 mm 1 2 KM 72F 5 6 1 3 DH D HORIBA M 7 E 200 20 280nm Lowenthal 17 0 330 2 2 1 60 2ppm 10ppm 50DpmK 6
125. C 10 ppm 3 3 2 1 4 4 2 5 6 D 2 0 7 7 g 1 62 277g 17 2 8 3 3 2 6 3 87 g 1 15
126. 2 10 5 16 3 4 KM 72F 50ppm 8 2 200 PDPDm 99 H 2 2 3 gt A 1 3 gt B
127. PWF PWF 2 2 1 RO F 1 0 91 ET g pH 6 4 292 Sm kg ct RO je F 1 91 F 2 NTR 725 0 NTR 7410 NTR 7250 NTR 7410 NTR 7410 N TR 7250 1 2 PWF 4 PWF
128. 48 C 10 ppm 16 hr 10ppm 2 200 ppm 1 73 1982 100 5 1
129. 1 0g 8 4g 4g g 7 0 C 3 0 C 6 0 15 5 4 0 em 3 1 D EH H 2 co NHs 3 H H CT C C N Te 4 H CO C NH x Neo H D E C 3 2 1 21 3 13 3 3 1 TLC Kieselgel 60F zs4 30 1 0 1 4
130. 50ml 2 2 6 x 6 cm 60 1 3 x 6cm KC 0 5 30 TC 1800 400nm 700nm 20 nm K S 1 pH pH7 pH8 pH 9 1 p HH A 1 DpH 9 0 2g K
131. RN Ro SS OO RS 5 4m 550cw 614g 5 4 F 4 0g A A 4 0 g A 14 800 J 57cm 2 16 0 0 14m 4 3 2 2 6 L 1 4 40 2 60 60 16 60 4 32 60 28 48 60 12 20 4 OO MDOO OO 16 1 3 4 23 2 2 4 5 6 4 7
132. Kubelka Munk K S 1 R 22R K S R KS 4 0 0 700nm 20n m K AS 2K AS TC 1800 2 2 3 610n mm Green 11 200 20 O pH 4 3G 1 5G 1 2
133. NTU 35100 P18B 100 2 436 p Rejection Flux G 2 UF 94 G 1 kg of CC L min NTU 35100 P18B 3 21 10 NTR 7250 S2 20 22 5 G 2 NTU 35100 P18B pH g L Sm 0 68 238 48 1 03 271 48 015 198 5 3 82 5 22 2 g h 10 3 0 6 0 5 gt 0 4 PN a x 0 2F 0 1 0 1 0 1 2 3 4 Operating time hr G 2 NTU 35100 P18B 2 lt gt
134. 1 2 RO UF C70 B composite RO membrane NTR 7250 NTR 7410 2 NTR 7410 RRO 30ggf 6 40 NTR 7250 pH 2 8 NTR 7410 p H 2 11 350m6 250 m6 3 5 Flux Rejection PWF Pure Water Flux 1 3 NTR 7410 PW F 40 1
135. 5 Fp py 10 27 44 57 72 105 1 1 2 1 A
136. 1 2 0 0g 18 5 25 6 6 3
137. 1 1m 2 3 6 2 2 L 1 6 1 4 72 4 36 4 2 4 36 1 2 1 2 2 0 1 1 2 2 39 1 1 2 2 1 1 1 2 2
138. Rpm B14 19 Na OH 1 5 5 3 0 C 7 3 0 1 2 1 3 10 7 3 Ko mg 100g 8 40 hr B mg 100g 15 4 100g 1
139. 13 8g kg wood 50ppm 13 3 g kg wood 10ppm 10 9g kg wood 50Dpm 11 6 g kg Wood 2 8 9 g kg wood 15 20 80 3 8
140. 1 4 57cm 800 36 IT11I11TIIIIIIT1IE 1 lol lol lol lol iol lo EE LEE EE Il11i1TITIIIIIIII 5 3 3 1 0 0 2 3 2 0 005gA2 amp 0 1g AL 0 1g L 0 05g 2 0 05g 6 0 0 5 g L 14 800 2 57cw L 1 8 1 6 2 3m 1 2 1 4 2 0m 2 51 5cn 200g 220g 5 5 1 C 37 nN 4 0g
141. 30 40 108
142. 1 0 6 15 5 4 0 0 cm 3 cm mm cw 10275133013021378 3 0 6 290 4 1 L S P 7 2 3 2 tu
143. 12 pH 2 2 101 1
144. 5 3 0 C A B C D A C B D 2 C D 2 D 100g C A 1 200r ee 2 010 3 100 1 6 100 1 4 0 85 3 2 1 3 6 0 85 3 16 5 30 C 60 4 0 D
145. Oi R G A B ry log RGB Ss OO OO 1 1 906 Time hr B 1 Rum 2 10 ppm O R G A B 79 bo a Iog RGB B 3 08 0 m Cr S04 02 0 IN 0 0 10 15 20 Time hr Time hr Run 3 B 4 Run 4 50Dpm O R 0D G A B CR OD G A B B 2 10Dpm 2 50Ppm p 3 10ppm 50Dpm 0 33 5 2 5 3 62 6 0 469 10ppm 5 3 Ei 018 5 3 B 387 3 365 4 0 72 5 3 2 4 6 B 2 10ppm
146. P 723 1 0 5 36 86 4 B 2 0 5 3 7 3 2 4 B 0 5 5 37 8 8 3 B 1 0 5 36 40 4 B 2 0 5 37 2 3 3 B 1 0 5 35 08 2 B 2 0 5 34 40 3 B L S 40 5 32 77 3 A 1 0 5 37 0 0 3 B PE 723 5 2 0 5 36 4 0 4 B LP 4 0 5 34 23 4 B 8 5 3 P40 42 2 1 1 9
147. 1 4 1 15 2 77 g 3 87 g L 0 77 g 1 4 0 28 3 4 4 RO 0 5 0 382 hr kg wood 0 602 hr kg wood 0 982 hr kg wood 1 6 2 6
148. 3 2 a K 2 b
149. 0 3 0 5 1 0 SO tt 5 2 0 0 C 0 40m min 1 0 kg cW 7 5 5 C 1 0 3 71 5 0 5 54 5 1 0 39 6 7 0 2 0 3 5
150. 1 0 100 1 0 100 3 0 0 2 5 0 2 0 2 7 0 1 0 35 14 800 570m U 1 8 3 2 23m 1 1 1 1 1 1 1 1 413m 52 5cm 498g 4 2 B 50g 7x 1 4 3 2 g 4 0g 14 32m
151. 9 RO 4 10 UF 5 11 6 G 1 NITTO RUW 5 2 10kgf d RO 10 50kgf A 15 min 1 NTU 35100 P 18 B NTR 7250 S2 NTU 35100 UF 10 076 5 NTR 7250 RO 1 7 G 1 p Flnx Rejecti on 2 2 1 R O fouling UF
152. A 3 A 4 K S SB Extracted Tannin 9 kg wood i 40 3 0r 30 cc 8 20 8 Tf FF wg20 ys 10 1 0 0 0 1 1 1 1 L 0 0 05 0 10 0 15 0 0 2 04 0 6 08 10 K S at 700nm 8 K S at 700nm A 3 400nm 700nm KS A 4 D 400nm 700 nm KS PH 55 60 O CPH 5 5 6 0 pH7 PH8 PH9 pH7 pH8 pH9 76 6 2 D H p H 7 D
153. NTU 35100 P18B PWF Pure Water Flux 1502 hr flunx 7 G PWF flux NTU 35100 UF NTR 3150 PWF 40C 1 PWEF 2 fouling PWF 1 5K UF fouling plugging NTU 35100P18 B 2 RO UPF RO 150 100
154. 3 3 90 1 gt 7 4 4 gt 5 6 5 7 6 B 5 A 1 B A 1 7 8 7 8 59 8 9 10 9 3 11 10 B 9 A 6 7 gt B A 1 7
155. 6 5 0 7 1 6 3 9 5 0 cm 2 1 0 3 0cm 40 6 0 8 14 J Ne 40
156. 6 log 1 08 50 0 80 90 C 10 10 1 2 6 2 1 2 3 100 7 20r 1 15 2 1 05 10 95 C E 8 1 9 3 0 8 1 93 8 10 95 C 40 15 Langmuir Freundlich 9 Freundlich
157. hr 10 ppm 3 2 C
158. 08 PWF 40 1hr 62 NTR 7410 92 J 3 RO NTR 7410 NTR 7250 PW _ 1 Pp lt G 1 1 1
159. 3 2 2 NTR 7250 3 NTR 7250 0 771g pH 5 8 250 SCm 350 m2 250m amp mmzd Flux 0 005 00 05 0 50m2 Permeate my 3 5 3 2 3 5 mAm d 1 1 54 2 1 35 3 1 19 2 39 1 78 RO
160. 3x5 3x7 3x9 3 x11 1x2 1x4 1x6 1X8 1 x10 1 x12 2x2 2x4 2x6 2x8 2 x10 1 x13 1 5 7 12 1 4 12 13 3x2 3X4 3x6 3x8 3x10 EE 2 A B 2 2 C D 3 3 E 33 F G 7 2 9 6 A B No 1 C D
161. 4 1 1 5 16 17 64 18 19 4 1 2 20 2 65 21 22 23 24 66 4 1 3 1 15 20 21 22 23 24 67 28 29 4 2 3 2
162. 5 i a a
163. 62 63 2 62 63 72 3 3 1 1 2 100
164. p p 7 DH 9 pH NaOH TpH12 1 AcCOH D 5 5 NaOH AcOH p DH
165. 1 3 1 15 5 5 5 81 2 2 60C 1 0 5 1 30 3 2 30g 1 2 1 2 2 1 3 2 1 4 2 1 1 g 2 O 2 A 4 B 4 TC 1800
166. 2 86 log RGB 0 05 10 15 20 Time hr D 3 O R DG A B D 4 pH D 1 10 400 D 1 pH pH max nm 4 4 201 5 0 206 263 5 4 200 277 2 Abs Abs 95 00 800 00 Wavelength nm D 4 UV 025 v v VIS 10 vv Myricitrin 3 D 2
167. 35100 R18B fouling RO RO NTR 7250S2 flux 0 30 4 4 2 5 1 1 100 80
168. 5 CC 21 3 2 0 0 9 1 2 3 1 40 2 1 69 7 3 1 3 8 2 1 7 2 59 2 6 4 5 3 6 4 7 2 0 0 C 0 3 5 0 2 Amin 1 0 kg cg 7 5 5 C
169. 8 gt 7 1 1 K 3 1 2
170. Torr 12 96 2 2 1 Condensete 1 4 2 5 3 6
171. 0 77g 2 3 B 26Y 11 01 55 3 622 9 55 hg wood 6 3 87g 15 11 61 g kg wood 28 4 1 4 MAA 21 2 3 7 9 0 60 2 hr gg wood 0 5 0 98 hr kg wood 2 7 0 602 hr wood 2 7
172. 2 4 3
173. Z 100 65 pH G 3 G 3 NTR 7250 S2 1 60 2 30 4 NTR 7250 S2 PWF 260 hr flunx 25 G 3 K65 1 flux 150 hr 32 2 hr G 3 NTR 7250 S2 pH g S cm 0 73 268 4 7 1 67 449 46 001 121 4 9 99 2 66 2 gmh 65 0 m e day FIUX 0 0 5 1 Oper
174. ating time hr G 3 9 NTR 7250 S2 95 flux fouling 5 ee 6 UF 150 RO K fouling flux RO fouling fouling P 3 UF RO UF NTU
175. rtemisia princepSs Miscanthus sinensis 2 UL 2 3 5g 85 5g amp 2g 8 4 5g Me 5 A 60min 60min 60min 60min 60min 60min B 2 g 8 3 g 8 3 g 4 1 8 4 60min 30min 60min C 2 g 6 3 g 18 1 g 8 60min 60min 60min DD 60min 1g 60miny 60min 1g8 4 60min 8 50 6 0 50 60 6 C WEL SUN TC K A 1
176. x 4 10X4 9x5 10x5 9x6 10x6 9x7 10x7 9x8 10x8 9x9 10x9 9x10 10x10 9 X11 10x11 9 X12 10x12 9 x13 10x13 9 14 10x14 9x15 10x15 9x16 10x16 9 x17 10x17 1lx 1 ilx 2 11x 3 11x 4 11x5 llx 6 1lx7 1lx 8 11x 9 11 x10 11x11 11x12 11x13 11x14 11x15 11 x16 11x17 2 4 D i 1 1 2 1 3 1 4 1 5 1 6 1 7 1 8 1 9 5 1 1 0 3 11 1 6 12 No 1 3 1 3 Na 1 1 5 5 620 40cm 2 5 E
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