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1

2 i

3 ii

4 iii

5 iv

6 ozein Van Marum 1801 Cruiokshank Marum 1840 Schonbein 3 / atm 1

7 N

8 3

9 V ( ) 4

10 SiO 2 5

11 O O O 2 ev O O 2 O O 2 O + O kcal O + O 2 O 3 + kcal ( ) O 2 O 68 kcal O kcal O 3 g Wh ns 6

12 7 e e e cm

13 O 8

14 3 (1) 9

15 g N g Nm 3 /N Hz 10

16 g Wh s 30 V A ( ) (ns) C A/ m 2 J/ ( ) V ev 11

17 140 W.V.Siemens 5 tan 12

18 - 13

19 ( ) 14

20 15

21 16

22 F mm (a) (b) 2 Hz 17

23 cm cm cm cm 18

24 Vd Vi 5 nm I T log(i0 I ) 19

25 Ts 20

26 = A I log 0 C Ts I x I0 x Vi V 0.11MPa M a M a min i min 21

27

28 (a) (b) (a) (b) 23

29 0.2L/min V C C N C g N DS AS

30

31 M a C Q min

32 C E ( ) M a C Pac 1mm Q min 27

33 M a g=0.5mm ( ) 28

34 g=0.5mm 0.6L M a Nm ac ( ) 29

35 M a /Nm η ac

36 Q C η = ( g / kwh) Pac min 31

37 V C Nm 3 32

38

39 34

40 35 Nm kwh

41 cm cm cm 1 36

42 5 AC I V Cc Cg Vc Vg 37

43 V Vc Vg Vg Vd = Vc + I Vc = ω Cc I Vg = ω Cg Cc C εε S Cc = 0 d ε 0 S Cg = d S Vc 1 = Vd 1+ ε Vg ε = Vd 1+ ε Vc Vg 38

44 min

45 (1) Vi(glass) Vg glass Vi glass V ε glass Vg ( glass) = Vi( glass) = 1.85( kv ) 1+ ε glass Vg Vi( ) 1+ ε 1+ ε Vi( ε ) = Vg ( glass) = 1.85 ( kv ) ε ε 40

46 1.1 ~

47

48 43

49

50 , e e e.. e exp (-2060/T)cm 3 / 11 ( ) 10 i 12 W = 1 CcVc 2 ( ) 2 J 12 45

51

52 min 47

53 Vd k Pr I I C δ R C I ϕ V I R (a) (b) P P = VI cos ϕ I = I cos ϕ ω C 2 I = sin ϕ cos ϕ ω C 2 I ε Vd= V 48

54 K K ac

55 Id g

56

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58 53

59 54

60 55

61 2 56

62 57

63 2 3 58

64

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66 N

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76 Vd V L n

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88 TiO 2 signle barrier t=1mm g=1 mm p=0.11 MPa

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98 n

99 1 1 94

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104 3 3 3 Nm

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110 105 1

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112 1 107

113 5 108

114 109

115 1 110

116 1 111

117 112

118 (1) C.F.Schonbein,Comptes Rendus Hendus Heebd. Seances Acad Sci., 10, 706 (1940) (2) p.275 (S-35) (3) 127 (1982-2) (4) p (5) Vol.114-D No.4 pp (1994-4) (6) : Vol.114-D No.4 pp (1994-4) (7) Vol.114 No.10 pp (1994) (8) Vol.114 No.10 pp (1994) (9) (1993) (10) Vol.28 No.2 pp (2004) (11) 2002 (12) (2003) (13) p.103 ( ) H 8 (14) S.Masuda,K. Akutsu, M.Kuroda, Y.Awatsu, and Y.Shibuya IEEE Trans. IAS, Vol.24 pp (1988) (15) Vol.113-A No.8 pp (1993) (16) S.Ushiroda, N. Yamazaki, S. Kajita, T.Tamada and Y.Kondo, 11 th Int. Conf On Gas Discharge and Their Application, 113

119 Tokyo, 324 (1998) (17) 4 10 pp (1998) (18) 74 pp (1998-2) (19) p ( ) (20) pp ( ) (21) D pp (1994-4) (22) J.C.Devins, J.Electrochem. Soc., 103, pp (1956) (23) 96 (H-8 ) (24) 431 (1994) (25) Vol.19, No.5 pp (1995) (26) B.Eliason,M.Hirth and U.Kogelschatz: J.Phys. D: Appl Phys. 20 (1987) 1421 (27) p.24(1993) (28) Vol. 3 pp (29) A (30) A Vol.120 No.6 pp (31) P58, 114

120 (32) A-117 No (33) A-117 No (34) Vol.74 No.10 pp (35) SAMARANAYAKE Janaki, Vol 74 No.10 pp (36) (37) W.V.Siemens Pogg. Ann. Chemi.,102 66(1857) (38) Vol. No.6, 521( ) (39) 127 (19829 (40) Vol. No pp (41) B Vol.96 No.11 pp (42) 127 p.7 (1982) (43).116 A, No.2 pp (44) Vol.120 A, No.6 pp (2000) (45) 122-A, Vol.122-A, No.4 pp (2002) (46) Vol.121-A, No.4, pp (2001) (47) Kazuyuki Ohe, Kiyohito Kamiya and Takashi Kimura IEEE TRANSACTIONS ON PLASMA SCIENCE Vol.27, No.6, 115

121 pp , December (1999) 8 9 ED pp.35-38(2000) (50) ED pp.51-55(2002) (51) V.I.Gibalov,M.Wronski,V.G.Samaylavich,T.Opalinske L, pp (1989-9) (52) pp (1994-3) (53) p.245 (1960) (54) 127 p (55).24, No.3 pp )(2000) (56) p.506 (1990-7) (57) PST pp (2002) (58) 20 (SPP 20) BI 3 pp (2003) (5 ) (60) Vol.97 No.2, pp (S52-1) 116

122 (61) Vol.97, No.11 pp (S52-11) (62) U.Kagelschatz : Proc. 16 th Int. Conf. Phenomena Ionized Gases, p240(1983). (63) B.Eliasson, M.Hirth and U.Kagelschatz : J.Phys.D, 20(1987)1421. (64) U.Kagelschatz :Process Technology for Water Treatment, S.Stucki, ed. New York, p.87 (1988). (65) M.Kuzumoto, Y.Tabata, K.Yoshizawa and S.Yagi : Trans. Inst. Elect. Eng. Jpn., 116 (1996)121. (66) Y.Noma, K.Goto, Y.Yamagata and K.Ebihara : Trans. Inst. Elect. Eng. Jpn., 121A(2001)366. (67) J.C.Devins : Electrochem. Soc., 103(1956)460. (68) S.Yagi and N.Tanaka : J.Phys.D, 12 (1979)1509. (69) K.Ohe, K.Kamiya and T.Kimura : IEEE Trans. Plasma Sci., PS-27(1999)1582. (70) B.Eliasson and U.Kagelschatz: Electrical discharge in oxygen, BBC Brown, Boveri snd Co., Ltd., Barden, Brown Boveri Research Rep. KLR86-11C, (71) M.Toyofuku,Y.Ohtsu and H.Fujita:J.Journal of Applied Phyics Vol.43, No.7A, pp (2004) (72) Y.Ohtsu M.Toyofuku and H.Fujita:Proc.of Third Asia-Pacific International Symposium on the Basic and Application of Plasma Technology pp (2003) (73) M.Toyofuku,Y.Ohtsu and H.Fujita:Proc.of 7 th Asia Pacific Conference on Plasma Science and Technology Symposium on 17 th Plasma Science for Materials, 01P-47 p401(2004) (74) Dhandapain and S.T.Ohyaa:Appl. Catal. B11 (1997) 129 (75) 117

123 . (76) M.Toyofuku,Y.Ohtsu and H.Fujita:Proc.26 th International Conferenc on Phenomena in Ionized Gases, pp (2003) (77) P2-2 pp (2004) (78) B.Elasson and U.Kagelschatz: Electrical Discharge in Oxygen(Boveri and BBC, 1986) (79) N.Tabata: J.Plasma Fusion Res., 74 (1998)1119. (80) G.E.Caledonia, Chem.Rev., 75(1975)333. (81) U.Kogelschatz, Plasma Chem. Plasma Process., 23, (2003)1. 118

124 119

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(1.2) T D = 0 T = D = 30 kn 1.2 (1.4) 2F W = 0 F = W/2 = 300 kn/2 = 150 kn 1.3 (1.9) R = W 1 + W 2 = = 1100 N. (1.9) W 2 b W 1 a = 0 1 1 1.1 1.) T D = T = D = kn 1. 1.4) F W = F = W/ = kn/ = 15 kn 1. 1.9) R = W 1 + W = 6 + 5 = 11 N. 1.9) W b W 1 a = a = W /W 1 )b = 5/6) = 5 cm 1.4 AB AC P 1, P x, y x, y y x 1.4.) P sin 6 + P 1 sin 45

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