Contents of Proceedings

 Session 1: Ozonizers I.
Gibalov V., Pietsch G., Richter R., Saveliev A.: On the generation of  ozone 
 by surface discharges p.1  
Galeev Ravil S.: Investigation of the steady-state axial-flow dc glow 
 discharge in  air as an ozone source p.6
Ito Tairo, Sasaki Masanori, Ehara Yoshiyasu, Kishida Haruo: Ozone generation 
 system by superimposing discharge method using three phase electric source  
 p.11

 Session 2: Ozonizers II.
Lelevkin V.M., Tokarev A.V., Yudanov V.A.: Ozone synthesis in a torch 
 discharge  p.16
Monge  C., Peyrous R., Held B.: Improving of the ozone production by  corona 
 discharge, in wire-to-cylinder device, using a closed-circuit gas flow. 
 Applications  p.21
Okazaki S., Niwa H., Sugimitsu H., Kogoma M., Inomata T.: A study of ozone 
 formation reaction by single pulse discharge p.26
Ozonek Janusz, Pollo Iwo: Analysis of energy distribution in an ozonizer p.31
Yamabe Chobei, Hakiai Kazunori, Ihara Satoshi, Satoh Saburoh: Ozone generation 
 with a volume glow discharge produced by a double discharge method  p.36

 Session 3: Molecular Synthesis and Decomposition
Czernichowski A., Ranaivosoloarimanana A., Czernichowski P.: Plasma assisted 
 destruction of H2S and CH3SH p.41
Kogelschatz U., Eliasson B.: Greenhouse gas plasma chemistry in silent 
 discharges p.47
Michel P., Miethke F., Rutscher A., Sonnenfeld A., Wagner H.-E.:
 Pressure dependence of chemical quasi-equilibria for the CO2 - decomposition 
 in barrier discharges  p.52
Wronski Manusz, Rea Massimo, Pollo Iwo: Pulse corona discharge for nitrogen 
 oxide decomposition  p.57
Yamabe Chobei, Okamoto Katsuya, Huang Shih-feng: Fundamental studies on NOx 
 treatment using a surface discharge and a DC positive streamer  p.62
Yoshioka Y., Dohi H., Minami K., Yagihashi Y., Kougeta H., Ishikawa T.:
 An effective oxidation of NO of low concentration in large quantity
  air flow by silent discharge process  p.67

 Session 4: Flue Gas Cleaning I.
Dors M., Mizeraczyk J., Nichipor G.V.: Conversion of nitrogen  oxides in the 
 exhaust gas simulators subjected  to a DC corona discharge  p.72
Kalyana S., White S., Finney W.C., Locke B.R.,Clark R.J.:
 Reaction products and chemical pathways for ethylene breakdown in 
 simulated combustion gases in a pulsed corona reactor  p.77
Kuzhekin I.P., Kudiakov K.I., Ponizovski A.Z., Ponizovski L.Z., Kruchkov S.P.:
 Parameters of devices for air cleaning from ecologically noxious additions
 using impulse streamer corona discharge  p.82
Moras Frederic, Brisset Jean-Louis: Air corona oxidation of halogenated 
 hydrocarbons  p.87
Morvova M., Gasparik R., Hensel K., Svehla B.: Simultaneous removal of SiF4 
 and NOx using a corona discharge  p.92

 Session 5: Flue Gas Cleaning II.
Amirov R.H., Asinovsky E.I., Samoilov I.S.: The applications of nanosecond 
 discharges technique for pollution control p.97
Niessen W., Russ H., Schruft R., Neiger M.: NO - conversion in a dielectric 
 barrier discharge  p.102
Veldhuizen van E.M., Zhou L.M., Baede A.H.F.M., Rutgers W.R.: UV absorption 
 to determine SO2, NO and NH3 in flue gas cleaning by pulsed corona  p.107

  Poster Session I.:
Ahmadeev V.V., Kostioutchenko S.V., Koudriavtsev N.N., Kourkin G.A., Vasilyak 
 L.M.: Electrical and optical characteristics of dielectric-barrier
 discharge driven by high voltage nanosecond generator  p.112
Aints M., Haljaste A., Kudu K., Plank T.: Dependence of streamer corona 
 characteristics on the concentration of electronegative trace gases in air 
 p.117
Akishev Yu.S., Deryugin A.A., Kochetov I.V., Napartovich A.P., Pan'kin
 M.V., Trushkin N.I.: Effect of geometrical factors and possibilities of 
 control trichel pulses   p.122
Akishev Yu.S., Napartovich A.P., Trushkin N.I.: Decomposition of volatile 
 organic compounds at ppm levels using dc glow  discharge plasmas  p.123
Babaeva N.Yu, Naidis G.V.: Two-dimensional simulation of positive and negative 
 streamers in air  p.128
Behnke J., Steffen H., Lange H.: Ellipsometric investigations during plasma 
 cleaning: Comparison between low-pressure rf-plasma and barrier  discharge 
 at atmospheric pressure p.133
Behnke J.F., Lange H., Michel P., Opalinska T., Steffen H., Wagner H.-E.:
 The cleaning  process of metal surfaces in barrier discharge  plasmas  p.138
Bychkov V.L., Vasiliev M.N.: Hybrid plasma generation and application  p.143
Bugaev S.P., Kuvshinov V.A., Sochugov N.S., Khryapov P.A.: Oxidative 
 conversion of methane in a plasmochemical reactor with a stimulated phase 
 transition of the reaction products  p.145
Bugaev S.P., Korotaev A.D., Oskomov K.V., Sochugov N.S.: Diamond-like films 
 deposited in the plasma of barrier and surface discharges at atmospheric 
 pressure  p.150
Chae J.O., Desiaterik Yu.N., Amirov R.H.: Removal of NOx and SO2 from gas 
 stream using a pulse corona and ammonia addition  p.155
Heesch van E.J.M., Smulders H.W.M., Gompel van F.M.: Application of a compact 
 2 kW pulsed corona unit   p.160
Janca J., Tesar C.: Spectral diagnostics of gliding high-pressure glow
 discharges  p.161
Moussa David, Brisset Jean-Louis: Gliding arc treatment of aqueous solutions: 
 acid and oxidizing effects of an air treatment  p.165
Strelle D., Pavlik M., Skalny J.D: ``Relaxing phenomena'' in negative corona
 discharge in air: New aspects  p.170
Trunec D.: FTP archives for physics   p.174
Vagnerova L., Skalny J.D., Cernak M.: Loeb's and streamer-based mechanism for 
 negative corona current pulses  p.177
Vagnerova L., Dindosova D., Skalny J.D.: The Trichel pulse corona in 
  N2+CCl2F2 mixtures: The shape of pulses  p.180

 Session 6: Material Processing
Hayase K., Kando M.:  The evaporation of carbon rod by strong microwave  
 discharge between  the stubs at atmospheric pressure  p.183
Maximov A.I., Kuzmin S.M.: Some results of the plasma-solution system 
 investigation  p.184
Paris P., Laan M.,  Mirme A., Veldhuizen van E.M.: Corona discharge as 
 generator of aerosol p.185
Schmidt-Szalowski K., Fabianowski W., Rzanek-Boroch Z., Gutkowski M.:
 Thin surface layers of SiO2 obtained from tetraethoxysilane (TEOS) in
 the electric discharge stabilized by dielectric barrier p.190

 Session 7: Fundamental Discharge Phenomena I.
Chutov Yu.I., Kravchenko A.Yu., Pikozh V.V., Zuz V.M.: Computer modeling of 
 pulsing discharges in dielectric cell with dust particles p.195
Gibalov V., Pietsch G.: Modelling of the initial stage of the surface 
 discharge development p.200
Grange F., Loiseau J.F., Spyrou N.: Random distribution of background charge 
 density for numerical simulation  of discharge inception p.205
Itoh H., Norimoto K., Hayashi T.: Measurement of negative ion mobilities in 
 O2 and O3 mixtures at atmospheric pressure p.210
Kozlov K., Pietsch G.: Some remarks on the microdischarge development in 
 dielectric barrier discharges  p.215

 Session 8: Fundamental Discharge Phenomena II.
Napartovich A.P., Akishev Yu.S., Deryugin A.A., Kochetov I.V.,  Pankin M.V.,  
 Trushkin N.I.: Modeling of Trichel pulses in negative corona p.220
Tochikubo F., Chiba T., Watanabe T.: Study of the structure of helium glow 
 discharge at atmospheric pressure between the  parallel plate dielectric 
 electrodes p.225
Vinogradov I.P., Wiesemann K.: Absorption and emission spectroscopy of barrier 
 discharges in N2/NO and O2/NO mixtures p.230

 Poster Session II.:
Chernyak V.Ya., Tsybulev P.N., Olszewski S.V., Voronin P.N., Evstigneev M.A.:
 Application of  SSM-discharge  stimulated  by  plasma  stream  for
 treatment of aqueous solutions p.235
Chutov Yu.I., Kravchenko A.Yu., Yakovetsky V.S.: Expanding plasma jet in a 
 vacuum vessel  p.240
Filimonova E.A., Zhelezniak M.B.: Numerical simulation of NO oxidation in 
 processes of flue gas treatment  by pulse corona discharge p.245
Janca J., Pisa V., Sodomka L.:  Nonthrombogenic plasma surface treatment of 
 textile vascular prostheses  in barrier  discharge p.246
Janowski Tadeusz, Stryczewska Henryka Danuta: Power flow and efficiency in 
 supplying systems of arc plasma generators p.251
Jaworek Anatol, Czech Tadeusz, Krupa Andrzej: Decomposition of hydrocarbons 
 in air by back-corona discharge processing p.256
Kravchenko A.I., Paliy I.M.: The cleaning  of atmospheric air from 
 methan-admixtures with pulsing discharge in common catalyst  p.261
Kudela J., Zainudin Z.A., Minamimura S., Kando M.: High pressure microwave 
 discharge for electrodeless Xe-lamp p.262
Kuzhekin I.P., Kudiakov K.I., Dudarin A.V., Kozlov M.V.: Investigation of 
 streamer corona discharge induced by rectangular impulse voltage p.263
Lelevkin V.M., Semenov V.F.: Mathematical modelling of characteristics of 
 cylindrical arc on the basis of three-temperature model of plasma p.268
Lelevkin V.M., Tokarev A.V., Udanov V.A.: Electrical characteristics of torch 
 discharge p.273
Machala Z., Svehla B., Morva I., Hensel K., Morvova M.: Possibilities of 
 various VOC removal using corona discharge and ultrasonic aerosolation of 
 water p.276
Martysh E.V., Sidorenko V.S.: Instability in the discharge with liquid 
 electrode p.281
Maximov A.I., Kuzmin S.M.: Some possibilities of the plasma activation of 
 the solution processes  p.282
Okazaki S., Kogoma M., Inomata T.: Development of a low ozone generation 
 corona charger p.283 
Pavlik J., Novak S., Hrach R., Kuba P., Kosecek A.M., Fodrek P., Kolenic F.: 
 Optical diagnostics of laser produced plasma p.288
Ponizovsky A.Z., Ponizovsky L.Z., Boudovich V.L., Polotnyouk E.B., 
 Shvedchikov A.P., Belousova E.V.: Estimation of power required for pulsed 
 corona air cleaning from organic admixtures based on ionization 
 characteristics of the admixtures p.289
Ruzinska E., Kurdel M., Morvova M.: Influence of DC corona discharge with 
 one electrode deep in water on the mixture of combustion products of natural 
 gas with natural gas p.290
Schmidt-Szalowski K., Jodzis S., Petryk J., Zarebski W.:
 Temperature effect on ozone formation in the ozonizer with granular
 dielectric material p.295
Sokolova M.V., Zhukov S.V.: Effect of the barrier properties on the surface 
 part of the barrier discharge  p.300
Sunka P., Babicky V., Clupek M., Simek M.: Positive pulsed corona discharge in 
 coaxial geometry p.305
Urushihara K., Ishimura T., Endoh N., Ono S., Teii S.: Basic characteristics 
 of thin wire arc plasma p.310
Urashima K., Ito T., Chang J.S.: The effect of ammonia injection
 points on the reduction of NOx from combustion flue gases by superimposed
 barrier discharge plasma reactors p.315
Veis P., Goldman M., Goldman A., Haug R., Parissi L., Petit L.:
 Ozone production in oxygen  and dry air barrier silent discharges:
 The role of the applied voltage frequency   p.320
Wolf O., Listl S., Neiger M.: Experimental investigations of NOx conversion in 
 a dielectric barrier discharge p.324

 Appendix: After Deadline:
Hayase K., Kando M.: The evaporation of carbon rod by strong microwave  
 discharge between the stubs at atmospheric pressure   
Kando M., Kato H.: Probe measurement of microwave discharge plasma produced 
 between a narrow stub electrode gap