DocumentCode :
1348947
Title :
Temporal Development of Ozone Generation in Electron-Induced Corona-Discharge Plasma
Author :
Vijayan, T. ; Patil, Jagadish G.
Author_Institution :
Pillai´´s Inst. of Inf. Technol., Eng., Media Studies & Res., New Panvel, India
Volume :
39
Issue :
11
fYear :
2011
Firstpage :
3168
Lastpage :
3172
Abstract :
Ozone (O3) generation and its temporal development to steady state are investigated in a precise model using all high-rate reactions for various conditions of gas pressure (P), electron density (ne), and temperature (T) of an evolving electron-induced O2 corona plasma. Densities of O and (O3) radicals are determined from their gross formation and destruction. Net ( O3) density so attained in steady state at T = 300 K is over 1025 m-3 for P ~ bar and ne ~ 1015 m-3. However, net O density for the same is lower ~1020 m-3 even though O density exceeded (O3) density in early times of formation. It is shown that (O3) density reduced with temperature heated by discharge in corona, while O density reduced with T up to 500 K and thereafter increased to ~1021 m-3 with still higher T. Both O and (O3) densities varied proportional to the electron density enhanced by avalanche in corona. (O3) varied proportional to pressure, and O exhibited swing to inverse proportionality with larger P.
Keywords :
corona; electron avalanches; ozone; plasma chemistry; plasma density; plasma pressure; plasma temperature; O3; avalanche; electron density; electron induced corona discharge plasma; gas pressure; high rate reactions; ozone generation; temperature; temperature 300 K; temperature 500 K; temporal development; Corona; Discharges; Heating; Mathematical model; Plasma temperature; Steady-state; Oxygen discharge; particle balance; radical evolution; reaction rates; steady state; temporal buildup;
fLanguage :
English
Journal_Title :
Plasma Science, IEEE Transactions on
Publisher :
ieee
ISSN :
0093-3813
Type :
jour
DOI :
10.1109/TPS.2011.2166980
Filename :
6043913
Link To Document :
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