DocumentCode :
1326092
Title :
Pulsed-plasma treatment of polluted gas using wet-/low-temperature corona reactors
Author :
Shimizu, Kazuo ; Kinoshita, Katsuhiro ; Yanagihara, Ken-ya ; Rajanikanth, B.S. ; Katsura, Shinji ; Mizuno, Akira
Volume :
33
Issue :
5
fYear :
1997
Firstpage :
1373
Lastpage :
1380
Abstract :
Application of pulsed plasma for gas cleaning is gaining prominence in recent years, mainly from the energy consideration point of view. Normally, the gas treatment is carried out at or above room temperature by the conventional dry-type corona reactor. However, this treatment is still inadequate for the removal of certain stable gases present in the exhaust/flue gas mixture. The authors report here some interesting results of the treatment of such stable gases like N2 O with pulsed plasma at subambient temperature. Also reported in this paper are improvements in DeNO/DeNOx efficiency using unconventional wet-type reactors, designed and fabricated by us, and operating at different subambient temperatures, DeNO/DeNOx by the pulsed-plasma process is mainly due to oxidation, but reduction takes place at the same time. When the wet-type reactor was used, the NO 2 product was absorbed by water film and higher DeNOx efficiency could be achieved. Apart from laboratory tests on simulated gas mixtures, field tests were also carried out on the exhaust gas of an 8-kW diesel engine. A comparative analysis of the various tests are presented, together with a note on the energy consideration
Keywords :
air pollution control; internal combustion engines; nitrogen compounds; plasma applications; 8 kW; DeNO; DeNOx; NO2; air emissions control; diesel engine exhaust gas; low-temperature corona reactors; polluted gas treatment; pulsed-plasma process; pulsed-plasma treatment; wet corona reactors; Cleaning; Corona; Flue gases; Inductors; Oxidation; Plasma applications; Plasma stability; Plasma temperature; Pollution; Testing;
fLanguage :
English
Journal_Title :
Industry Applications, IEEE Transactions on
Publisher :
ieee
ISSN :
0093-9994
Type :
jour
DOI :
10.1109/28.633822
Filename :
633822
Link To Document :
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