DocumentCode :
1460632
Title :
Effect of water vapor and hydrocarbons in removing NOx by using nonthermal plasma and catalyst
Author :
Shimizu, Kazuo ; Hirano, Toshiyuki ; Oda, Tetsuji
Author_Institution :
Dept. of Electr. Eng., Tokyo Univ., Japan
Volume :
37
Issue :
2
fYear :
2001
Firstpage :
464
Lastpage :
471
Abstract :
Removal of NOx in flue gas was investigated by using nonthermal plasma with catalysts. In this experiment, flue gas contained 5%-15% water vapor and hydrocarbons, as well as nitrogen, oxygen, and carbon dioxide. Catalysts tested in this paper were copper- and sodium-coated zeolite (CuZSM-5, NaZSM-5) and a conventional three-way catalyst (Pt-Rh, alumina cordierite). The simulated flue gases had from 0% to 15% water vapor, 70% NO removal was achieved with NaZSM-5 catalyst at 200°C-500°C, with 10% moisture and the power to the reactor turned off. High-temperature removal of NOx was the result of plasma chemical reactions and adsorption in the catalyst. However, nonthermal plasma degrades the NOx removal with CuZSM-5 catalyst, when the gas temperature is 300°C or above. When the gas temperature was 100°C, the nonthermal plasma process was enhanced by the combination of nonthermal plasma with any type of catalyst. The catalysts investigated in this paper do not work at lower temperatures by themselves. Adsorption characteristics were also investigated and only NaZSM-5 catalyst showed significant adsorption
Keywords :
air pollution control; catalysis; catalysts; nitrogen compounds; plasma materials processing; thermal power stations; 100 C; 200 to 500 C; 300 C; CuZSM-5; NO; NOx removal; NaZSM-5; adsorption characteristics; air emissions control; catalyst; hydrocarbons; nonthermal plasma; thermal power plants; water vapor; Carbon dioxide; Flue gases; Hydrocarbons; Moisture; Nitrogen; Plasma chemistry; Plasma properties; Plasma simulation; Plasma temperature; Testing;
fLanguage :
English
Journal_Title :
Industry Applications, IEEE Transactions on
Publisher :
ieee
ISSN :
0093-9994
Type :
jour
DOI :
10.1109/28.913710
Filename :
913710
Link To Document :
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