DocumentCode
2801531
Title
Removal of mixed volatile organic compounds using bipolar pulsed DBD
Author
Ji, Lin-Yan ; Zhu, Yi-Chun ; Wang, Hong-Chang ; Li, Duan ; Wu, Yan
Author_Institution
Fac. of Archit. & Mapping Eng., Jiangxi Univ. of Sci. & Technol., Ganzhou, China
fYear
2011
fDate
15-17 July 2011
Firstpage
2429
Lastpage
2432
Abstract
The study on the decomposition of mixed volatile organic compounds (VOCs) has significance value for that the exhaust gas from manufactory is usually mixture of several kinds of VOCs. This experiment chose four kinds of VOCs (acetone, benzene, tetrachloroethylene and m-xylene) as the treatment objects to study the decomposition characteristics of mixed VOCs by the bipolar pulsed DBD (bipolar pulsed power introduced into dielectric barrier discharge reactor). The results indicated that the order of the removal efficiency of VOCs followed as m-xylene >; tetrachloroethylene >; benzene >; acetone no matter treating single-compound or mixed VOCs. The decomposition characteristics of mixed components were different from that of single-compound because of the interaction effect in the mixture. Comparing with the result of treating single-compound, the removal efficiency of m-xylene only fell a little but the other three components fell a lot on the mixed VOCs treatment. In addition, when the capacitance of the pulse capacitor was at an appropriate range, more effective energy, higher level energetic electrons and active particles could be injected into the DBD reactor, which could enhance the removal efficiency and energy efficiency of the mixed VOCs.
Keywords
air pollution control; chemical reactors; flue gases; plasma applications; plasma devices; VOC decomposition; acetone; benzene; bipolar pulsed DBD; bipolar pulsed power dielectric barrier discharge reactor; energetic electrons; exhaust gas; m-xylene; mixed volatile organic compounds removal; tetrachloroethylene; Capacitance; Capacitors; Discharges; Energy efficiency; Inductors; Plasmas; Volatile organic compounds; Dielectric barrier discharge; bipolar pulsed high voltage; mixed VOCs;
fLanguage
English
Publisher
ieee
Conference_Titel
Mechanic Automation and Control Engineering (MACE), 2011 Second International Conference on
Conference_Location
Hohhot
Print_ISBN
978-1-4244-9436-1
Type
conf
DOI
10.1109/MACE.2011.5987473
Filename
5987473
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