Influence of Polarity-reversed Time of Applied Voltage on Surface Discharge Treatment for Gas-phase Toluene with Humidity
Author:
Affiliation:
1. Graduate School of Science and Engineering, Ehime University
Publisher
Institute of Electrical Engineers of Japan (IEE Japan)
Subject
Electrical and Electronic Engineering
Link
https://www.jstage.jst.go.jp/article/ieejfms/135/8/135_473/_pdf
Reference20 articles.
1. (1) S. M. Oh, H. H. Kim, A. Ogata, H. Einaga, S. Futamura, and D. W. Park : “Effect of zeolite in surface discharge plasma on the decomposition of toluene”, Catalysis Lett., Vol. 99, pp. 101-104 (2005)
2. (2) A. M. Vandenbroucke, R. Morent, N. D. Geyter, and C. Leys : “Non-thermal plasmas for non-catalytic and catalytic VOC abatement”, J. Hazardous Mater., Vol. 195, pp. 30-54 (2011)
3. (3) A. A. Abdelaziz, T. Sato, M. A. Salam, and Y. Otani : “Influence of nitrogen excited species on the destruction of naphthalene in nitrogen and air using surface dielectric barrier discharge”, J. Hazardous Mater., Vol. 246-247, pp. 26-33 (2013)
4. (4) S. Futamura : “VOCs Removal with Nonthermal Plasma and Catalysts”, J. Jpn. Inst. Energy, Vol. 84, No. 6, pp. 474-479 (2005) (in Japanese)
5. (5) Y. F. Guo, D. Q. Ye, K. F. Chen, J. C. He, and W. L. Chen : “Toluene Decomposition Using a Wire-Plate Dielectric Barrier Discharge Reactor with Manganese Oxide Catalyst in Situ”, J. Mol. Catalysis A : Chemical, Vol. 245, Issues 1-2, pp. 93-100 (2006)
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