Improvement of NOx Removal Rate Using Discharge, Photocatalyst and UV Rays

Author:

Iwasaki Shunsuke1,Murata Yoshimoto2,Ito Daisuke1,Ehara Yoshiyasu1,Kishida Haruo1,Ito Tairo1

Affiliation:

1. Musashi Institute of Technology

2. Ebara Corporation

Publisher

Institute of Electrical Engineers of Japan (IEE Japan)

Subject

Electrical and Electronic Engineering

Reference10 articles.

1. (2) T. Yoshinari : “Application of Alumina Catalyst to the NOx Removal from an Exhaust of Stationary Diesel Engine”, Catalysis Soc. Japan, Vol. 39, No. 3, pp. 222-227 (1997) (in Japanese)

2. (3) T. Yamamoto, C. L. Yang, M. R. Beltran, and Z. Kravets : “Plasma-assisted chemical reactor for NOx decomposition”, IEEE IAS 32nd Annual Meeting, Vol. 3, pp. 1956-1960 (1997-10)

3. (4) Y. Ehara, T. Nomura, Y. Baba, Y. Murata, and T. Ito : “Improved Efficiency of NOx Decomposition System by Superimposing Multiple Discharge”, IEEJ Trans. FM, Vol. 123, No. 6, pp. 537-542 (2003-6) (in Japanese)

4. (5) V. Augugliaro, S. Coluccia, V. Loddo, L. Marchese, G. Martra, L. Palmisano, and M. Schiavello : “Photocatalytic oxidation of gaseous toluene on anatase TiO2 catalyst mechanistic aspects and FT-IR investigation”, Applied Catalysts B: Environmental, Vol. 20, pp. 15-27 (1999)

5. (6) M. Yamashita : “Air Purification Utilizing Photocatalysts”, J. Int. Electrostat. Jpn, Vol. 26, No. 4, pp. 158-163 (2002) (in Japanese)

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