Chemistry Reference
In-Depth Information
24. B.M. Penetrante and S.E. Schultheis, eds. In Proceedings of NATO Advanced
Research Workshop on Non-Thermal Plasma Techniques for Pollution Control,
Cambridge, U.K., 21-25 September 1992 ,Vol.34of NATO ASI Series G: Ecological
Sciences . Springer-Verlag, Berlin, New York, 1993.
25. H.H. Kim. Nonthermal plasma processing for air-pollution control: A historical
review, current issues, and future prospects. Plasma Process. Polym. , 1:91-110, 2004.
26. K.H. Becker, U. Kogelschatz, K.H. Schoenbach, and R.J. Barker. Non-Equilibrium
Air Plasmas at Atmospheric Pressure . Series in Plasma Physics. IOP Publishing Ltd.,
Bristol, U.K., 2005.
27. H.J. Hall. History of pulse energization in electrostatic precipitation. J. Electrostat. ,
25:1-22, 1990.
28. J.D. Bapat. Application of ESP for gas cleaning in cement industry—With reference
to India. J. Hazard. Mater. , 81:285-308, 2001.
29. G.J.J. Winands, K.P. Yan, A.J.M. Pemen, S.A. Nair, L. Zhen, and E.J.M. van Heesch.
An industrial streamer corona plasma system for gas cleaning. IEEE Trans. Plasma
Sci. , 34:2426-2433, 2006.
30. G.J.J. Winands, A.J.M. Pemen, Z. Liu, E.J.M. van Heesch, K. Ya, and E.M. van
Veldhuizen. Temporal development and chemical efficiency of positive streamers in a
large scale wire-plate reactor as a function of voltage waveform parameters. J. Phys.
D Appl. Phys. , 39:3010-3017, 2006.
31. T. Ohkubo, S. Kanazawa, Y. Nomoto, M. Kocik, and J. Mizeraczyk. Characteristics
of dc corona streamers induced by uv laser irradiation in non-thermal plasma. J. Adv.
Oxid. Technol. , 8:218-225, 2005.
32. K. Urashima, S.J. Kim, and J.S. Chang. The scale-up and economic evaluation of
non-thermal plasma technology for a coal fired power plant exhaust gas emission
control. J. Adv. Oxid. Technol. , 6:123-131, 2003.
33. G. Van Oost, C. Leys, M. Joos, B. van Heesch, M. Hrabovsky, and P. Sunka. Plasma
based total treatment of waste and low-grade fuels. Czech.J.Phys. , 52:D784-D793,
2002.
34. B.M. Penetrante, J.N. Bardsley, and M.C. Hsiao. Kinetic analysis of non-thermal
plasmas used for pollution control. Jpn. J. Appl. Phys. , 36:5007-5017, 1997.
35. L.A. Rosocha. Chapter 11: Processing of hazardous chemicals using silent-electrical-
discharge plasmas. In W. Mannheimer, L.E. Sugiyama, and T.H. Stix, eds., Plasma
Science and theEnvironment , pp. 261-298. Amercian Institute of Physics, Woodbury,
NY, 1997.
36. S.L. Yao, E. Suzuki, and A. Nakayama. Oxidation of activated carbon and methane
using a high-frequency pulsed plasma. J. Hazard. Mater. , 83:237-242, 2001.
37. Z. Machala, E. Marode, M. Morvova, and Peter Luka£. DC glow discharge in
atmospheric air as a source for volatile organic compounds abatement. Plasma.
Process. Polym. , 2:152-161, 2005.
38. Z. Machala, E. Marode, C.O. Laux, and C.H. Kruger. DC glow discharges in
atmospheric pressure air. J. Adv. Oxid. Technol. , 7:133-137, 2004.
39. M.A. Wojtowicz, F.P. Miknis, R.W. Grimes, W.W. Smith, and M.A. Serio. Control
of nitric oxide, nitrous oxide, and ammonia emissions using microwave plasmas.
J. Hazard. Mater. , 74:81-89, 2000.
40. U. Kogelschatz. Applications of microplasmas and microreactor technology. Contrib.
Plasma Phys. , 47:80-88, 2007.
41. R. Hippler, S. Pfau, M. Schmidt, and K.H. Schoenbach. Low Temperature Plasma
Physics . Wiley-VCH-Verlag, Berlin, Germany, 2001.
Search WWH ::




Custom Search