Industrial Plasma Technology: Applications from by Yoshinobu Kawai, Hideo Ikegami, Noriyoshi Sato, Akihisa

By Yoshinobu Kawai, Hideo Ikegami, Noriyoshi Sato, Akihisa Matsuda, Kiichiro Uchino, Masayuki Kuzuya, Akira Mizuno

Sincerely dependent in 5 significant sections on functions, this monograph covers such scorching applied sciences as nanotechnology, sunlight mobile expertise, biomedical and scientific purposes, and sustainability.
because the subject, functions and readers are hugely interdisciplinary, the e-book bridges fabrics technological know-how, commercial chemistry, physics, and engineering -- making it essential for researchers in and academia, in addition to these operating in application-oriented plasma expertise.

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6) Toxic gases such as Hg, dioxins, and so on. 7) Radioactive gases such as isotopes of C, Rn, I, Kr, and so on. The three options for their treatment at the sources are as follows: 1) Particulates collection by electrostatic precipitators and filters, and adsorption of gaseous contaminants by water or adsorbents, followed by landfill or incineration. Industrial Plasma Technology. Edited by Yoshinobu Kawai, Hideo Ikegami, Noriyoshi Sato, Akihisa Matsuda, Kiichiro Uchino, Masayuki Kuzuya, and Akira Mizuno Copyright  2010 WILEY-VCH Verlag GmbH & Co.

Further understanding of the interaction of NTP and solid/liquid surface will lead to various applications. References 1. Mizuno, A. (2007) Industrial applications 2. 3. 4. 5. of atmospheric non-thermal plasma in environmental remediation. Plasma Phys. Control. Fusion, 49, A1–A15. Hackam, R. and Akiyama, H. (2000) Air pollution control by electrical discharges. IEEE Trans. Dielectr. Electr. , 7, 654–683. M. E. (1993) Non-thermal Plasma Techniques for Pollution Control, NATO ASI Series, Springer-Verlag, Vol.

0 L min−1 , additive: C2 H4 900 ppm, SV: 36 000 h−1 , SIE: 43–46 kJ N−1 m−3 . 3 By-products of the NOx treatment using the Pt-catalyst packed bed. 3 of reaction conditions. Packed bed can also be used to generate ammonia at temperatures less than 150 ◦ C for catalytic reduction of NO in diesel exhaust. As noted, the combination of NTP and catalyst is effective for improving the selectivity and energy efficiency of plasma chemical reactions. 1e. 7, oxidation of SO2 was studied [22]. Water was introduced to the reactor to form a water film on the inner surface.

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