Non-Catalytic Decomposition of NO by Microwave Plasma Induced at Atmospheric Pressure in an Activated Coke Bed
Author:
Affiliation:
1. Department of Chemical Engineering, Graduate School of Engineering, Nagoya University
2. Department of Mechanical and Systems Engineering, Faculty of Engineering, Gifu University
Publisher
Society of Chemical Engineers, Japan
Subject
General Chemical Engineering,General Chemistry
Link
https://www.jstage.jst.go.jp/article/kakoronbunshu/38/6/38_397/_pdf
Reference13 articles.
1. Fan, W. Y., P. F. Knewstubb, M. Käning, L. Mechold, J. Röpcke and P. B. Davies; “A Diode Laser and Modeling Study of Mixed (CH4–H2–O2) AC Plasmas,” J. Phys. Chem. A, 103, 4118–4128 (1999)
2. Glassman, I.; Combustion, 2nd ed., pp. 318–385, Academic Press, London (1987)
3. Itaya, Y.; “Fundamentals of Nitrogen Oxides Yield Mechanism and NOx Reduction Technology (in Japanese),” Course on Global Environmental Problems and Air Pollution Protection, The Society of Chemical Engineers Japan, pp. 118–141 (2008)
4. Reaction mechanism of methane activation using non-equilibrium pulsed discharge at room temperature
5. Kado, S., K. Urasaki, Y. Sekine and K. Fujimoto; “Low Temperature Reforming of Methane to Synthesis Gas with Direct Current Pulse Discharge Method,” Chem. Commun., 2001, 415–416 (2001)
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1. Reforming of Methane and Carbon Dioxide to C 2 Hydrocarbons in Microwave Plasma at Atmosphere Pressure;Journal of Chemical Engineering of Japan;2024-08-15
2. Optical analysis during reduction of nitric oxide in microwave-induced plasma promoted by activated cokes at atmospheric pressure;Fuel;2019-04
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