Title :
Spectral analysis of subcritical microwave discharge in high pressure air
Author :
Wang, Qijie ; Liu, Yanbing ; Zhang, Ge ; Hou, Liwen ; Liu, Cong
Author_Institution :
Dept. of Electr. Eng., Tsinghua Univ., Beijing, China
Abstract :
Summary form only given. Recently, microwave discharge has caught more and more attentions due to its potential of industrial applications. It has such advantages as no electrodes, less pollution and easy to generate. Furthermore, high pressure microwave plasma becomes a hot spot of investigations because many industrial applications must be preceded at high pressure. Subcritical microwave discharge is considered to be a good way to generate high pressure microwave plasma. This paper introduces a microwave plasma source, which can excite subcritical microwave discharge at 1-5 bar in air with the microwave power under 1 kW. A spectrum measuring system was used to acquire the emission spectra of air microwave plasma. The emission spectra of the plasma under different pressures and different incident microwave powers were analyzed. Several spectra of metals such as Cu, Na and K are identified and the excited energy of these beams are estimated. The results show that this method for microwave generation could be a perspective application in an internal combustion engine and may improve the combusting efficiency and reduce the exhaust gases.
Keywords :
air; copper; high-frequency discharges; plasma diagnostics; plasma sources; potassium; sodium; Cu; K; Na; combusting efficiency; emission spectra; high pressure air; high pressure microwave plasma; internal combustion engine; microwave plasma source; pressure 1 bar to 5 bar; spectral analysis; spectrum measuring system; subcritical microwave discharge; Discharges (electric); Electrical engineering; Fault location; Microwave measurement; Microwave theory and techniques; Plasmas;
Conference_Titel :
Plasma Science (ICOPS), 2013 Abstracts IEEE International Conference on
Conference_Location :
San Francisco, CA
DOI :
10.1109/PLASMA.2013.6635030