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NO removal and discharge characteristics using dielectric barrier discharge

2017 IEEE 21st International Conference on Pulsed Power (PPC), 2017
An experimental study on NO removal was undertaken using cylindrical dielectric barrier discharge (DBD). The aim is to investigate reaction pathway and the role of reactive species such as O, O 3 and OH for NO removal. Under different concentration of O 2 , H 2 O and NO, the dominant reactive species was investigated quantitatively.
Linghe Zhou   +5 more
openaire   +1 more source

Temporal Behaviour of Micro-discharge in Dielectric Barrier Discharges

Chinese Physics Letters, 2002
A special dielectric barrier discharge (DBD) device consisting of two water electrodes has been designed. The temporal behaviour of the micro-discharge (filament) in the DBD in air at atmospheric pressure is measured by using an optical method. The nonsymmetrical characteristic of the filament has been discovered for the first time.
Yin Zeng-Qian   +4 more
openaire   +1 more source

Dielectric barrier discharge pumped N_2 laser

Applied Optics, 1994
A pulsed transverse dielectric barrier discharge has been used to excite N(2)/He (1:10) gas mixtures. Laser action in 337.1 nm was attained at pressures between 400 mbars and 1.3 bars. The maximum pulse energy was 1.4 µJ, with an efficiency of 0.002% and a pulse width of 8 ns.
openaire   +2 more sources

Effects of dielectric barrier discharge plasma on the catalytic activity of Pt/CeO2 catalysts

Applied Catalysis B: Environmental, 2018
Bangfen Wang, Yuhai Sun, Hailin Xiao
exaly  

Development of a dielectric barrier discharge ion source for ambient mass spectrometry

Journal of the American Society for Mass Spectrometry, 2007
Na Na, Sichun Zhang, Chengdui Yang
exaly  

Atmospheric‐Pressure Dielectric‐Barrier Discharge as a Radiation Source for Optical Emission Spectrometry

Angewandte Chemie - International Edition, 2008
Yong-Liang Yu, Zhuo Du, Ming-Li Chen
exaly  

Plasma-catalytic removal of formaldehyde over Cu–Ce catalysts in a dielectric barrier discharge reactor

Applied Catalysis B: Environmental, 2015
Xinbo Zhu, Xiang Gao, Yuxuan Zeng
exaly  

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