Generation of Antimicrobial NOx by Atmospheric Air Transient Spark Discharge

被引:0
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作者
M. Janda
V. Martišovitš
K. Hensel
Z. Machala
机构
[1] Comenius University,Division of Environmental Physics, Faculty of Mathematics, Physics and Informatics
来源
关键词
Non-equilibrium air plasma; Transient spark; Nitrogen oxides; Antimicrobial agents; Time-resolved optical diagnostic;
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摘要
Atmospheric pressure air plasma discharges generate potential antimicrobial agents, such as nitrogen oxides and ozone. Generation of nitrogen oxides was studied in a DC-driven self-pulsing (1–10 kHz) transient spark (TS) discharge. The precursors of NOx production and the TS characteristics were studied by nanosecond time-resolved optical diagnostics: a photomultiplier module and a spectrometer coupled with fast intensified camera. Thanks to the short (~10–100 ns) high current (>1 A) spark current pulses, highly reactive non-equilibrium plasma is generated. Ozone was not detectable in the TS, probably due to higher gas temperature after the short spark current pulses, but the NOx production rate of ~7 × 1016 molecules/J was achieved. The NO2/NO ratio decreased with increasing TS repetition frequency, which is related to the complex frequency-dependent discharge properties and thus changing NO2/NO generating mechanisms. Further optimization of NO2 and NO production to improve the biomedical and antimicrobial effects is possible by modifying the electric circuit generating the TS discharge.
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页码:767 / 781
页数:14
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