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SPECTROSCOPIC CHARACTERIZATION OF AN ATMOSPHERIC PRESSURE DBD AFTERGLOW UNDER UNIPOLAR AND BIPOLAR PULSED EXCITATION

机译:单极和双极脉冲激发下大气压力DBD余辉的光谱表征

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摘要

This experimental work deals with the study via spectroscopic diagnostics of the afterglow issued from an atmospheric pressure Dielectric Barrier Discharge (DBD) reactor driven by two distinct High Voltage (HV) generators. The first High Voltage generator delivers unipolar (positive) square pulses of variable rise/fall time, frequency, amplitude and pulse duration. The second one delivers bipolar HV pulses of variable frequency and amplitude. After a primary electrical analysis of the behavior of the two systems, attention is drawn in the production of active species in the case of N_(2) and Air DBD's in the afterglow. The aforementioned species' densities are estimated in these experimental conditions via optical emission spectroscopy for the N_(2) afterglow, whereas the well known absorption method is used in the case of the Air afterglow. It is shown that the unipolar mode of excitation is more efficient in the production of ozone whereas the bipolar one excels in the production of atomic Nitrogen and N_(2)(A) metastables. These species can be used in a wide variety of surface and gas treatment applications in atmospheric pressure conditions.
机译:这项实验工作通过光谱诊断来处理这项研究,该光谱诊断是由两个不同的高压(HV)发电机驱动的大气压介电阻挡放电(DBD)反应堆发出的余辉。第一台高压发生器提供可变的上升/下降时间,频率,幅度和脉冲持续时间的单极(正)方波脉冲。第二个提供可变频率和幅度的双极HV脉冲。在对这两个系统的行为进行初步的电气分析之后,在N_(2)和余辉中出现空气DBD的情况下,引起了人们对活性物质生产的关注。在上述实验条件下,通过N_(2)余辉的光发射光谱法估计了上述物种的密度,而在空气余辉的情况下,使用了众所周知的吸收方法。结果表明,单极激发态在产生臭氧方面更有效,而双极激发态则在原子氮和N_(2)(A)亚稳态产生方面表现优异。这些物质可在大气压条件下用于各种表面和气体处理应用中。

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