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Study of an AC dielectric barrier single micro-discharge filament over a water film

机译:水膜上交流电阻挡层单根微放电灯丝的研究

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摘要

In the last decades, AC powered atmospheric dielectric barrier discharges (DBDs) in air with a liquid electrode have been proposed as a promising plasma technology with versatile applicability in medicine, agriculture and water treatment. The fundamental features of the micro-discharge filaments that make up this type of plasma have, however, not been studied yet in sufficient detail. In order to address this need, we investigated a single DBD micro-discharge filament over a water film in a sphere-to-sphere electrode configuration, by means of ICCD imaging and optical emission spectroscopy. When the water film temporarily acts as the cathode, the plasma duration is remarkably long and shows a clear similarity with a resistive barrier discharge, which we attribute to the resistive nature of the water film and the formation of a cathode fall. As another striking difference to DBD with solid electrodes, a constant glow-like plasma is observed at the water surface during the entire duration of the applied voltage cycle, indicating continuous plasma treatment of the liquid. We propose several elementary mechanisms that might underlie the observed unique behavior, based on the specific features of a water electrode.
机译:在过去的几十年中,已经提出了带有液体电极的空气中交流电供电的大气电介质阻挡放电(DBD),作为一种有前途的等离子体技术,在医学,农业和水处理中具有广泛的适用性。但是,尚未对构成这种类型等离子体的微放电丝的基本特征进行足够详细的研究。为了满足这一需求,我们通过ICCD成像和光发射光谱法研究了球对电极配置中水膜上的单个DBD微放电灯丝。当水膜临时充当阴极时,等离子体持续时间非常长,并且与电阻势垒放电表现出明显的相似性,这归因于水膜的电阻特性和阴极降落的形成。与带有固体电极的DBD的另一个显着差异是,在施加电压周期的整个过程中,在水表面观察到恒定的辉光状等离子体,这表明对液体进行连续等离子体处理。基于水电极的特定功能,我们提出了一些基本机制,可能是观察到的独特行为的基础。

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