首页> 外文会议>IEEE International Conference on Plasma Science;ICOPS 2012 >Enhancement of radical generation in a round helium atmospheric-pressure plasma jet by an on-time modulated power source
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Enhancement of radical generation in a round helium atmospheric-pressure plasma jet by an on-time modulated power source

机译:准时调制电源增强圆形氦气大气压等离子体射流中自由基的产生

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Atmospheric-pressure plasma jet (APPJ) has attracted tremendous attention in the past decade mainly due to its low cost and flexibility without the use of expensive vacuum equipment. It has found numerous applications such as surface cleaning, surface modification, thin-film deposition and recently biomedical applications that may include sterilization, blood coagulation, cell growth enhancement and wound healing, to name a few.In this paper, a round APPJ device is developed and tested. This APPJ consists of four parts: a silicon tube, a stainless steel tube, an aluminum tube and an aluminum ring. Powered electrode, which includes a stainless steel tube and an aluminum tube, is placed inside the silicon tube. The grounded electrode (aluminum ring) is wrapped around at the surface of silicon tube with some proper distance from the powered electrode (aluminum tube) inside the silicon tube. An AC power source of 60 W with a frequency of 25 kHz is applied to this APPJ with different high-voltage on-time settings. Optical emission spectrometer (OES) and a mercury thermometer are used for measuring the OES and gas temperature in the jet region at various downstream locations, which is important for biomedical applications. Helium (99.99%) is used as the working gas with a flow rate of 4 slm. Gas composition analysis using gas chromatography (GC) shows that an appreciable amount of impurities including oxygen and nitrogen (more than 20ppm) is found. Corresponding Reynolds number based on the average speed and inner diameter of the silicon tube is 1,392, which is a typical laminar pipe flow.
机译:大气压等离子体射流(APPJ)在过去十年中引起了极大的关注,这主要是由于它的低成本和灵活性,而无需使用昂贵的真空设备。它已经发现了许多应用,例如表面清洁,表面改性,薄膜沉积以及最近的生物医学应用,其中可能包括杀菌,血液凝固,细胞生长增强和伤口愈合等。开发和测试。该APPJ包括四个部分:硅管,不锈钢管,铝管和铝环。包括不锈钢管和铝管的带电电极放置在硅管内。接地电极(铝环)缠绕在硅管的表面,与硅管内部的通电电极(铝管)相距适当的距离。具有不同高压开启时间设置的60 W交流电源(频率为25 kHz)施加于此APPJ。光学发射光谱仪(OES)和水银温度计用于测量下游各个位置的射流区域中的OES和气体温度,这对于生物医学应用很重要。氦气(99.99%)用作工作气体,流速为4 slm。使用气相色谱仪(GC)进行的气体成分分析表明,发现了相当数量的杂质,包括氧气和氮气(大于20ppm)。基于硅管的平均速度和内径的相应雷诺数为1,392,这是典型的层流。

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