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首页> 外文期刊>Plasma Sources Science & Technology >An in situ and downstream study of non-thermal plasma chemistry in an air fed dielectric barrier discharge (DBD)
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An in situ and downstream study of non-thermal plasma chemistry in an air fed dielectric barrier discharge (DBD)

机译:空气馈电介质阻挡放电(DBD)中非热等离子体化学的原位和下游研究

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This paper reports a spectroscopic study of non-thermal plasma chemistry in an air-fed dielectric barrier discharge (DBD) plasma jet. In situ analysis (i.e. the analysis of the plasma glow) and downstream analysis were carried out to identify and monitor species produced in the plasma as they propagate from the plasma glow to downstream regions. The analyses were carried out using Fourier Transform InfraRed (FTIR) and UV-Vis spectroscopies. The species: O-3, N2O5, N2O, HNO3, CO2, CO and, for the first time, a vibrationally excited form of CO2 (i.e. CO2*(v)) were identified in the plasma glow, while O-3, N2O5, HNO3 and N2O were detected in the downstream exhaust. The behaviour of these species was monitored as a function of a range of experimental conditions including: input power, gas flow rate, relative humidity, gas temperature and feed gas composition. In addition, the uncertainty associated with UV-vis detection of ozone in the presence of N2O5 and/or HNO3 as interfering species was determined.
机译:本文报道了在空气馈电介质阻挡放电(DBD)等离子体射流中非热等离子体化学的光谱研究。进行了原位分析(即等离子辉光的分析)和下游分析,以识别和监测等离子从等离子辉光传播到下游区域时产生的物种。使用傅里叶变换红外(FTIR)和UV-Vis光谱仪进行分析。物种:O-3,N2O5,N2O,HNO3,CO2,CO,并首次在等离子体辉光中发现了一种振动激发形式的CO2(即CO2 *(v)),而O-3,N2O5在下游排气中检测到HNO3和N2O。根据一系列实验条件对这些物种的行为进行监控,这些条件包括:输入功率,气体流速,相对湿度,气体温度和进料气体组成。此外,还确定了与在存在N2O5和/或HNO3作为干扰物的情况下以紫外可见检测臭氧相关的不确定性。

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