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首页> 外文期刊>Plasma Sources Science & Technology >Absolute OH density measurements by broadband UV absorption in diffuse atmospheric-pressure HeH _2O RF glow discharges
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Absolute OH density measurements by broadband UV absorption in diffuse atmospheric-pressure HeH _2O RF glow discharges

机译:在大气压HeH _2O RF辉光放电中通过宽带UV吸收来测量绝对OH密度

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摘要

The measurement of radical densities in atmospheric-pressure plasmas has gained increasing importance in recent years in view of their crucial role in many applications. In this paper we present absolute OH density measurements by broadband UV absorption in diffuse atmospheric-pressure RF glow discharges in mixtures of He and H _2O. The use of a 310nm light-emitting diode as a light source and a very high resolution spectrometer (2.6pm resolution) made the estimation of the total OH density possible by simultaneously measuring the absorption rates of different spectrally resolved rotational lines of the OH(AX) transition. For different RF powers and water concentrations, OH densities and gas temperatures ranging between 6×10 ~(19)and 4×10 ~(20)m ~3 and 345 and 410K, respectively, were obtained. The gas temperature T _g was also measured by three different methods. T _g deduced from the rotational temperature of N _2(CB) emission, nitrogen being present as a trace impurity, provided the most reliable value. The rotational temperature T _r of the ground state OH(X) presented values with a maximum deviation of 25K compared with T _g. To obtain the gas temperature from the emission intensities of OH(AX) rotational lines, the recorded intensities of different lines must be corrected for the effect of self-absorption inside the plasma.
机译:鉴于大气压等离子体中的自由基密度在许多应用中的关键作用,近年来它们的重要性日益提高。在本文中,我们介绍了通过He和H _2O混合物中的大气压RF辉光放电中宽带UV吸收来测量绝对OH密度。使用310nm发光二极管作为光源和非常高分辨率的光谱仪(分辨率为2.6pm),可以通过同时测量不同光谱分辨的OH(AX)旋转线的吸收率来估算总OH密度) 过渡。对于不同的RF功率和水浓度,分别获得了OH密度和气体温度在6×10〜(19)和4×10〜(20)m〜3之间,以及345和410K。气体温度T _g也通过三种不同的方法测量。从N _2(CB)发射的旋转温度推导出的T _g提供了最可靠的值,其中氮作为痕量杂质存在。基态OH(X)的旋转温度T _r与T _g相比具有最大偏差25K的值。为了从OH(AX)旋转线的发射强度获得气体温度,必须校正记录的不同线的强度,以实现等离子体内部的自吸收效应。

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