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Spectroscopic study of an atmospheric pressure dc glow discharge with a water electrode in atomic and molecular gases

机译:原子和分子气体中带有水电极的大气压直流辉光放电的光谱研究

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The positive column of dc excited atmospheric pressure glow discharges in a metal pin-water electrode system is investigated in air, N_2, He, Ar, N_2O, CO_2 and He-N_2 mixtures. The electric field and the plasma temperatures in the positive column are measured and the effect of the filling gas on the optical emission is examined. Estimates of the electron temperature and density and the observed emission properties indicate that the formation processes of the excited dissociation fragments of H _2O are due to recombination processes rather than direct electron excitation. Deviation from a Boltzmann rotational population distribution of OH(A) is observed in all gases due to the formation process of OH(A). In the case of He the non-Boltzmann behaviour is more pronounced which can be caused by the lower gas temperature as a higher gas temperature leads to more thermalization of the rotational population distribution of OH(A). The results in this paper suggest that vibrational energy transfer contributes to the non-Boltzmann distribution of OH(A). The temperature corresponding to the small rotational numbers of OH(A) can be used as an estimate of the gas temperature.
机译:在空气,N_2,He,Ar,N_2O,CO_2和He-N_2混合物中研究了金属针-水电极系统中直流激发的大气压辉光放电的正柱。测量正极柱中的电场和等离子体温度,并检查填充气体对光发射的影响。电子温度和密度的估计以及观察到的发射特性表明,H _2O激发的离解片段的形成过程是由于重组过程而不是直接的电子激发。由于OH(A)的形成过程,在所有气体中均观察到OH(A)的Boltzmann旋转总体分布的偏差。在He的情况下,非玻耳兹曼行为更为明显,这可能是由于较低的气体温度所致,因为较高的气体温度会导致OH(A)的旋转种群分布更多地热化。本文的结果表明,振动能量传递有助于OH(A)的非玻尔兹曼分布。可以将与OH(A)的小旋转数相对应的温度用作气体温度的估算值。

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