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首页> 外文期刊>Journal of Electrostatics >Diagnosis of OH radical by optical emission spectroscopy in a wire-plate bi-directional pulsed corona discharge
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Diagnosis of OH radical by optical emission spectroscopy in a wire-plate bi-directional pulsed corona discharge

机译:线板双向脉冲电晕放电中通过光发射光谱法诊断OH自由基

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The emission spectrum of the molecule OH (A(2)Sigma -> Chi(2)Pi, 0-0) during a high-voltage, bi-directional pulsed corona discharge consisting of a gas mixture of N-2 and H2O in a wire-plate reactor has been successfully recorded under severe electromagnetic interference at atmospheric pressure. The relative vibrational populations and the vibrational temperature of N, (C, v ') have also been determined. Due to the difficulty of determining the exact overlapping spectral line shape function of the OH (A(2)Sigma -> Chi(2)Pi 0-0) and the Delta v = +1 vibrational transition band of N-2(C-3 Pi u -> Chi(2)Pi), a practicable Gaussian form is used for calculating the emission intensity of OH (A(2)Sigma -> Chi(2)Pi 0-0) and the Delta v = +1 vibrational transition band of N-2(C-3 Pi u -> Chi(2)Pi). The emission intensity of OH (A(2)Sigma -> Chi(2)Pi 0-0) has been evaluated with a satisfactory accuracy by subtracting the emission intensity of the Delta v = +1 vibrational transition band of N2 N-2(C-3 Pi u -> Chi(2)Pi) from the overlapping spectra. The relative population of OH (A(2)Sigma -> Chi(2)Pi 0-0) has been obtained by the emission intensity of OH (A(2)Sigma -> Chi(2)Pi 0-0) and Einstein's transition probability. The influences of peak voltage, pulse repetition rate and 0, flow rate on the relative population of OH (A(2)Sigma) radicals have also been investigated. We found that the relative population of OH (A(2)Sigma) rises with an increase in both the peak applied voltage and the pulse repetition rate. When oxygen is added to an N-2 and H2O gas mixture, the relative population of OH (A(2)Sigma) radicals decreases exponentially with an increase in added oxygen. The main physicochernical processes involved are also discussed in this paper. (C) 2006 Elsevier B.V. All rights reserved.
机译:在高压,双向脉冲电晕放电期间,由N-2和H2O的混合气体组成的分子OH(A(2)Sigma-> Chi(2)Pi,0-0)的发射光谱线板反应器已经成功地在大气压下受到严重电磁干扰的情况下进行了记录。还确定了相对振动种群和N,(C,v')的振动温度。由于难以确定OH(A(2)Sigma-> Chi(2)Pi 0-0)和Delta v = +1的N-2(C- 3 Pi u-> Chi(2)Pi),一种可行的高斯形式用于计算OH的发射强度(A(2)Sigma-> Chi(2)Pi 0-0)和振动的Delta v = +1 N-2(C-3 Pi u-> Chi(2)Pi)的过渡带。 OH的发射强度(A(2)Sigma-> Chi(2)Pi 0-0)已通过减去N2 N-2(Delta v = +1振动跃迁带)的发射强度而以令人满意的精度进行了评估。 C-3 Pi u-> Chi(2)Pi)。 OH(A(2)Sigma-> Chi(2)Pi 0-0)的相对种群已通过OH(A(2)Sigma-> Chi(2)Pi 0-0)和爱因斯坦的发射强度获得。转移概率。还研究了峰值电压,脉冲重复频率和0,流速对OH(A(2)Sigma)自由基的相对种群的影响。我们发现OH的相对种群(A(2)Sigma)随峰值施加电压和脉冲重复频率的增加而增加。当将氧气添加到N-2和H2O气体混合物中时,OH(A(2)Sigma)自由基的相对种群随着添加的氧气的增加而呈指数下降。本文还讨论了涉及的主要物理化学过程。 (C)2006 Elsevier B.V.保留所有权利。

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