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Optical and Electrical Diagnostics of the Effects of Conductivity on Liquid Phase Electrical Discharge

机译:电导率对液相放电影响的光电诊断

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The influence of solution conductivity on liquid phase pulsed electrical discharge was investigated by optical emission spectroscopy in a reactor with point-to-plane electrode geometry. The emission intensities of hydroxyl (OH) radical, hydrogen (H) radical, and oxygen (O) radical were measured using an emission intensity calibration method which used argon gas as a chemical actinometer. Control experiments showed that the addition of argon (Ar) bubbles did not disturb the electrical discharge. It was also found that the Ar emission peak at 750 nm is linearly related to the peaks of the other major species of interest (OH, H, and O) and that the slopes of these lines depend upon the solution conductivities. Therefore, the calibration method allows comparison of the radical generation rates in solutions of different conductivity. Hydrogen $(hbox{H}_{2})$, oxygen $(hbox{O}_{2})$, and hydrogen peroxide $(hbox{H}_{2}hbox{O}_{2})$ were measured using gas chromatography and spectrophotometric methods. The results showed that OH radicals and $hbox{H}_{2}hbox{O}_{2}$ decreased with increasing solution conductivity consistently with previous results. The intensities of O and H radicals and the generation rates of $hbox{H}_{2}$ and $hbox{O}_{2}$ were found to have extrema values at a conductivity of 150 $muhbox{S/cm}$, and these results in combination with the electrical diagnostics (current waveform and overall power input) and images of the discharge channels imply changes in discharge properties at this cond-n-nuctivity due partly to power input changes from the spark gap. This work clearly demonstrates the close coupling of radical and molecular species formation in liquid phase electrical discharge.
机译:在具有点对平面电极几何形状的反应器中,通过光发射光谱法研究了溶液电导率对液相脉冲放电的影响。羟基(OH)基,氢(H)基和氧(O)基的发射强度使用发射强度校准方法进行测量,该方法使用氩气作为化学光度计。对照实验表明,添加氩气(Ar)气泡不会干扰放电。还发现在750 nm处的Ar发射峰与其他感兴趣的主要物种(OH,H和O)的峰线性相关,并且这些线的斜率取决于溶液的电导率。因此,该校准方法可以比较不同电导率溶液中自由基的产生速率。氢$(hbox {H} _ {2})$,氧$(hbox {O} _ {2})$和过氧化氢$(hbox {H} _ {2} hbox {O} _ {2}) $使用气相色谱法和分光光度法测量。结果表明,OH自由基和$ hbox {H} _ {2} hbox {O} _ {2} $随溶液电导率的增加而降低,与以前的结果一致。发现O和H自由基的强度以及$ hbox {H} _ {2} $和$ hbox {O} _ {2} $的生成率在电导率为150 $ muhbox {S / cm时具有极值。 } $,并且这些结果与电气诊断(电流波形和总功率输入)相结合,放电通道的图像暗示了在这种con-n-nuctivity情况下放电特性的变化,部分原因是来自火花隙的功率输入变化。这项工作清楚地证明了液相放电中自由基和分子种类形成的紧密耦合。

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