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Diagnosis of OH Radicals in Air Negative Pulsed Discharge With Nozzle-Cylinder Electrode by Optical Emission Spectroscopy

机译:发射光谱法通过喷嘴-圆柱电极诊断空气负脉冲放电中的OH自由基

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摘要

OH radicals (A2Σ→ X2Π, 0-0) generated during air negative pulsed discharge are diagnosed in a nozzle-cylinder reactor by optical emission spectroscopy (OES). The nozzle high-voltage discharge electrode is put in the middle of the cylinder steel reactor which is grounded. The effects of the pulse repetition rate, the humidity of the air in the reactor, the outer diameter of the nozzle electrode, and the flow rate of the air through the reactor on the relative intensity of OH radicals'' (A2Σ→ X2Π, 0-0) OES were investigated. Results show that higher pulse repetition rate, lower flow rate of the air, or smaller diameter of the nozzle is helpful to get stronger relative intensity of OH radicals'' (A2 Σ→ X2Π, 0-0) OES. To some extent, OH radicals'' ( A2Σ→ X2Π, 0-0) yield can be increased by increasing the humidity of the air; however, it will be decreased when the humidity is too high. In our experiments, the humidity of the air being 55% is the best.
机译:通过光发射光谱法(OES)在喷嘴缸式反应器中诊断空气负脉冲放电过程中产生的OH自由基(A 2 Σ→X 2 Π,0-0) 。喷嘴高压放电电极放在接地的圆柱钢反应堆的中间。脉冲重复频率,反应器中空气的湿度,喷嘴电极的外径以及空气通过反应器的流速对OH自由基的相对强度的影响''(A 2研究了Σ→X 2 Π,0-0)OES。结果表明,较高的脉冲重复频率,较低的空气流量或较小的喷嘴直径有助于获得更强的OH自由基相对强度''(A 2 Σ→X 2 Π,0-0)OES。通过增加空气湿度可以提高OH自由基的收率(A 2 Σ→X 2 Π,0-0);但是,如果湿度过高,则会降低湿度。在我们的实验中,空气湿度最好为55%。

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  • 来源
    《Plasma Science, IEEE Transactions on》 |2012年第5期|p.1395-1398|共4页
  • 作者

    Ming Sun;

  • 作者单位
  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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