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首页> 外文期刊>IEEE Transactions on Industry Applications >Measurement of hydroxyl radicals in an atmospheric pressure discharge plasma by using laser-induced fluorescence
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Measurement of hydroxyl radicals in an atmospheric pressure discharge plasma by using laser-induced fluorescence

机译:激光诱导荧光法测量大气压放电等离子体中的羟基自由基

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Hydroxyl radicals were measured by laser-induced fluorescence using a tunable KrF excimer laser in an atmospheric pressure discharge plasma. The temporal behavior of OH radical, generated by a pulsed arc discharge, was measured in the post-discharge region. It was shown that OH radicals were generated by dissociation of H/sub 2/O. The dissociation was mainly affected by oxygen concentration because OH density increased with oxygen concentration. The peak of OH density appeared tens of microseconds after discharge. After the peak, OH decreased exponentially with a decay time constant of tens of microseconds. Since oxygen accelerated the OH decay rate, OH was thought to react with products made by oxygen. Two-dimensional OH density distribution was also observed. OH radicals were generated uniformly along a discharge path, and then decreased in number with diffusion.
机译:在大气压放电等离子体中,使用可调KrF准分子激光,通过激光诱导的荧光测量羟基自由基。在放电后区域中测量由脉冲电弧放电产生的OH自由基的时间行为。结果表明,OH自由基是由H / sub 2 / O离解而产生的。离解主要受氧浓度影响,因为OH浓度随氧浓度增加。放电后,OH浓度的峰值出现了几十微秒。在峰值之后,OH呈指数下降,衰减时间常数为数十微秒。由于氧气加速了OH的降解速率,因此人们认为OH与氧气制造的产物发生反应。还观察到二维OH密度分布。 OH自由基沿着放电路径均匀地生成,然后随着扩散而减少。

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