首页> 外文会议>Industry Applications Conference, 1998. Thirty-Third IAS Annual Meeting. The 1998 IEEE >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 (LIF) using a tunable KrF excimer laser in an atmospheric pressure discharge plasma. In that LIF, all of the OH (A/sup 2//spl Sigma/-X/sup 2//spl Pi/(3,0)) branches were identified within a tunable range of the laser. A time evolution of OH density showed that OH density increased with humidity and oxygen concentration. This results indicates OH radicals were mainly produced by chemical reactions of H/sub 2/O with O radicals. There could be another OH production process other than H/sub 2/O+O/spl rarr/2OH. OH generated by the another reaction reached a peak at about 5 /spl mu/s after discharge. It may have been a collisional dissociation of H/sub 2/O with electrons. OH density augmented after 0.6-/spl mu/s pulsed discharge for several tens /spl mu/s, then decreasing exponentially. The OH lifetime shortened with increasing pressure. This result implies OH were mainly decreased by a reaction with NO/sub 2/ generated from O/sub 2/ and N/sub 2/. Two-dimensional OH distribution was also measured using two-dimensional LIF (2-D LIF) technique. They showed OH radicals proceeded uniformly along a discharge path, then decreasing with horizontal diffusion.
机译:使用可调KrF受激准分子激光器在大气压放电等离子体中通过激光诱导荧光(LIF)测量羟基自由基。在该LIF中,所有的OH(A / sup 2 // spl Sigma / -X / sup 2 // spl Pi /(3,0))分支都在激光器的可调范围内被识别。 OH浓度随时间的变化表明OH浓度随湿度和氧气浓度而增加。该结果表明OH自由基主要是由H / sub 2 / O与O自由基的化学反应产生的。除H / sub 2 / O + O / spl rarr / 2OH外,可能还有其他OH生产过程。放电后,另一个反应生成的OH达到峰值,约为5 / spl mu / s。这可能是H / sub 2 / O与电子的碰撞解离。在0.6- / spl mu / s的脉冲放电后,OH密度增加了几十个/ spl mu / s,然后呈指数下降。 OH的寿命随着压力的增加而缩短。该结果暗示OH主要通过与由O / sub 2 /和N / sub 2 /生成的NO / sub 2 /的反应而降低。还使用二维LIF(2-D LIF)技术测量了二维OH分布。他们显示OH自由基沿着放电路径均匀进行,然后随着水平扩散而降低。

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