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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Spatially and temporally resolved H and OH densities in a nanosecond pulsed plasma jet: an analysis of the radical generation, transport, recombination and memory effects
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Spatially and temporally resolved H and OH densities in a nanosecond pulsed plasma jet: an analysis of the radical generation, transport, recombination and memory effects

机译:在纳秒脉冲等离子体射流中的空间和时间上分辨H和OH密度:自由基生成,运输,重组和记忆效应分析

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摘要

Cold atmospheric pressure plasma jets (APPJs) enable the generation of a large flux of highly reactive species to heat sensitive substrates at near ambient temperatures. Nonetheless, the experimental determination of reactive species inside APPJs, while exceedingly important, has not been reported in significant detail. In this work, we report the time-resolved axial density of hydroxyl (OH) and hydrogen radicals (H) in an APPJ device and its effluent operating in a He-H2O mixture using 1D laser induced fluorescence (LIF) and two-photon absorption LIF (TALIF). The results show that H and OH are mainly generated between the electrodes in the APPJ rather than by the guided streamer. The produced H and OH inside the jet are convectively transported to the jet effluent and determine the H and OH densities in jet effluent. The dominant production and destruction mechanisms of H and OH were obtained from a 0D model. The different production mechanisms of H and OH can explain the change in memory effect observed for OH (and not for H) for varying pulse repetition rates of the plasma generation.
机译:冷大气压等离子体射流(APPJ)能够在接近环境温度的情况下,向热敏基板产生大量高活性物质。尽管如此,APPJ内活性物质的实验测定虽然非常重要,但尚未得到详细报道。在这项工作中,我们使用1D激光诱导荧光(LIF)和双光子吸收LIF(TALIF)报告了APPJ装置中羟基(OH)和氢自由基(H)的时间分辨轴向密度及其在He-H2O混合物中运行的流出物。结果表明,H和OH主要由APPJ中的电极之间产生,而不是由引导流光产生。射流中产生的H和OH被对流输送至射流流出物,并确定射流流出物中的H和OH密度。从0D模型得到了H和OH的主要生成和破坏机制。H和OH的不同产生机制可以解释在等离子体产生的不同脉冲重复率下观察到的OH(而不是H)记忆效应的变化。

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