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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Absolute production rate measurements of nitric oxide by an atmospheric pressure plasma jet (APPJ)
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Absolute production rate measurements of nitric oxide by an atmospheric pressure plasma jet (APPJ)

机译:通过大气压等离子体射流(APPJ)测量一氧化氮的绝对生产率

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Tunable diode laser absorption spectroscopy (TDLAS) has been applied to measure the absolute production rate of NO molecules in the gas phase of an atmospheric pressure plasma jet (APPJ) operating at rf (13.56 MHz) in argon with small (up to 1%) admixtures of air. The resulting NO production rates were found to be in the range (0.1-80) x 10(-3) sccm or (0.05-35) x 10(18) molecules s-(1) depending on the experimental conditions. Maximum rates were obtained at 0.2% air. For TDLAS measurements the APPJ was arranged inside an astigmatic multi-pass cell of Herriott type with 100m absorption length. The insertion into a closed volume differs slightly from the normal, open operation with the jet propagating freely into air. Therefore, the measuring results are compared with optical emission of the open jet to verify equivalent experimental conditions. The dependence of the optical emission of NO (237 nm) on power and gas mixture has been measured. The similar shape of the dependence of absorption and emission signals gives evidence that the comparability of experimental conditions is sufficiently satisfied. It is concluded that the NO production rate of the APPJ in ambient air can be characterized using TDLAS and provides reliable results in spite of differing experimental conditions due to the set-up.
机译:可调谐二极管激光吸收光谱法(TDLAS)已用于测量在rf(13.56 MHz)下在氩气中工作的大气压等离子体射流(APPJ)气相中NO分子的绝对生产率,该气体的体积小(可达1%)空气的混合物。根据实验条件,发现产生的NO产生速率在(0.1-80)x 10(-3)sccm或(0.05-35)x 10(18)分子s-(1)的范围内。在0.2%的空气中获得最大速率。为了进行TDLAS测量,将APPJ布置在具有100m吸收长度的Herriott型散光多通晶胞内。进入封闭空间的插入与正常的打开操作略有不同,射流可自由传播到空气中。因此,将测量结果与开放式射流的光发射进行比较,以验证等效的实验条件。已测量了NO(237 nm)的光发射对功率和气体混合物的依赖性。吸收和发射信号的依存关系的相似形状提供了足够满足实验条件可比性的证据。结论是,尽管设置不同,但实验条件不同,可以使用TDLAS表征APPJ在环境空气中的NO生成速率,并提供可靠的结果。

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