利用光谱分析和散射技术测定非热常压等离子体射流中气体温度的比较研究,用于等离子体催化剂测量

W. Adress, William Graham
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引用次数: 0

摘要

对测量等离子体气体温度的不同方法进行了比较和验证。研究依赖于光学发射光谱 OES、激光散射技术和线宽机制。研究了 380 nm 附近第二正系统 SPS(C3 ∏+u - B3 ∏+g)、337.1 nm 处氮分子第二正系统 SPS(C3 ∏+u - B3 ∏+g)和 391.4 nm 处氮离子第一负系统 FNS(B2Σu+→X2Σg+)的旋转温度。此外,还利用 532 nm 波长的拉曼散射光谱来测量等离子体射流中的气体温度。还计算了发射线展宽法的气体温度。使用模拟柴油燃料,证实了非热等离子体在低温条件下协助 Ag/Al2O3 催化剂还原氮氧化物的作用。重要的是,在低气体温度下,观察到氮氧化物和碳氢化合物的氧化活性都很高。研究发现,在等离子反应器的不同操作条件下,气体温度与催化剂的转化效率之间存在明显的相关性。这项研究的主要目的是证实,与传统的热活化相比,非热等离子体在低气体温度下的催化剂活化过程中发挥了重要作用。
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A comparative study of gas temperature determination in non-thermal atmospheric pressure plasma jet by spectral analysis and scattering technique for plasma-catalyst measurements
Comparison and validation of different methods for the measurements of plasma gas temperature were studied. The investigations depend on optical emission spectroscopy OES, laser scattering technique, and line-broadening mechanisms. The rotational temperature of the second positive system SPS (C3 ∏+u - B3 ∏+g) around 380 nm, second positive system SPS at 337.1 nm of nitrogen molecule (C3 ∏+u - B3 ∏+g), and first negative system FNS at 391.4 nm of nitrogen ion (B2Σu+→X2Σg+) were investigated. Moreover, Raman scattering spectra at 532 nm were used to measure the gas temperature in the plasma jet. Gas temperature from the emission line broadening method was also calculated. The role of non-thermal plasma in assisting NOx reduction over an Ag/Al2O3 catalyst at low temperatures using simulated diesel fuels was confirmed. Importantly, a significant activity of both NOx and hydrocarbons oxidation was observed and obtained at low gas temperatures. It was found that there is a clear correlation between the gas temperature and the conversion efficiency of the catalyst under different operating conditions of the plasma reactor. The main objective of this investigation was to confirm the important role of the non-thermal plasma in catalyst activation at low gas temperatures compared to traditional thermal activation.
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