氩
微波食品加热
热电偶
等离子体
分析化学(期刊)
羽流
温度测量
大气压力
氮气
化学
离子源
等离子体诊断
质谱法
原子物理学
材料科学
热力学
物理
有机化学
复合材料
气象学
量子力学
色谱法
作者
Lei Deng,Guixin Zhang,Cheng Liu,Hong Xie
标识
DOI:10.1109/plasma.2017.8496270
摘要
In this study, gas temperature measurements of argon, nitrogen, and air microwave plasma are achieved by the molecular emission spectrometry of the $A^{2} \sum ^{+} \rightarrow X^{2} \prod _{r}$ electronic system of OH radical [1, 2] , and the gas temperatures at different microwave power and gas flow rate are explored, the axial temperature distributions of nitrogen and air microwave plasma plume are measured. The experimental results show that the microwave plasma core temperature is higher than 2000 K at different working conditions, even up to over 6000 K in air microwave plasma. At the same working condition, the three kind of microwave plasma gas temperature meet $T_{Ar}\, \lt T_{N2}\, \lt T_{Air}$. The gas temperature increases slightly with the increase of microwave power, decreases slightly with the decrease of gas flow overall. The gas temperature of nitrogen and air microwave plasma plume reduces quickly along the axial direction. In order to verify the accuracy of molecular emission spectrometry, the thermocouple is used as a comparison to measure the temperature of the DBD argon plasma. Experiments show that the temperature measurement results of molecular emission spectrometry and thermocouple are very consistent.
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