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光腔衰荡光谱法测量大气中的NO3和N2O5
引用本文:吴 昊,陈 剑,刘安雯,胡水明,张劲松.光腔衰荡光谱法测量大气中的NO3和N2O5[J].化学物理学报,2020,33(1):1-7.
作者姓名:吴 昊  陈 剑  刘安雯  胡水明  张劲松
作者单位:中国科学技术大学合肥微尺度物质科学国家研究中心,合肥 230026,中国科学技术大学化学与材料科学学院,合肥 230026,中国科学技术大学化学与材料科学学院,合肥 230026,中国科学技术大学合肥微尺度物质科学国家研究中心,合肥 230026;中国科学技术大学化学与材料科学学院,合肥 230026,美国加州大学河滨分校化学系和大气污染研究中心,河滨 92521
摘    要:本文应用基于二极管激光器的双路光腔衰荡光谱技术,分别对大气中NO3和N2O5浓度进行监测. 通过使用实验室标准样校正有效吸收腔长比RL和系统的总损耗系数?,并获得了NO3有效吸收截面. 该装置在时间分辨率为1 s时,对NO3的测量灵敏度达到1.1 pptv,N2O5被在线转换成NO3,从而被另一路光腔衰荡光谱装置探测. 利用该装置,对合肥市区冬季夜间大气中的NO3,N2O5浓度进行了实时监测. 通过对比一次大气快速清洁过程中氮氧化物、臭氧、PM2.5等组分的浓度变化,讨论了大气环境下可能影响NO3及N2O5浓度的因素.

关 键 词:光腔衰荡光谱,NO3自由基,N2O5,大气监测
收稿时间:2019/10/6 0:00:00

Cavity Ring-Down Spectroscopy Measurements of Ambient NO3 and N2O5
Hao Wu,Jian Chen,An-wen Liu,Shui-ming Hu and Jing-song Zhang.Cavity Ring-Down Spectroscopy Measurements of Ambient NO3 and N2O5[J].Chinese Journal of Chemical Physics,2020,33(1):1-7.
Authors:Hao Wu  Jian Chen  An-wen Liu  Shui-ming Hu and Jing-song Zhang
Abstract:NO3 and N2O5 are important participants in nocturnal atmospheric chemical processes, and their concentrations are of great significance in the study of the mechanism of nocturnal atmospheric chemical reactions. A two-channel diode laser based cavity ring-down spectroscopy (CRDS) instrument was developed to monitor the concentrations of NO3 and N2O5 in the atmosphere. The effective absorption length ratio and the total loss coefficient of the instrument were calibrated using laboratory standard samples. The effective absorption cross section of NO3 at 662 nm was derived. A detection sensitivity of 1.1 pptv NO3 in air was obtained at a time resolution of 1 s. N2O5 was converted to NO3 and detected online in the second CRDS channel. The instrument was used to monitor the concentrations of NO3 and N2O5 in the atmosphere of winter in Hefei in real time. By comparing the concentration changes of pollutants such as nitrogen oxides, ozone, PM2.5 in a rapid air cleaning process, the factors affecting the concentrations of NO3 and N2O5 in the atmosphere were discussed.
Keywords:Cavity ring-down spectroscopy  Nitrate radical  Dinitrogen pentoxide  Field measurement
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