\begin{document}$ \sigma_{\rm O_2} $\end{document} = (1.25 ± 0.08)×10–20 cm2. The portable calibration device is established by establishing the corresponding relationship between ozone concentration and light intensity. By changing the concentration of water vapor in the flow tube, the OH radicals with concentrations in a range of 3×108-2.8×109 cm–3 are produced, which are used to calibrate the atmospheric OH radical measurement instrument based on LIF technique. The fluorescence signal has a good correlation with the concentration of OH. The calibration device of OH radical is used to calibrate the LIF system during “a comprehensive study of the ozone formation mechanism in Shenzhen” (STORM) field observation in Autumn 2018. The calibration results under the field condition show that the calibration uncertainty of the calibration device for LIF instrument is 13.0%, which has good stability and accuracy."> - 必威体育下载

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    Wang Feng-Yang, Hu Ren-Zhi, Xie Pin-Hua, Wang Yi-Hui, Chen Hao, Zhang Guo-Xian, Liu Wen-Qing
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    • Abstract views:7148
    • PDF Downloads:100
    • Cited By:0
    Publishing process
    • Received Date:21 January 2020
    • Accepted Date:11 February 2020
    • Published Online:05 May 2020

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