衰减
解耦(概率)
散射
紫外线
吸收(声学)
吸收光谱法
材料科学
分析化学(期刊)
物理
光学
化学
工程类
色谱法
控制工程
作者
Tonghua Jia,Guangxu Cheng,Sheng Chen,Jiacong Yang
摘要
Ultraviolet differential optical absorption spectroscopy (UV-DOAS) has been successfully applied in long-distance detection of polluting gases in atmosphere. However, the traditional DOAS method will fail if gas absorption signals are annihilated in noisy signals. To address this issue, chlorine (Cl2) was selected as the target gas. In this paper, a DOAS experimental system for open-path detection was developed, and an algorithm for decoupling slow-changing signals of Cl2 and particle matters (PM) was proposed. Firstly, the weight analysis of full spectrum band was carried out based on synergy interval partial least squares (Si-PLS). As a result, low SNR band, Cl2 feature absorption band and non-feature band were matched according to their contribution. Secondly, an equivalent scattering model was established to obtain the light intensity attenuation of PM in the non-feature band. Finally, the signal decoupling was realized by deducting the PM attenuation spectrum from the absorption band of Cl2. This study provides a new feasible method for large scale detection of Cl2 leakage in open environments.
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