Acta Optica Sinica, Volume. 40, Issue 24, 2430001(2020)
Quartz Tuning Fork Enhanced Photoacoustic Spectroscopic Methane Detection System
Fig. 1. Quartz enhanced spectrophone with different structures. (a) On-beam structure; (b) off-beam structure
Fig. 2. Absorption spectra of CH4 and H2O at standard atmospheric pressure and 1 cm optical path length. (a) Absorption spectra of CH4 (volume fraction of 5×10-4) in the range of 1620-1680 nm; (b) absorption spectra of H2O (volume fraction of 1%) and CH4 (volume fraction of 5×10-4) in the range of 1653-1654 nm
Fig. 3. CH4 detection system and miniature gas chamber. (a) Diagram of CH4 detection system; (b) miniature gas chamber; (c) mechanical design model of miniature gas chamber
Fig. 4. Variation of normalized 2f signal amplitude and modulation depth with modulation voltage signal amplitude
Fig. 6. Measured 2f signal amplitude under different CH4 concentration levels and relationship curve between CH4 concentration and averaged 2f signal amplitude. (a) 2f signal amplitude; (b) relationship curve between CH4 concentration and averaged 2f signal amplitude
Fig. 8. Variation curve of CH4 concentration measured in N2 environment with average time and variation curve of Allan variance with average time. (a) Variation curve of CH4 concentration with average time; (b) Allan variance with average time
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Minghui Zhang, Lien Hu, Dan Yao, Yue Yang, Chuantao Zheng, Yiding Wang. Quartz Tuning Fork Enhanced Photoacoustic Spectroscopic Methane Detection System[J]. Acta Optica Sinica, 2020, 40(24): 2430001
Category: Spectroscopy
Received: Aug. 14, 2020
Accepted: Sep. 15, 2020
Published Online: Nov. 23, 2020
The Author Email: Zheng Chuantao (zhengchunatao@jlu.edu.cn)