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基于石英增强光热光谱法的超高度灵敏氯化氢检测

Ultra-Highly Sensitive Hydrogen Chloride Detection Based on Quartz-Enhanced Photothermal Spectroscopy.

作者信息

Ma Yufei, Lang Ziting, He Ying, Qiao Shunda, Li Yu

机构信息

National Key Laboratory of Science and Technology on Tunable Laser, Harbin Institute of Technology, Harbin 150001, China.

出版信息

Sensors (Basel). 2021 May 20;21(10):3563. doi: 10.3390/s21103563.

Abstract

Combining the merits of non-contact measurement and high sensitivity, the quartz-enhanced photothermal spectroscopy (QEPTS) technique is suitable for measuring acid gases such as hydrogen chloride (HCl). In this invited paper, we report, for the first time, on an ultra-highly sensitive HCl sensor based on the QEPTS technique. A continuous wave, distributed feedback (CW-DFB) fiber-coupled diode laser with emission wavelength of 1.74 µm was used as the excitation source. A certified mixture of 500 ppm HCl:N was adapted as the analyte. Wavelength modulation spectroscopy was used to simplify the data processing. The wavelength modulation depth was optimized. The relationships between the second harmonic (2) amplitude of HCl-QEPTS signal and the laser power as well as HCl concentration were investigated. An Allan variance analysis was performed to prove that this sensor had good stability and high sensitivity. The proposed HCl-QEPTS sensor can achieve a minimum detection limit (MDL) of ~17 parts per billion (ppb) with an integration time of 130 s. Further improvement of such an HCl-QEPTS sensor performance was proposed.

摘要

石英增强光热光谱(QEPTS)技术兼具非接触测量和高灵敏度的优点,适用于测量诸如氯化氢(HCl)等酸性气体。在这篇特邀论文中,我们首次报道了基于QEPTS技术的超高灵敏度HCl传感器。采用发射波长为1.74 µm的连续波、分布反馈(CW-DFB)光纤耦合二极管激光器作为激发源。选用经认证的500 ppm HCl:N混合气体作为分析物。采用波长调制光谱法简化数据处理。优化了波长调制深度。研究了HCl-QEPTS信号的二次谐波(2f)幅度与激光功率以及HCl浓度之间的关系。进行了阿伦方差分析,以证明该传感器具有良好的稳定性和高灵敏度。所提出的HCl-QEPTS传感器在积分时间为130 s时,最低检测限(MDL)可达约17十亿分之一(ppb)。还提出了进一步提高这种HCl-QEPTS传感器性能的方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/18cb/8160860/d8dc56956c96/sensors-21-03563-g001.jpg

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