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Optical Path Optimal Length for Ultraviolet Ammonia Detection With a Compact and Flexible Gas-Absorption Cell

机译:具有紧凑型气体吸收细胞的紫外线检测光路最佳长度

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摘要

A flexible and detachable gas-absorption cell with variable optical path length was designed to obtain the optical path optimal length for gas detection based on ultraviolet differential optical absorption spectroscopy. A model of the gas-absorption cell structure was established based on Lambert-Beer law. This model demonstrates the effect of different optical path lengths on ammonia detection, and the optical path optimal length of the proposed system is 1.6 m. A gas detection system was developed with the proposed gas-absorption cell, and the feasibility and stability of the system were evaluated at different ammonia concentrations. Owing to the influence of light loss induced by spherical concave mirror reflection and ammonia absorption, the detection results for ammonia at a concentration of 17 ppm are more accurate when the optical path length is 1.6 m versus 0.8 and 2.4 m. The error is less than 0.6% that is consistent with the simulation results. When the optical path length is 1.6 m, the linearity between the detection and the standard values reaches 0.9993. The standard deviation of the detection results is less than 0.3 ppm, indicating good stability of the system. The minimum detection limit of 0.43 ppm per meter is achieved. Water has a slight influence on the results of ammonia concentration detection. When the relative humidity is 7.5%, the response time of the system is 120 s that becomes longer with the increase of relative humidity. This method can be used to detect other gases with high precision.
机译:设计具有可变光路长度的柔性且可拆卸的气体吸收电池,以获得基于紫外差分光学吸收光谱的气体检测光路最佳长度。基于兰伯特啤酒法确定了气体吸收细胞结构模型。该模型展示了不同光路长度对氨检测的影响,并且所提出的系统的光路最佳长度为1.6米。利用所提出的气体吸收细胞开发了气体检测系统,并在不同的氨浓度下评估系统的可行性和稳定性。由于球形凹镜反射和氨吸收诱导的光损失的影响,当光路长度为1.6米与0.8和2.4μm时,浓度为17ppm的氨的检测结果更准确。误差小于0.6%,这与仿真结果一致。当光路长度为1.6米时,检测和标准值之间的线性度达到0.9993。检测结果的标准偏差小于0.3ppm,表明系统的稳定性良好。实现每米0.43ppm的最小检测限。水对氨浓度检测的结果有轻微影响。当相对湿度为7.5%时,系统的响应时间是120秒,随着相对湿度的增加而变长。该方法可用于检测具有高精度的其他气体。

著录项

  • 来源
    《IEEE sensors journal》 |2021年第16期|17889-17897|共9页
  • 作者单位

    Shanghai Univ Shanghai Inst Adv Commun & Data Sci Joint Int Res Lab Specialty Fiber Opt & Adv Commu Key Lab Specialty Fiber Opt & Opt Access Networks Shanghai 200444 Peoples R China;

    Shanghai Univ Shanghai Inst Adv Commun & Data Sci Joint Int Res Lab Specialty Fiber Opt & Adv Commu Key Lab Specialty Fiber Opt & Opt Access Networks Shanghai 200444 Peoples R China;

    Shanghai Univ Shanghai Inst Adv Commun & Data Sci Joint Int Res Lab Specialty Fiber Opt & Adv Commu Key Lab Specialty Fiber Opt & Opt Access Networks Shanghai 200444 Peoples R China;

    Shanghai Univ Shanghai Inst Adv Commun & Data Sci Joint Int Res Lab Specialty Fiber Opt & Adv Commu Key Lab Specialty Fiber Opt & Opt Access Networks Shanghai 200444 Peoples R China;

    Shanghai Univ Shanghai Inst Adv Commun & Data Sci Joint Int Res Lab Specialty Fiber Opt & Adv Commu Key Lab Specialty Fiber Opt & Opt Access Networks Shanghai 200444 Peoples R China;

    Shanghai Univ Shanghai Inst Adv Commun & Data Sci Joint Int Res Lab Specialty Fiber Opt & Adv Commu Key Lab Specialty Fiber Opt & Opt Access Networks Shanghai 200444 Peoples R China;

    Shanghai Univ Shanghai Inst Adv Commun & Data Sci Joint Int Res Lab Specialty Fiber Opt & Adv Commu Key Lab Specialty Fiber Opt & Opt Access Networks Shanghai 200444 Peoples R China;

    Shanghai Univ Shanghai Inst Adv Commun & Data Sci Joint Int Res Lab Specialty Fiber Opt & Adv Commu Key Lab Specialty Fiber Opt & Opt Access Networks Shanghai 200444 Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Optical reflection; Absorption; Optical sensors; Mirrors; Reflection; Ammonia; Adaptive optics; Ammonia; detection limit; gas-absorption cell; optical path optimal length; ultraviolet differential optical absorption spectroscopy;

    机译:光学反射;吸收;光学传感器;镜子;反射;氨;自适应光学;氨;检测极限;气体吸收细胞;光路最佳长度;紫外线差分光学吸收光谱;

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