基于量子级联吸收光谱技术的呼气CO检测
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作者单位:

1.浙江师范大学 光学信息检测与显示技术重点实验室,浙江 金华321004;2.浙江光电子研究院,浙江 金华321004;3.金华市广福医院,浙江 金华 321000

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中图分类号:

O433.4

基金项目:

国家自然科学基金(62475240);浙江省重点研发项目( 2022C03066);金华市重点科技攻关项目(2024-1-075);金华市重点项目(2022-4-218)


Exhaled breath gas of CO detection based on quantum cascade laser absorption spectroscopy technique
Author:
Affiliation:

1.Key Laboratory of Optical Information Detection and Display Technology of Zhejiang,Zhejiang Normal University, Jinhua 321004, China;2.Zhejiang Institute of Photoelectronics, Jinhua 321004, China;3.Jinhua Guangfu General Hospital, Jinhua 321000, China

Fund Project:

Supported by the National Natural Science Foundation of China (62475240); Key Research and Development of Zhejiang Province (2022C03066) ; Key Science and Technology project of Jinhua City(2024-1-075)

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    摘要:

    呼气CO浓度作为一些疾病诊断的标志物备受关注,目前CO浓度检测仪存在灵敏度低,响应时间慢的问题。因此采用中心波长为4.59 μm的量子级联激光器和3.8 m多通池搭建一套基于吸收光谱技术的灵敏度高、响应时间快的呼气CO测量系统。采用直接吸收(DAS)和波长调制(WMS)技术对CO浓度检测分析,得到DAS的线性度为0.998,检测限可达3.68×10-8(体积比);WMS技术检测在CO浓度小于6.00×10-6的线性度为0.998,检测限可达3.00×10-9。通过Allan方差分析获得了DAS和WMS的最佳积分时间分别为170 s和250 s,对应的探测极限分别为2.00×10-9和3.00×10-10。最后对14个志愿者进行呼气CO检测,结果表明可以很好区分吸烟者和非吸烟者,为戒烟门诊判断吸烟者情况提供了科学有效的工具。

    Abstract:

    The concentration of exhaled CO as a biomarker for certain diseases has attracted significant attention. However, existing CO concentration detectors suffer from low sensitivity and slow response times. To address this, we developed a high-sensitivity, rapid-response exhaled CO measurement system based on absorption spectroscopy, utilizing a quantum cascade laser with a central wavelength of 4.59 μm and a 3.8 m multi-pass cell. The CO concentration was analyzed using both direct absorption spectroscopy (DAS) and wavelength modulation spectroscopy (WMS). The DAS method demonstrated a linearity of 0.998 with a detection limit of 3.68 × 10??. For WMS, the linearity remained 0.998 at CO concentrations below 6.00 × 10??, achieving a detection limit of 3.00 × 10??. Through Allan variance analysis, optimal integration times of 170 s for DAS and 250 s for WMS were determined, corresponding to improved detection limits of 2.00 × 10?? and 3.00 × 10?1?, respectively. Finally, exhaled CO concentrations from 14 volunteers were measured, demonstrating the system''s capability to distinguish between smokers and non-smokers. This provides a scientifically validated tool for assessing smoking status in clinical smoking cessation programs.

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许侍文,吴华坤,周崇秋,吴晓虞,杨朝凤,吴琼,刘雯,邵杰.基于量子级联吸收光谱技术的呼气CO检测[J].红外与毫米波学报,2025,44(5):770~778]. XU Shi-Wen, WU Hua-Kun, ZHOU Chong-Qiu, WU Xiao-Yu, YANG Chao-Feng, WU Qiong, LIU Wen, SHAO Jie. Exhaled breath gas of CO detection based on quantum cascade laser absorption spectroscopy technique[J]. J. Infrared Millim. Waves,2025,44(5):770~778.]

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  • 收稿日期:2024-11-15
  • 最后修改日期:2025-08-10
  • 录用日期:2025-03-17
  • 在线发布日期: 2025-07-18
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