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Interband cascade laser absorption sensor for real-time monitoring of formaldehyde filtration by a nanofiber membrane

机译:间隙级联激光吸收传感器,用于实时监测纳米纤维膜的甲醛过滤

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摘要

It is important to reduce the indoor formaldehyde (H2CO) level to improve indoor air quality. To investigate the H2CO filtration by a novel nanofiber membrane made from metal-organic frameworks (MOFs), we developed a laser absorption gas sensor for real-time H2CO monitoring using a room-temperature interband cascade laser (ICL) emitting at 3.6 mu m. Wavelength modulation spectroscopy combined with a multipass gas cell (36 m path length) was implemented to achieve a detection sensitivity of 3 ppb H2CO at 1-s averaging time. We custom-designed a permeation H2CO generator that produces reference H2CO/N-2 mixtures with an uncertainty of 6.4% in concentration. With the time-resolved continuous measurements, we observed a high filtration efficiency of 83% for the MOF filter, which, however, decreases linearly to 30% after operating for 3 h. Hence, the ICL-based gas sensor has proved to be a promising technique to assess novel nanomaterials for indoor air purification and pollutant control applications. (C) 2018 Optical Society of America
机译:重要的是减少室内甲醛(H2CO)水平以改善室内空气质量。为了研究由金属 - 有机框架(MOF)制成的新型纳米纤维膜(MOF)的H2CO过滤,我们开发了一种用于实时H2CO监测的激光吸收气体传感器,使用在3.6μm的3.6μm上发射。利用波长调制光谱与多脂气体电池(36M路径长度)进行实施,以在1-S平均时间实现3 ppb H2co的检测灵敏度。我们定制设计了渗透H2Co发生器,产生参考H2CO / N-2混合物,其不确定度为6.4%。随着时间分辨的连续测量,我们观察到MOF过滤器的高过滤效率为83%,然而,在操作3小时后,该MOF过滤器的高滤波器效率为83%。因此,基于ICL的气体传感器已被证明是评估用于室内空气净化和污染物控制应用的新型纳米材料的有希望的技术。 (c)2018年光学学会

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  • 来源
    《Applied optics》 |2018年第27期|共6页
  • 作者单位

    Chinese Univ Hong Kong Dept Mech &

    Automat Engn Shatin Hong Kong Peoples R China;

    Chinese Univ Hong Kong Dept Mech &

    Automat Engn Shatin Hong Kong Peoples R China;

    Chinese Univ Hong Kong Dept Mech &

    Automat Engn Shatin Hong Kong Peoples R China;

    Chinese Univ Hong Kong Dept Mech &

    Automat Engn Shatin Hong Kong Peoples R China;

    Chinese Univ Hong Kong Dept Mech &

    Automat Engn Shatin Hong Kong Peoples R China;

    Chinese Univ Hong Kong Dept Mech &

    Automat Engn Shatin Hong Kong Peoples R China;

    Chinese Univ Hong Kong Dept Mech &

    Automat Engn Shatin Hong Kong Peoples R China;

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  • 正文语种 eng
  • 中图分类 应用;
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