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首页> 外文期刊>Applied physics >Active standoff detection of CH4 and N2O leaks using hard-target backscattered light using an open-path quantum cascade laser sensor
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Active standoff detection of CH4 and N2O leaks using hard-target backscattered light using an open-path quantum cascade laser sensor

机译:使用开路量子级联激光传感器使用硬目标背向散射光主动检测CH4和N2O泄漏

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摘要

Fugitive gas emissions from agricultural or industrial plants and gas pipelines are an important environmental concern as they contribute to the global increase of greenhouse gas concentrations. Moreover, they are also a security and safety concern because of possible risk of fire/explosion or toxicity. This study presents standoff detection of CH4 and N2O leaks using a quantum cascade laser open-path system that retrieves path-averaged concentrations by collecting the backscattered light from a remote hard target. It is a true standoff system and differs from other open-path systems that are deployed as point samplers or long-path transmission systems that use retroreflectors. The measured absorption spectra are obtained using a thermal intra-pulse frequency chirped DFB quantum cascade laser at similar to 7.7 mu m wavelength range with similar to 200 ns pulse width. Making fast time resolved observations, the system simultaneously realizes high spectral resolution and range to the target, resulting in path-averaged concentration retrieval. The system performs measurements at high speed similar to 15 Hz and sufficient range (up to 45 m, similar to 148 feet) achieving an uncertainty of 3.1 % and normalized sensitivity of 3.3 ppm m Hz(-1/2) for N2O and 9.3 % and normalized sensitivity of 30 ppm m Hz(-1/2) for CH4 with a 0.31 mW average power QCL. Given these characteristics, this system is promising for mobile or multidirectional search and remote detection of gas leaks.
机译:农业或工业厂房和天然气管道的逸散性气体排放是全球关注的重要环境问题,因为它们助长了全球温室气体浓度的上升。此外,由于可能存在着火/爆炸或中毒的危险,它们也是安全和安全问题。这项研究提出了使用量子级联激光开放路径系统对CH4和N2O泄漏进行隔离检测,该系统通过收集来自远程硬目标的反向散射光来获取路径平均浓度。它是真正的隔离系统,不同于其他部署为点采样器或使用后向反射器的长距离传输系统的开放路径系统。使用热脉冲内频率chi DFB量子级联激光器获得测量的吸收光谱,其波长范围相似于7.7μm,脉冲宽度相似于200 ns。进行快速的时间分辨观测,该系统同时实现了高光谱分辨率和到目标的范围,从而实现了路径平均浓度检索。该系统以类似于15 Hz的高速进行测量,并具有足够的范围(最大45 m,类似于148英尺),不确定度为3.1%,N2O和9.3%的归一化灵敏度为3.3 ppm m Hz(-1/2) CH4的归一化灵敏度为30 ppm m Hz(-1/2),平均功率QCL为0.31 mW。鉴于这些特性,该系统有望用于移动或多向搜索以及远程检测气体泄漏。

著录项

  • 来源
    《Applied physics》 |2016年第5期|121.1-121.11|共11页
  • 作者单位

    CUNY City Coll, New York, NY 10031 USA;

    CUNY City Coll, New York, NY 10031 USA;

    Brookhaven Natl Lab, Upton, NY 11973 USA;

    CUNY City Coll, New York, NY 10031 USA;

    CUNY City Coll, New York, NY 10031 USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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