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A novel lidar system for CH4 and VOC's detection of fugitive emissions and environmental monitoring

机译:用于CH4和VOC的无组织排放物检测和环境监测的新型激光雷达系统

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This study presents an overview of the recently results obtained by a novel concept of a lidar to remotely monitor methane and volatile organic compound including aerosols and fugitive gas emissions from pipelines, waste disposal areas and tankages. The system works based on Raman and fluorescence scattering principles by emission of a 355 nm beam (3rd Nd:YAG harmonic) and detection of the wavelengths at 355 nm (elastic), 353 nm (oxygen + nitrogen rotational Raman) and 396 nm (methane vibrational Raman) and alternatively the system can be switched to a fluorescence lidar based on a 32-channel PMT coupled to an spectrometer to be able to observe fluorescence scattering caused by VOC's and aerosols. This paper shows a summary of the results obtained in the preliminary campaigns, which were carried out under different conditions to be adopted as benchmark for the system performance regarding detection limits, calibration capabilities, and time vs range resolution, in order to optimize the system performance.
机译:这项研究概述了通过激光雷达的新颖概念获得的最新成果,该激光雷达用于远程监测甲烷和挥发性有机化合物,包括管道,废物处理区和储罐中的气溶胶和散逸性气体排放。该系统基于拉曼和荧光散射原理,通过发射355 nm光束(第三次Nd:YAG谐波)并检测355 nm(弹性),353 nm(氧气+氮气旋转拉曼)和396 nm(甲烷)的波长振动拉曼光谱仪),或者将系统切换到基于光谱仪的32通道PMT的荧光激光雷达,从而能够观察由VOC和气溶胶引起的荧光散射。本文显示了在初步研究中获得的结果的摘要,这些结果是在不同条件下进行的,这些结果被用作系统性能的基准,包括检测限,校准能力和时间与范围分辨率,以优化系统性能。

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