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Active Stand-off Detection of Gas Leaks Using a Short Range Hard-target Backscatter Differential Optical Absorption System Based on a Quantum Cascade Laser Transmitter

机译:使用基于量子级联激光发射器的短距离硬度硬度差动光学吸收系统的气体泄漏的主动脱扣检测

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摘要

Fugitive gas emissions from agricultural or industrial plants and gas pipelines are an important environmental concern as they can contribute to the global increase of greenhouse gas concentration. Moreover, they are also a security and safety concern because of possible risk of fire/explosion or toxicity. This study presents gas concentration measurements using a quantum cascade laser open path system (QCLOPS). The system retrieves the pathaveraged concentration of N2O and CH4 by collecting the backscattered light from a scattering target. The gas concentration measurements have a high temporal resolution (68 ms) and are achieved at sufficient range (up to 40 m, ~ 130 feet) with a detection limit of 2.6 ppm CH4 and 0.4 ppm for N2O. Given these characteristics, this system is promising for mobile/multidirectional remote detection and evaluation of gas leaks. The instrument is monostatic with a tunable QCL emitting at ~ 7.7 μm wavelength range. The backscattered radiation is collected by a Newtonian telescope and focused on an infrared light detector. Puffs of N2O and CH4 are released along the optical path to simulate a gas leak. The measured absorption spectrum is obtained using the thermal intra-pulse frequency chirped DFB QCL and is analyzed to obtain path averaged gas concentrations.
机译:农业或工业厂房和天然气管道的逃逸气体排放是一个重要的环境问题,因为它们可以促进全球温室气体浓度的增加。此外,由于可能的火灾/爆炸或毒性风险,它们也是安全和安全问题。本研究呈现了使用量子级联激光开放路径系统(QCLOPS)的气体浓度测量。通过从散射靶中收集反向散射光,系统通过收集反向散射光来检测N2O和CH4的突出浓度。气体浓度测量具有高的时间分辨率(68ms),并且在足够的范围(高达40μm,〜130英尺)以2.6ppm CH4和0.4ppm的检测限而达到。鉴于这些特征,该系统对移动/多向远程检测和气体泄漏的评估有前途。该仪器是单身,可调谐QCL发射在〜7.7μm波长范围内。背散射辐射由牛顿望远镜收集并聚焦在红外光检测器上。 N2O和CH4的吹气沿光路释放,以模拟气体泄漏。使用热脉冲内频率啁啾的DFB QCL获得测量的吸收光谱,并分析以获得路径平均气体浓度。

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