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A Quantum Cascade Laser-Based Optical Sensor for Continuous Monitoring of Environmental Methane in Dunkirk (France)

机译:基于量子级联激光的光学传感器,用于在敦毛(法国)中的环境甲烷连续监测

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摘要

A room-temperature continuous-wave (CW) quantum cascade laser (QCL)-based methane (CH4) sensor operating in the mid-infrared near 8 mu m was developed for continuous measurement of CH4 concentrations in ambient air. The well-isolated absorption line (7F(2,4) <- 8F(1,2)) of the nu(4) fundamental band of CH4 located at 1255.0004 cm(-1) was used for optical measurement of CH4 concentration by direct absorption in a White-type multipass cell with an effective path-length of 175 m. A 1 sigma (SNR = 1) detection limit of 33.3 ppb in 218 s was achieved with a measurement precision of 1.13%. The developed sensor was deployed in a campaign of measurements of time series CH4 concentration on a site near a suburban traffic road in Dunkirk (France) from 9 to 22 January 2013. An episode of high CH4 concentration of up to ~3 ppm has been observed and analyzed with the help of meteorological parameters combined with back trajectory calculation using the Hybrid Single Particle Lagrangian Integrated Trajectory (HYSPLIT) model of NOAA.
机译:在中红外线近8μm中操作的室温连续波(CW)量子级联激光(QCL)基础的甲烷(CH4)传感器,用于连续测量环境空气中的CH 4浓度。 um(4)位位于1255.0004cm(-1)的Nu(4)的粗孔的吸收管线(7F(2,4)< - 8f(1,2))用于通过直接进行CH4浓度的光学测量CH4浓度在白色型多辅元电池中吸收,有效路径长度为175米。在218秒内为13.3ppb的1 sigma(SNR = 1)检测限为1.13%的测量精度。开发的传感器在2013年1月9日至22日在敦德克(法国)郊区交通公路附近的一段时间序列CH4浓度的运动范围内。已经观察到高达约3ppm的高CH 4浓度的一集通过使用NOAA的混合单粒子拉格朗日集成轨迹(HYSPLIT)模型来分析气象参数的帮助与后轨迹计算。

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