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Sulfur dioxide emission flux measurements from point sources using airborne near ultraviolet spectroscopy during the New England Air Quality Study 2004

机译:在2004年《新英格兰空气质量研究》中使用机载近紫外光谱从点源测量二氧化硫排放通量

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This work presents measurements of sulfur dioxide (SO2) emission fluxes from point sources using airborne near-ultraviolet (UV) spectroscopy. A Czerny-Turner spectrograph has been optimized to measure SO2 and the oxygen collision complex (O4) in the wavelength region of 286–408 nm from an aircraft platform. The spectrograph was deployed aboard the NOAA WP-3D Orion aircraft during the New England Air Quality Study during the summer of 2004. The spectrograph has zenith and nadir field of views, allowing for measurements of pollution plumes when the aircraft is in or above the planetary boundary layer. The near-UV spectra are analyzed using the differential optical absorption spectroscopy (DOAS) method to retrieve SO2 and O4 differential slant column densities (DSCDs). The SO2 DSCDs are used to identify point source plumes and are converted to vertical column densities (VCDs), which are needed to calculate emissions of SO2 from point sources. The conversion to VCDs requires knowledge of the photon optical path length or the air mass factor (AMF). We present a novel approach to calculate the AMF using observations of the absorption of solar radiation by O4. The SO2 VCDs, wind speed and direction, and aircraft speed are then used to obtain emission fluxes from power plants. The measured SO2 power plant emission fluxes are compared to the reported emissions from the power plants. The measured and reported SO2 emission fluxes are in good agreement.
机译:这项工作介绍了使用机载近紫外(UV)光谱仪测量点源中二氧化硫(SO2)排放通量的方法。已对Czerny-Turner光谱仪进行了优化,以测量飞机平台上286-408 nm波长范围内的SO2和氧气碰撞复合物(O4)。该光谱仪是在2004年夏季的新英格兰空气质量研究期间部署在NOAA WP-3D Orion飞机上的。该光谱仪具有天顶和天底视野,可以测量飞机在行星上或行星上时的污染羽流。边界层。使用差分光学吸收光谱(DOAS)方法分析近紫外光谱,以获取SO2和O4差分斜柱密度(DSCD)。 SO2 DSCD用于识别点源羽流,并转换为垂直列密度(VCDs),这是计算点源SO2排放所必需的。转换为VCD需要了解光子的光程长度或空气质量因子(AMF)。我们提出了一种新颖的方法来计算OMF,其方法是使用O4吸收太阳辐射。然后使用SO2 VCD,风速和风向以及飞机速度来获取发电厂的排放通量。将测得的二氧化硫电厂排放通量与电厂报告的排放进行比较。实测和报告的SO2排放通量非常一致。

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