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High-resolution NO_2 remote sensing from the Airborne Prism EXperiment (APEX) imaging spectrometer

机译:机载棱镜成像光谱仪的高分辨率NO_2遥感

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We present and evaluate the retrieval of high spatial resolution maps of NO_2 vertical column densities (VCD) from the Airborne Prism EXperiment (APEX) imaging spectrometer. APEX is a novel instrument providing airborne measurements of unique spectral and spatial resolution and coverage as well as high signal stability. In this study, we use spectrometer data acquired over Zurich, Switzerland, in the morning and late afternoon during a flight campaign on a cloud-free summer day in June 2010. NO_2 VCD are derived with a two-step approach usually applied to satellite NO_2 retrievals, i.e. a DOAS analysis followed by air mass factor calculations based on radiative transfer computations. Our analysis demonstrates that APEX is clearly sensitive to NO_2 VCD above typical European tropospheric background abundances (> 1 × 10~(15) molec cm~(-2)). The two-dimensional maps of NO_2 VCD reveal a very convincing spatial distribution with strong gradients around major NO_x sources (e.g. Zurich airport, waste incinerator, motorways) and low NO_2 in remote areas. The morning overflights resulted in generally higher NO_2 VCD and a more distinct pattern than the afternoon overflights which can be attributed to the meteorological conditions prevailing during that day with stronger winds and hence larger dilution in the afternoon. The remotely sensed NO_2 VCD are also in reasonably good agreement with ground-based in-situ measurements from air quality networks considering the limitations of comparing column integrals with point measurements. Airborne NO_2 remote sensing using APEX will be valuable to detect NO_2 emission sources, to provide input for NO_2 emission modelling, and to establish links between in-situ measurements, air quality models, and satellite NO_2 products.
机译:我们提出并评估了机载棱镜实验(APEX)成像光谱仪对NO_2垂直列密度(VCD)的高空间分辨率图的检索。 APEX是一种新型仪器,可提供机载测量的独特光谱和空间分辨率,覆盖范围以及高信号稳定性。在这项研究中,我们使用2010年6月在一个无云的夏日进行的一次飞行运动中,在早晨和下午在瑞士苏黎世上获得的光谱仪数据。NO_2 VCD是通过两步法得出的,通常适用于卫星NO_2检索,即进行DOAS分析,然后进行基于辐射传递计算的空气质量因子计算。我们的分析表明,在典型的欧洲对流层背景丰度(> 1×10〜(15)摩尔cm〜(-2))以上,APEX对NO_2 VCD明显敏感。二维NO_2 VCD的地图显示出令人信服的空间分布,主要NO_x来源(例如苏黎世机场,废物焚化炉,高速公路)周围的梯度很强,而偏远地区的NO_2较低。早晨的飞越通常比下午的飞越更高的NO_2 VCD和更明显的模式,这可以归因于当天盛行的气象条件,并且风势较大,因此下午的稀释度更大。考虑到比较柱积分和点测量的局限性,遥感的NO_2 VCD也与来自空气质量网络的地面现场测量相当吻合。使用APEX的机载NO_2遥感技术对于检测NO_2排放源,为NO_2排放模型提供输入以及建立现场测量,空气质量模型和卫星NO_2产品之间的联系将非常有用。

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