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Validation of tropospheric NO2 column measurements of GOME-2A and OMI using MAX-DOAS and direct sun network observations

机译:使用MAX-DOAS和Direct Sun网络观测验证Gome-2A和OMI的对流层No2柱测量

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Multi-axis differential optical absorption spectroscopy (MAX-DOAS) and direct sun NO2 vertical column network data are used to investigate the accuracy of tropospheric NO2 column measurements of the GOME-2 instrument on the MetOp-A satellite platform and the OMI instrument on Aura. The study is based on 23 MAX-DOAS and 16 direct sun instruments at stations distributed worldwide. A method to quantify and correct for horizontal dilution effects in heterogeneous NO2 field conditions is proposed. After systematic application of this correction to urban sites, satellite measurements are found to present smaller biases compared to ground-based reference data in almost all cases. We investigate the seasonal dependence of the validation results as well as the impact of using different approaches to select satellite ground pixels in coincidence with ground-based data. In optimal comparison conditions (satellite pixels containing the station) the median bias between satellite tropospheric NO2 column measurements and the ensemble of MAX-DOAS and direct sun measurements is found to be significant and equal to ?34% for GOME-2A and ?24% for OMI. These biases are further reduced to ?24% and ?18% respectively, after application of the dilution correction. Comparisons with the QA4ECV satellite product for both GOME-2A and OMI are also performed, showing less scatter but also a slightly larger median tropospheric NO2 column bias with respect to the ensemble of MAX-DOAS and direct sun measurements.
机译:多轴差分光学吸收光谱(MAX-DOAs)和直接Sun No2垂直列网络数据用于研究Metop-A卫星平台和OMI仪器上的Gome-2仪器对Gome-2仪器的对流层No2柱测量的准确性。该研究基于在全球分布的电台上基于23个Max-Doa和16个直接阳光仪器。提出了一种在异构NO2场条件下进行量化和校正水平稀释效应的方法。在对城市网站进行系统应用后,在几乎所有情况下,发现与基于地面的参考数据相比,卫星测量结果呈现较小的偏差。我们调查验证结果的季节性依赖性以及使用不同方法选择与基于地面数据吻合的卫星地面像素的影响。在最佳比较条件下(包含该站的卫星像素)卫星对流层NO2柱测量中的中值偏差和MAX-DOAS和直接阳光测量的集合是显着的,等于Gome-2a和24%的34%对于OMI。在施用稀释校正后,这些偏差进一步降低到24%和18%。还进行了对Gome-2A和OMI的QA4ECV卫星产品的比较,显示出较少的散射,而且显示出相对于MAX-DOA的集合和直接阳光测量的略微较大的中值对流层NO2柱偏置。
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