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An improved total and tropospheric NO2 column retrieval for GOME-2

机译:GME-2的完善的总和对流层NO2列检索

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An improved algorithm for the retrieval of total and tropospheric nitrogen dioxide (NO2) columns from the Global Ozone Monitoring Experiment-2 (GOME-2) is presented. The refined retrieval will be implemented in a future version of the GOME Data Processor (GDP) as used by the EUMETSAT Satellite Application Facility on Atmospheric Composition and UV Radiation (AC-SAF). The first main improvement is the application of an extended 425–497nm wavelength fitting window in the differential optical absorption spectroscopy (DOAS) retrieval of the NO2 slant column density, based on which initial total NO2 columns are computed using stratospheric air mass factors (AMFs). Updated absorption cross sections and a linear offset correction are used for the large fitting window. An improved slit function treatment is applied to compensate for both long-term and in-orbit drift of the GOME-2 slit function. Compared to the current operational (GDP?4.8) dataset, the use of these new features increases the NO2 columns by ~1–3×1014moleccm2 and reduces the slant column error by ~24%. In addition, the bias between GOME-2A and GOME-2B measurements is largely reduced by adopting a new level 1b data version in the DOAS retrieval. The retrieved NO2 slant columns show good consistency with the Quality Assurance for Essential Climate Variables (QA4ECV) retrieval with a good overall quality. Second, the STRatospheric Estimation Algorithm from Mainz (STREAM), which was originally developed for the TROPOspheric Monitoring Instrument (TROPOMI) instrument, was optimised for GOME-2 measurements to determine the stratospheric NO2 column density. Applied to synthetic GOME-2 data, the estimated stratospheric NO2 columns from STREAM shows good agreement with the a priori truth. An improved latitudinal correction is introduced in STREAM to reduce the biases over the subtropics. Applied to GOME-2 measurements, STREAM largely reduces the overestimation of stratospheric NO2 columns over polluted regions in the GDP?4.8 dataset. Third, the calculation of AMF applies an updated box-air-mass factor (box-AMF) look-up table (LUT) calculated using the latest version 2.7 of the Vector-LInearized Discrete Ordinate Radiative Transfer (VLIDORT) model with an increased number of reference points and vertical layers, a new GOME-2 surface albedo climatology, and improved a priori NO2 profiles obtained from the TM5-MP chemistry transport model. A large effect (mainly enhancement in summer and reduction in winter) on the retrieved tropospheric NO2 columns by more than 10% is found over polluted regions. To evaluate the GOME-2 tropospheric NO2 columns, an end-to-end validation is performed using ground-based multiple-axis DOAS (MAXDOAS) measurements. The validation is illustrated for six stations covering urban, suburban, and background situations. Compared to the GDP?4.8 product, the new dataset presents improved agreement with the MAXDOAS measurements for all the stations.
机译:提出了一种从全局臭氧监测实验-2(Gome-2)的总和对流层二氧化氮(NO2)柱检索的改进算法。精致的检索将在Gome数据处理器(GDP)的未来版本中实施,如Eumetsat卫星应用设施在大气组合物和紫外线辐射(AC-SAF)上使用的。第一主要改进是在差分光学吸收光谱(DOA)中的延伸425-497nm波长拟合窗口在NO2倾斜列密度的检索中施加,基于使用其平流层空气质量因子(AMF)计算的初始总NO2列。更新的吸收横截面和线性偏移校正用于大型配件窗口。应用改进的狭缝函数处理来补偿Gome-2狭缝功能的长期和轨道漂移。与当前的操作(GDP?4.8)数据集相比,使用这些新功能将No2列增加〜1-3×1014moleccm2,并将倾斜列误差减少约24%。另外,通过采用DOAS检索中的新级别1B数据版本,在很大程度上减少了Gome-2a和Gome-2b测量之间的偏差。检索到的No2倾斜柱显示出良好的一致性,以质量保证为基本气候变量(QA4ECV)检索,具有良好的整体质量。其次,最初为对流层监测仪器(Trobomi)仪器的MainZ(流)的平流层估计算法针对Gome-2测量进行了优化,以确定平流层No2柱密度。应用于合成的Gome-2数据,来自流的估计的平流层No2列与先验的真理展示了良好的一致性。在流中引入了改进的纬度校正以减少副数据层的偏差。应用于Gome-2测量,流大大降低了GDP中的污染区域的平流层No2列的高估。4.8数据集。第三,AMF的计算应用了使用具有增加数量的矢量线性化离散纵纵纵纵纵纵纵纵纵纵纵纵纵纵纵纵纵纵纵纵纵纵纵纵纵序列(vlidort)模型计算的更新的箱体 - 空气质量因子(Box-AMF)查询表(LUT)计算参考点和垂直层,新的Gome-2表面反照学气候学,并改善了从TM5-MP化学传输模型获得的先验No2型材。在污染区域发现,在检索到的对流层No2柱上,在污染的区域发现了大量的效果(主要是夏季和冬季减少)。为了评估Gome-2对流层No2列,使用基于地基的多轴DOA(MAXDOAS)测量来执行端到端验证。验证涉及覆盖城市,郊区和背景情况的六个站。与GDP?4.8产品相比,新数据集与所有站点的MAXDOAS测量提出了改进的协议。

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