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Version 2 Ozone Monitoring Instrument SO2 product (OMSO2 V2): new anthropogenic SO2 vertical column density dataset

机译:版本2臭氧监控仪SO2产品(OMSO2 V2):新的人为SO2垂直列密度数据集

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摘要

The Ozone Monitoring Instrument (OMI) has been providing global observations of SO2 pollution since 2004. Here we introduce the new anthropogenic SO2 vertical column density (VCD) dataset in the version 2 OMI SO2 product (OMSO2 V2). As with the previous version (OMSO2 V1.3), the new dataset is generated with an algorithm based on principal component analysis of OMI radiances but features several updates. The most important among those is the use of expanded lookup tables and model a priori profiles to estimate SO2 Jacobians for individual OMI pixels, in order to better characterize pixel-to-pixel variations in SO2 sensitivity including over snow and ice. Additionally, new data screening and spectral fitting schemes have been implemented to improve the quality of the spectral fit. As compared with the planetary boundary layer SO2 dataset in OMSO2 V1.3, the new dataset has substantially better data quality, especially over areas that are relatively clean or affected by the South Atlantic Anomaly. The updated retrievals over snow/ice yield more realistic seasonal changes in SO2 at high latitudes and offer enhanced sensitivity to sources during wintertime. An error analysis has been conducted to assess uncertainties in SO2 VCDs from both the spectral fit and Jacobian calculations. The uncertainties from spectral fitting are reflected in SO2 slant column densities (SCDs) and largely depend on the signal-to-noise ratio of the measured radiances, as implied by the generally smaller SCD uncertainties over clouds or for smaller solar zenith angles. The SCD uncertainties for individual pixels are estimated to be ~0.15–0.3DU (Dobson units) between ~40°S and ~40°N and to be ~0.2–0.5DU at higher latitudes. The uncertainties from the Jacobians are approximately ~50%–100% over polluted areas and are primarily attributed to errors in SO2 a priori profiles and cloud pressures, as well as the lack of explicit treatment for aerosols. Finally, the daily mean and median SCDs over the presumably SO2-free equatorial east Pacific have increased by only ~0.0035DU and ~0.003DU respectively over the entire 15-year OMI record, while the standard deviation of SCDs has grown by only ~0.02DU or ~10%. Such remarkable long-term stability makes the new dataset particularly suitable for detecting regional changes in SO2 pollution.
机译:臭氧监测仪(OMI)自2004年以来一直在提供全球观测SO2污染的观察。在这里,我们介绍了第2版OMI SO2产品(OMSO2 V2)中的新的人为SO2垂直列密度(VCD)数据集。与以前的版本(OMSO2 V1.3)一样,使用基于OMI Radiances的主成分分析的算法生成新数据集,但具有多个更新。其中最重要的是使用扩展的查找表和模型先验配置文件来估计单个OMI像素的SO2 jacobians,以便更好地表征SO2灵敏度的像素到像素变化,包括雪和冰。另外,已经实施了新的数据筛选和光谱拟合方案以提高光谱拟合的质量。与OMSO2 V1.3中的行星边界层SO2数据集相比,新数据集具有基本更好的数据质量,尤其是在南大西洋异常相对干净或影响的区域上。雪/冰上的更新检索在高纬度地区的SO2中的更现实的季节变化,并在冬季期间为来源提供了增强的敏感性。已经进行了误差分析,以评估SO2 VCD中的不确定性,可从光谱拟合和雅可比计算。光谱拟合的不确定性在SO2倾斜柱密度(SCDS)中反映,并且主要取决于所测量的辐射的信噪比,如云上一般较小的SCD不确定性的所暗示的暗示或较小的太阳能天性角度。各个像素的SCD不确定性估计为〜40°S和〜40°N之间的约0.15-0.3du(多板单位),在较高纬度下为〜0.2-0.5du。雅各比人的不确定性在污染区域约为50%-100%,主要归因于SO2的错误,先验型材和云压力,以及缺乏对气溶胶的明确治疗。最后,在整个15年的OMI记录中,预定的SO2无赤道东太平洋的每日平均值和中位数SCDS分别增加了〜0.0035DU和〜0.003DU,而SCDS的标准偏差仅为〜0.02 du或〜10%。这种显着的长期稳定性使得新数据集特别适用于检测SO2污染的区域变化。

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