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Updated tropospheric chemistry reanalysis and emission estimates, TCR-2, for 2005–2018

机译:更新了对流层化学再分析和排放估计,TCR-2,2005-2018

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摘要

This study presents the results from the Tropospheric Chemistry Reanalysis version 2 (TCR-2) for the period 2005–2018 at 1.1∘ horizontal resolution obtained from the assimilation of multiple updated satellite measurements of ozone, CO, NO2, HNO3, and SO2 from the OMI, SCIAMACHY, GOME-2, TES, MLS, and MOPITT satellite instruments. The reanalysis calculation was conducted using a global chemical transport model MIROC-CHASER and an ensemble Kalman filter technique that optimizes both chemical concentrations of various species and emissions of several precursors, which was efficient for the correction of the entire tropospheric profile of various species and its year-to-year variations. Comparisons against independent aircraft, satellite, and ozonesonde observations demonstrate the quality of the reanalysis fields for numerous key species on regional and global scales, as well as for seasonal, yearly, and decadal scales, from the surface to the lower stratosphere. The multi-constituent data assimilation brought the model vertical profiles and interhemispheric gradient of OH closer to observational estimates, which was important in improving the description of the oxidation capacity of the atmosphere and thus vertical profiles of various species. The evaluation results demonstrate the capability of the chemical reanalysis to improve understanding of the processes controlling variations in atmospheric composition, including long-term changes in near-surface air quality and emissions. The estimated emissions can be employed for the elucidation of detailed distributions of the anthropogenic and biomass burning emissions of co-emitted species (NOx, CO, SO2) in all major regions, as well as their seasonal and decadal variabilities. The data sets are available at https://doi.org/10.25966/9qgv-fe81 (Miyazaki et al., 2019a).
机译:本研究提出从对流层化学再分析第2版(TCR-2)在1.1∘水平分辨率从臭氧的多个更新的卫星测量值的同化得到的期间2005年至2018年,CO,NO 2,HNO 3,和SO 2从结果OMI,SCIAMACHY,国美-2,TES,MLS,和MOPITT卫星仪器。再分析计算是使用全球化学传输模型MIROC-CHASER和集合卡尔曼滤波技术,其优化了各种物种和几个前体的排放量的两个化学浓度,这是有效的关于各种物种和的整个对流层轮廓的校正进行其年与年的变化。反对独立的飞机,卫星和臭氧探测仪观测比较证明了对区域和全球尺度上许多重要物质的再分析领域,以较低的平流层的质量,以及季节性,每年和年代际尺度,从表面。多构成数据同化带来OH的模型垂直剖面图和纵裂梯度更接近观察的估计,这是在改善气氛的氧化能力和各种物种的从而垂直剖面的说明很重要的。评价结果表明所述化学再分析的能力,以改善控制大气成分变化,包括在表面附近的空气质量和排放的长期变化的过程的理解。所估计的排放物可以用于联合发射的物种的各主要地区的人为和生物质燃烧排放物(氮氧化物,一氧化碳,SO 2)的详细分布,以及它们的季节性和十年变性的阐明。数据集可在https://doi.org/10.25966/9qgv-fe81(Miyazaki等人,2019a)。

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