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Global atmospheric budget of simple monocyclic aromatic compounds

机译:单环芳香化合物的全球大气预算

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The global atmospheric budget and distribution of monocyclic aromatic compounds is estimated, using an atmospheric chemistry general circulation model. Simulation results are evaluated with an ensemble of surface and aircraft observations with the goal of understanding emission, production and removal of these compounds.Anthropogenic emissions provided by the RCP database represent the largest source of aromatics in the model (??23?TgC?year?1) and biomass burning from the GFAS inventory the second largest (??5?TgC?year?1). The simulated chemical production of aromatics accounts for ???5?TgC?year?1. The atmospheric burden of aromatics sums up to 0.3?TgC. The main removal process of aromatics is photochemical decomposition (??27?TgC??year?1), while wet and dry deposition are responsible for a removal of ???4?TgC?year?1.Simulated mixing ratios at the surface and elsewhere in the troposphere show good spatial and temporal agreement with the observations for benzene, although the model generally underestimates mixing ratios. Toluene is generally well reproduced by the model at the surface, but mixing ratios in the free troposphere are underestimated. Finally, larger discrepancies are found for xylenes: surface mixing ratios are not only overestimated but also a low temporal correlation is found with respect to in situ observations.
机译:使用大气化学通用循环模型估计全球大气预算和单环芳族化合物的分布。用表面和飞机观察的集合评估模拟结果,目的是理解排放,生产和除去这些化合物。RCP数据库提供的天生发射代表模型中最大的芳烃来源(?? 23?TGC?一年1)和生物量从GFAS库存中燃烧第二大(?? 5?TGC?年?1)。模拟化学生产的芳烃占??? 5?TGC?一年?1。芳烃的大气负担总和高达0.3 TGC。芳烃的主要去除过程是光化学分解(?? 27?TGC ??岁月?1),而潮湿和干沉积是负责去除的?4?TGC?年份?1.表面上的混合比率对流层中的其他地方显示出良好的空间和时间与苯的观察结果,尽管模型通常低估混合比率。甲苯通常通过表面的模型良好再现,但是无序对流层中的混合比被低估。最后,对二甲苯的发现较大的差异:表面混合比不仅高估,而且对原位观察发现了低时间相关性。

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