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Impact of aromatics and monoterpenes on simulated tropospheric ozone and total OH reactivity

机译:芳烃和单萜对模拟对流层臭氧和总OH反应性的影响

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The accurate representation of volatile organic compounds (VOCs) in models is an important step towards the goal of understanding and predicting many changes in atmospheric constituents relevant to climate change and human health. While isoprene is the most abundant non-methane VOC, many other compounds play a large role in governing pollutant formation and the overall oxidative capacity of the atmosphere. We quantify the impacts of aromatics and monoterpenes, two classes of VOC not included in the standard gas-phase chemistry of the chemical transport model GEOS-Chem, on atmospheric composition. We find that including these compounds increases mean total summer OH reactivity by an average of 11% over the United States, Europe, and Asia. This increased reactivity results in higher simulated levels of O-3, raising maximum daily 8-h average O-3 in the summer by up to 14 ppb at some NOX-saturated locations. (C) 2017 Elsevier Ltd. All rights reserved.
机译:在模型中准确表示挥发性有机化合物(VOC)是朝着了解和预测与气候变化和人类健康相关的大气成分的许多变化这一目标迈出的重要一步。异戊二烯是最丰富的非甲烷VOC,但许多其他化合物在控制污染物形成和大气的整体氧化能力方面发挥着重要作用。我们量化了化学传输模型GEOS-Chem的标准气相化学中未包括的两类VOC芳烃和单萜对大气成分的影响。我们发现,在美国,欧洲和亚洲,包括这些化合物可使平均夏季总OH反应性平均提高11%。这种增加的反应性导致更高水平的O-3模拟水平,在某些NOX饱和位置,夏季的每日最大8小时平均O-3值提高了14 ppb。 (C)2017 Elsevier Ltd.保留所有权利。

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