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Development and initial evaluation of a dynamic species-resolved model for gas phase chemistry and size-resolved gas/particle partitioning associated with secondary organic aerosol formation

机译:建立和初步评估与第二有机气溶胶形成有关的气相化学动力学物种解析模型和尺寸解析的气体/颗粒分配

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摘要

A module for predicting the dynamic evolution of the gas phase species and the aerosol size and composition distribution during formation of secondary organic aerosol (SOA) is presented. The module is based on the inorganic gas-aerosol equilibrium model Simulating the Composition of Atmospheric Particles at Equilibrium 2 (SCAPE2) and updated versions of the lumped Caltech Atmospheric Chemistry Mechanism (CACM) and the Model to Predict the Multiphase Partitioning of Organics (MPMPO). The aerosol phase generally consists of an organic phase and an aqueous phase containing dissolved inorganic and organic components. Simulations are presented in which a single salt (either dry or aqueous), a volatile organic compound, and oxides of nitrogen undergo photo-oxidation to form SOA. Predicted SOA mass yields for classes of aromatic and biogenic hydrocarbons exhibit the proper qualitative behavior when compared to laboratory chamber data. Inasmuch as it is currently not possible to represent explicitly aerosol phase chemistry involving condensed products of gas phase oxidation, the present model can be viewed as the most detailed SOA formation model available yet will undergo continued improvement in the future.
机译:提出了一个模块,用于预测二次有机气溶胶(SOA)形成过程中气相物种的动态演变以及气溶胶的大小和组成分布。该模块基于模拟平衡2的大气颗粒组成的无机气溶胶平衡模型(SCAPE2)和集总的Caltech大气化学机理(CACM)的更新版本以及用于预测有机物多相分配的模型(MPMPO) 。气溶胶相通常由有机相和含有溶解的无机和有机组分的水相组成。给出了模拟,其中单个盐(干燥或水性),挥发性有机化合物和氮的氧化物经过光氧化形成SOA。与实验室室数据相比,预测的各类芳香烃和生物烃的SOA量产表现出适当的定性行为。由于目前尚无法明确表示涉及气相氧化冷凝产物的气溶胶相化学,因此本模型可被视为可获得的最详细的SOA形成模型,但未来将继续改进。

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