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A lumping model for composition- and temperature-dependent partitioning of secondary organic aerosols

机译:二次有机气溶胶成分和温度相关分区的集总模型

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摘要

An improved lumping model is described for converting multiple semivolatile organic aerosol components into one or more lumped groups that can represent the organic aerosol mixture in atmospheric models. Lumping equations to calculate temperature- and composition-dependent absorption partitioning parameters are presented, together with lumping criteria for dividing components into groups based on component vapor pressure, chemical structure, and activity coefficient in water. Lumping performance of the model is evaluated using a base case mixture of organic aerosol components, random mixtures selected from a set of identified semivolatile organic compounds, and products from the alpha-pinene/ozone reaction. Modeling results show that aerosol composition has a strong influence on SOA partitioning and lumping accuracy. Comparisons of different lumping criteria suggest that lumping components by a combination of vapor pressure and water interactions or by vapor pressure alone will produce optimum results. (C) 2004 Elsevier Ltd. All rights reserved.
机译:描述了一种改进的集总模型,用于将多种半挥发性有机气溶胶成分转换为一个或多个集总的基团,这些组可以代表大气模型中的有机气溶胶混合物。提出了用于计算与温度和成分有关的吸收分配参数的集总方程式,以及基于组分蒸气压,化学结构和水中活度系数将组分分为几组的集总标准。使用有机气雾剂组分的基础情况混合物,选自一组已确定的半挥发性有机化合物的随机混合物以及来自α-pine烯/臭氧反应的产物评估模型的集总性能。建模结果表明,气溶胶成分对SOA分配和集总精度有很大影响。不同集总标准的比较表明,通过蒸气压和水相互作用的组合或仅通过蒸气压的集总成分将产生最佳结果。 (C)2004 Elsevier Ltd.保留所有权利。

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