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Representation of Secondary Organic Aerosol Laboratory Chamber Data for the Interpretation of Mechanisms of Particle Growth

机译:用于解释颗粒生长机理的次要有机气溶胶实验室室数据的表示形式

摘要

Absorptive models of gas-particle partitioning have been shown to be successful in describing the formation and growth of secondary organic aerosol (SOA). Here the expression for particle growth derived by Odum et al. (Odum, J. R.; Hoffmann, T.; Bowman, F.; Collins, D.; Flagan, R. C.; Seinfeld, J. H. Gas/particle partitioning and secondary organic aerosol yields. Environ. Sci. Technol. 1996, 30, 2580−2585) is extended to facilitate interpretation of SOA growth data measured in the laboratory in terms of the underlying chemistry, even when details of the reactions are not well-constrained. A simple (one-component) expression for aerosol growth (ΔM) as a function of the amount of hydrocarbon reacted (ΔHC) is derived, and the effects of changes to three key parameters, stoichiometric yield of condensable species, gas-particle partitioning coefficient, and concentration of preexisting aerosol, are discussed. Two sets of laboratory chamber data on SOA growth are examined in this context:  the ozonolysis of α-pinene and the OH-initiated photooxidation of aromatic compounds. Even though these two systems have a number of significant differences, both are described well within this framework. From the shapes of the ΔM versus ΔHC curves in each case, the importance of poorly constrained chemistry such as heterogeneous reactions and gas-phase reactions of oxidation products is examined.
机译:气体-颗粒分配的吸收模型已成功地描述了次级有机气溶胶(SOA)的形成和生长。在这里,由Odum等人得出的颗粒生长的表达式。 (J.Odum; T。Hoffmann; F。Bowman; D。Collins; RC; Flagan; JH Seinfeld;气体/颗粒分配和二次有机气溶胶产量。Environ.Sci.Technol.1996,30,2580−2585 )进行了扩展,以便于解释根据基本化学原理在实验室中测得的SOA生长数据,即使反应的细节没有受到很好的限制。推导了气溶胶生长(ΔM)与碳氢化合物反应量(ΔHC)的函数关系的简单(单成分)表达式,并且对三个关键参数,可冷凝物的化学计量产率,气体颗粒分配系数等三个关键参数的变化产生了影响,并讨论了预先存在的气溶胶浓度。在这种情况下,检查了两组关于SOA生长的实验室数据:α-pine烯的臭氧分解和芳族化合物的OH引发的光氧化。即使这两个系统有许多显着差异,但在此框架内都对它们进行了很好的描述。从每种情况下的ΔM与ΔHC曲线的形状,检验了化学反应受限的重要性,例如氧化产物的异相反应和气相反应。

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