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Atmospheric Chemistry Special Feature: Morphology of mixed primary and secondary organic particles and the adsorption of spectator organic gases during aerosol formation

机译:大气化学特点:形成气溶胶过程中混合的一级和二级有机颗粒的形态和观众有机气体的吸附

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摘要

Primary organic aerosol (POA) and associated vapors can play an important role in determining the formation and properties of secondary organic aerosol (SOA). If SOA and POA are miscible, POA will significantly enhance SOA formation and some POA vapor will incorporate into SOA particles. When the two are not miscible, condensation of SOA on POA particles forms particles with complex morphology. In addition, POA vapor can adsorb to the surface of SOA particles increasing their mass and affecting their evaporation rates. To gain insight into SOA/POA interactions we present a detailed experimental investigation of the morphologies of SOA particles formed during ozonolysis of α-pinene in the presence of dioctyl phthalate (DOP) particles, serving as a simplified model of hydrophobic POA, using a single-particle mass spectrometer. Ultraviolet laser depth-profiling experiments were used to characterize two different types of mixed SOA/DOP particles: those formed by condensation of the oxidized α-pinene products on size-selected DOP particles and by condensation of DOP on size-selected α-pinene SOA particles. The results show that the hydrophilic SOA and hydrophobic DOP do not mix but instead form layered phases. In addition, an examination of homogeneously nucleated SOA particles formed in the presence of DOP vapor shows them to have an adsorbed DOP coating layer that is ∼4 nm thick and carries 12% of the particles mass. These results may have implications for SOA formation and behavior in the atmosphere, where numerous organic compounds with various volatilities and different polarities are present.
机译:一次有机气溶胶(POA)和相关的蒸气可以在确定二次有机气溶胶(SOA)的形成和性质中发挥重要作用。如果SOA和POA是可混溶的,则POA将显着增强SOA的形成,并且某些POA蒸气将掺入SOA颗粒中。当两者不混溶时,SOA在POA颗粒上的缩合会形成形态复杂的颗粒。另外,POA蒸气可以吸附到SOA颗粒的表面,从而增加其质量并影响其蒸发速率。为了深入了解SOA / POA相互作用,我们对单个邻苯二甲酸二辛酯(DOP)颗粒存在下α-pine烯进行臭氧分解过程中形成的SOA颗粒的形态进行了详细的实验研究,它是疏水性POA的简化模型,使用单个粒子质谱仪。紫外激光深度剖析实验用于表征两种不同类型的混合SOA / DOP颗粒:通过氧化的α-pine烯产物在尺寸选择的DOP颗粒上的缩合和DOP在尺寸选择的α-pine烯SOA上的缩合而形成的那些粒子。结果表明,亲水性SOA和疏水性DOP不混合而是形成层状相。此外,对在DOP蒸气存在下形成的均匀成核的SOA颗粒的检查表明,它们具有吸附的DOP涂层,涂层厚度约为4 nm,并承载12%的颗粒质量。这些结果可能会影响大气中SOA的形成和行为,在大气中存在着具有不同挥发性和不同极性的许多有机化合物。

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