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Evolution of organic aerosol mass spectra upon heating: implications for OA phase and partitioning behavior

机译:加热时有机气溶胶质谱的演变:对OA相和分配行为的影响

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pstrongAbstract./strong Vacuum Ultraviolet (VUV) photoionization mass spectrometry has been used to measure the evolution of chemical composition for two distinct organic aerosol types as they are passed through a thermodenuder at different temperatures. The two organic aerosol types considered are primary lubricating oil (LO) aerosol and secondary aerosol from the ?±-pinene + Osub3/sub reaction (?±P). The evolution of the VUV mass spectra for the two aerosol types with temperature are observed to differ dramatically. For LO particles, the spectra exhibit distinct changes with temperature in which the lower im/z/i peaks, corresponding to compounds with higher vapor pressures, disappear more rapidly than the high im/z/i peaks. In contrast, the ?±P aerosol spectrum is essentially unchanged by temperature even though the particles experience significant mass loss due to evaporation. The variations in the LO spectra are found to be quantitatively in agreement with expectations from absorptive partitioning theory whereas the ?±P spectra suggest that the evaporation of ?±P derived aerosol appears to not be governed by partitioning theory. We postulate that this difference arises from diffusivity within the ?±P particles being sufficiently slow that they do not exhibit the expected liquid-like behavior and perhaps exist in a glassy state. To reconcile these observations with decades of aerosol growth measurements, which indicate that OA formation is described by equilibrium partitioning, we present a conceptual model wherein the secondary OA is formed and then rapidly converted from an absorbing form to a non-absorbing form. The results suggest that, although OA growth may be describable by equilibrium partitioning theory, the properties of organic aerosol once formed may differ significantly from the properties determined in the equilibrium framework./p.
机译:> >摘要。真空紫外(VUV)光电离质谱法已用于测量两种不同有机气溶胶类型在不同温度下通过热剥蚀器时化学成分的演变。所考虑的两种有机气溶胶类型是初级润滑油(LO)气溶胶和来自α±-烯+ O 3 反应(α±P)的次级气溶胶。观察到两种气溶胶类型的VUV质谱随温度的变化差异很大。对于LO粒子,光谱随温度表现出明显的变化,其中较低的 m / z 峰(对应于蒸气压较高的化合物)比较高的 m / z 消失得更快。 >山峰。相反,即使颗粒由于蒸发而经历明显的质量损失,α±P气溶胶谱在温度上也基本不变。发现LO光谱的变化在定量上与吸收分配理论的预期一致,而α±P光谱表明α±P衍生的气溶胶的蒸发似乎不受分配理论支配。我们推测这种差异是由于α±P颗粒内的扩散率足够慢而导致它们不表现出预期的类似液体的行为,并且可能以玻璃态存在。为了使这些观察结果与数十年来的气溶胶生长测量结果相吻合,这些测量结果表明OA的形成是通过平衡分配来描述的,我们提出了一种概念模型,其中形成了次级OA,然后从吸收形式迅速转变为非吸收形式。结果表明,尽管通过平衡分配理论可以描述OA的增长,但有机气溶胶形成后的性质可能与平衡构架中确定的性质明显不同。

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