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A note on the effects of inorganic seed aerosol on the oxidation state of secondary organic aerosol-α-Pinene ozonolysis

机译:关于无机种子气溶胶对次生有机气溶胶-α-P烯臭氧氧化作用的影响的注释

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摘要

We compare the oxidation state and molecular composition of α-pinene-derived secondary organic aerosol (SOA) by varying the types and surface areas of inorganic seed aerosol that are used to promote the condensation of SOA-forming vapors. The oxidation state of α-pinene SOA is found to increase with inorganic seed surface area, likely a result of enhanced condensation of low-volatility organic compounds on particles versus deposition on the chamber wall. α-Pinene SOA is more highly oxygenated in the presence of sodium nitrate (SN) seed than ammonium sulfate seed. The relative abundance of semivolatile monomers and low-volatility dimer components that account for more than half of α-pinene SOA mass is not significantly affected by the composition of seed aerosol. Enhanced uptake of highly oxidized small carboxylic acids onto SN seed particles is observed, which could potentially explain the observed higher SOA oxidation state in the presence of SN seed aerosol. Overall, our results demonstrate that a combined effect of seed aerosol composition and surface area leads to an increase in the O:C atomic ratio of α-pinene SOA by as much as a factor of 2.
机译:我们通过改变用于促进SOA形成蒸气凝结的无机种子气溶胶的类型和表面积,比较了α-pine烯衍生的二次有机气溶胶(SOA)的氧化态和分子组成。发现α-pine烯SOA的氧化态随无机种子表面积的增加而增加,这很可能是由于低挥发性有机化合物在颗粒上相对于在室壁上沉积而增强的缩合的结果。在存在硝酸钠(SN)种子的情况下,α-P烯SOA的氧化程度要高于硫酸铵种子。种子气溶胶的组成不会显着影响占α-pine烯SOA质量一半以上的半挥发性单体和低挥发性二聚体组分的相对丰度。观察到SN种子颗粒上高度氧化的小羧酸的吸收增加,这可能解释了在SN种子气溶胶存在下观察到的更高的SOA氧化态。总体而言,我们的结果表明,种子气溶胶成分和表面积的共同作用导致α-pine烯SOA的O:C原子比增加多达2倍。

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