Effect of Initial Seed Aerosol Acidity on the Kinetics and Products of Heterogeneous Hydroxyl Radical Oxidation of Isoprene Epoxydiol-Derived Secondary Organic Aerosol

IF 2.8 2区 化学 Q3 CHEMISTRY, PHYSICAL
Jin Yan, N. Cazimir Armstrong, Katherine R. Kolozsvari, Cara M. Waters, Yao Xiao, Alison M. Fankhauser, Madeline E. Cooke, Molly Frauenheim, Nicolas A. Buchenau, Rebecca L. Parham, Zhenfa Zhang, Barbara J. Turpin, Andrew T. Lambe, Avram Gold, Andrew P. Ault* and Jason D. Surratt*, 
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Abstract

At fixed aerosol acidity, we recently demonstrated that dimers in isoprene epoxydiol-derived secondary organic aerosol (IEPOX-SOA) can heterogeneously react with hydroxyl radical (·OH) at faster rates than monomers. Aerosol acidity influences this aging process by enhancing the formation of oligomers in freshly generated IEPOX-SOA. Therefore, we systematically examined the role of aerosol acidity on kinetics and products resulting from heterogeneous ·OH oxidation of freshly generated IEPOX-SOA. IEPOX reacted with inorganic sulfate aerosol of varying initial pH (0.5, 1.5, and 2.5) in a steady-state smog chamber to yield a constant source of freshly generated IEPOX-SOA, which was aged in an oxidation flow reactor for 0–22 equiv days of atmospheric ·OH exposure. Molecular-level chemical analyses revealed that the most acidic sulfate aerosol (pH 0.5) formed the largest oligomeric mass fraction, causing the slowest IEPOX-SOA mass decay with aging. Reactive uptake coefficients of ·OH (γOH) were 0.24 ± 0.06, 0.40 ± 0.05, and 0.49 ± 0.20 for IEPOX-SOA generated at pH 0.5, 1.5, and 2.5, respectively. IEPOX-SOA became more liquid-like for pH 1.5 and 2.5, while exhibiting an irregular pattern for pH 0.5 with aging. Using kinetic and physicochemical data derived for a single aerosol pH in atmospheric models could inaccurately predict the fate of the IEPOX-SOA.

Abstract Image

种子气溶胶初始酸度对异戊二烯环氧二醇衍生二次有机气溶胶非均相羟基自由基氧化动力学及产物的影响
在固定的气溶胶酸度下,我们最近证明了异戊二烯环氧二醇衍生的二次有机气溶胶(IEPOX-SOA)中的二聚体可以以比单体更快的速度与羟基自由基(·OH)发生非均相反应。气溶胶酸度通过增强新生成的IEPOX-SOA中低聚物的形成来影响这一老化过程。因此,我们系统地研究了气溶胶酸度对新生成的IEPOX-SOA的动力学和非均相·OH氧化产物的作用。IEPOX与不同初始pH值(0.5,1.5和2.5)的无机硫酸盐气溶胶在稳态烟雾室中反应,产生新鲜生成的IEPOX- soa的恒定来源,并在氧化流反应器中老化0-22等天的大气·OH暴露。分子水平的化学分析表明,酸性最强的硫酸盐气溶胶(pH为0.5)形成的低聚物质量分数最大,随着老化导致IEPOX-SOA质量衰减最慢。在pH 0.5、1.5和2.5条件下生成的IEPOX-SOA的·OH (γOH)反应性吸收系数分别为0.24±0.06、0.40±0.05和0.49±0.20。当pH值为1.5和2.5时,IEPOX-SOA变得更像液体,而当pH值为0.5时,随着老化表现出不规则的模式。在大气模式中使用单一气溶胶pH值的动力学和物理化学数据可能无法准确预测IEPOX-SOA的命运。
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来源期刊
The Journal of Physical Chemistry A
The Journal of Physical Chemistry A 化学-物理:原子、分子和化学物理
CiteScore
5.20
自引率
10.30%
发文量
922
审稿时长
1.3 months
期刊介绍: The Journal of Physical Chemistry A is devoted to reporting new and original experimental and theoretical basic research of interest to physical chemists, biophysical chemists, and chemical physicists.
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