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Atmospheric Chemistry Special Feature: Reactive intermediates revealed in secondary organic aerosol formation from isoprene

机译:大气化学特征:异戊二烯形成的二次有机气溶胶中显示出反应性中间体

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摘要

Isoprene is a significant source of atmospheric organic aerosol; however, the oxidation pathways that lead to secondary organic aerosol (SOA) have remained elusive. Here, we identify the role of two key reactive intermediates, epoxydiols of isoprene (IEPOX = β-IEPOX + δ-IEPOX) and methacryloylperoxynitrate (MPAN), which are formed during isoprene oxidation under low- and high-NOx conditions, respectively. Isoprene low-NOx SOA is enhanced in the presence of acidified sulfate seed aerosol (mass yield 28.6%) over that in the presence of neutral aerosol (mass yield 1.3%). Increased uptake of IEPOX by acid-catalyzed particle-phase reactions is shown to explain this enhancement. Under high-NOx conditions, isoprene SOA formation occurs through oxidation of its second-generation product, MPAN. The similarity of the composition of SOA formed from the photooxidation of MPAN to that formed from isoprene and methacrolein demonstrates the role of MPAN in the formation of isoprene high-NOx SOA. Reactions of IEPOX and MPAN in the presence of anthropogenic pollutants (i.e., acidic aerosol produced from the oxidation of SO2 and NO2, respectively) could be a substantial source of “missing urban SOA” not included in current atmospheric models.
机译:异戊二烯是大气中有机气溶胶的重要来源。但是,导致二次有机气溶胶(SOA)的氧化途径仍然难以捉摸。在这里,我们确定了两种关键的反应中间体的作用,即异戊二烯的环氧二醇(IEPOX =β-IEPOX+δ-IEPOX)和甲基丙烯酰过氧硝酸盐(MPAN),它们分别在低和高NOx条件下的异戊二烯氧化过程中形成。在酸化的硫酸盐种子气溶胶存在下(质量产率为28.6%),与在中性气溶胶存在下(质量产率为1.3%)相比,异戊二烯低NOx SOA的增强。结果表明,酸催化的颗粒相反应增加了IEPOX的吸收,可以解释这种增强。在高NOx条件下,异戊二烯SOA的形成通过其第二代产物MPAN的氧化而发生。由MPAN的光氧化形成的SOA组成与由异戊二烯和甲基丙烯醛形成的SOA组成相似,表明MPAN在异戊二烯高NOx SOA形成中的作用。在人为污染物(即分别由SO2和NO2氧化产生的酸性气溶胶)存在下,IEPOX和MPAN的反应可能是当前大气模型中未包括的“缺少城市SOA”的重要来源。

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