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SOA from limonene: role of NO3 in its generation and degradation

机译:来自Limoneene的SOA:NO3在生成和退化中的作用

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The formation of organic nitrates and secondary organic aerosol (SOA) were monitored during the NO3 + limonene reaction in the atmosphere simulation chamber SAPHIR at Research Center Jülich. The 24-h run began in a purged, dry, particle-free chamber and comprised two injections of limonene and oxidants, such that the first experiment measured SOA yield in the absence of seed aerosol, and the second experiment yields in the presence of 10 μg m3 seed organic aerosol. After each injection, two separate increases in aerosol mass were observed, corresponding to sequential oxidation of the two limonene double bonds. Analysis of the measured NO3, limonene, product nitrate concentrations, and aerosol properties provides mechanistic insight and constrains rate constants, branching ratios and vapor pressures of the products. The organic nitrate yield from NO3 + limonene is ≈30%. The SOA mass yield was observed to be 25–40%. The first injection is reproduced by a kinetic model. PMF analysis of the aerosol composition suggests that much of the aerosol mass results from combined oxidation by both O3 and NO3, e.g., oxidation of NO3 + limonene products by O3. Further, later aerosol nitrate mass seems to derive from heterogeneous uptake of NO3 onto unreacted aerosol alkene.
机译:在Jülich的大气模拟室Saphir中的No3 +柠檬烯反应期间监测有机硝酸盐和二次有机气溶胶(SOA)。 24-H跑开始于吹扫,干燥的颗粒的室内,并包含两次注射柠檬烯和氧化剂,使得第一个实验在没有种子气溶胶的情况下测量SOA产量,并且第二个实验在10的存在下产生μgm3种子有机气溶胶。在每次注射之后,观察到气溶胶质量的两个单独增加,对应于两个柠檬烯双键的顺序氧化。测量的NO3,柠檬烯,产物硝酸盐浓度和气溶胶性能分析提供机械洞察力,并限制产品的分支比和蒸汽压力。 No3 +柠檬烯的有机硝酸盐产率为≈30%。观察到SOA质量产量为25-40%。第一喷射由动力学模型再现。 PMF分析气溶胶组合物的分析表明,大部分气溶胶质量由O3和NO3的组合氧化产生,例如,O3的NO 3 +柠檬烯产物的氧化。此外,后来的气溶胶硝酸盐质量似乎从NO 3的非均相摄取到未反应的气溶胶烯烃上。
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