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Effect of chemical structure on secondary organic aerosol formation from C12 alkanes

机译:化学结构对C12烷烃二次有机气溶胶形成的影响

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The secondary organic aerosol (SOA) formation from four C12 alkanes (n-dodecane, 2-methylundecane, hexylcyclohexane, and cyclododecane) is studied in the Caltech Environmental Chamber under low-NOx conditions, in which the principal fate of the peroxy radical formed in the initial OH reaction is reaction with HO2. Simultaneous gas- and particle-phase measurements elucidate the effect of alkane structure on the chemical mechanisms underlying SOA growth. Reaction of branched structures leads to fragmentation and more volatile products, while cyclic structures are subject to faster oxidation and lead to less volatile products. Product identifications reveal that particle-phase reactions involving peroxyhemiacetal formation from several multifunctional hydroperoxide species are key components of initial SOA growth in all four systems. The continued chemical evolution of the particle-phase is structure-dependent, with 2-methylundecane SOA formation exhibiting the least extent of chemical processing and cyclododecane SOA achieving sustained growth with the greatest variety of chemical pathways. The extent of chemical development is not necessarily reflected in the oxygen to carbon (O : C) ratio of the aerosol as cyclododecane achieves the lowest O : C, just above 0.2, by the end of the experiment and hexylcyclohexane the highest, approaching 0.35.
机译:在低NOX条件下,在CALTECH环境室中研究了来自四个C12烷烃(N-十二烷,2-甲基癸烷,己基环十二烷和环二甲烷)的二次有机气溶胶(SOA)。在低NOx条件下,其中形成过氧自由基的主要命运初始OH反应是与HO2的反应。同时气相测量阐明烷烃结构对SOA生长的化学机制的影响。支链结构的反应导致碎裂和更挥发的产品,而环状结构受到更快的氧化并导致挥发性产品较少。产品鉴定表明,涉及过氧血缩醛形成的颗粒反应来自几种多官能氢过氧化物物种是所有四种系统中初始SOA生长的关键组分。粒子相的持续化学进化是结构依赖性的,具有2-甲基癸烷SOA形成,其含有最小程度的化学加工和环糊癸烷SOA与最大种类的化学途径实现持续生长。化学发育的程度不一定反映在氧气(O:c)的氧气(O:c)的碳(O:c)的比例中,因为环二癸烷在实验结束时达到0.2的最低O:C,并且己基环己烷最高,接近0.35。

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