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Coupled Partitioning, Dilution, and Chemical Aging of Semivolatile Organics

机译:半挥发性有机物的分区,稀释和化学老化耦合

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摘要

A unified framework of semi-volatile partitioning permits models to efficiently treat both semi-volatile primary emissions and secondary organic aerosol production (SOA), and then to treat the chemical evolution (aging) of the aggregate distribution of semi-volatile material. This framework also reveals critical deficiencies in current emissions and SOA formation measurements. The key feature of this treatment is a uniform basis set of saturation vapor pressures spanning the range of ambient organic saturation concentrations, from effectively nonvolatile material at 0.01 μg m~(-3)to vapor-phase effluents at 100 mg m~(-3). Chemical evolution can be treated by a transformation matrix coupling the various basis vectors. Using this framework, we show that semi-volatile partitioning can be described in a self-consistent way, with realistic behavior with respect to temperature and varying organic aerosol loading. The time evolution strongly suggests that neglected oxidation of numerous "intermediate volatility" vapors (IVOCs, with saturation concentrations above ~1 mg m~(-3)) may contribute significantly to ambient SOA formation.
机译:半挥发物分配的统一框架允许模型有效地处理半挥发物的主要排放物和二次有机气溶胶生产(SOA),然后处理半挥发物的总分布的化学演化(老化)。该框架还揭示了电流排放和SOA形成测量中的严重缺陷。该处理的关键特征是饱和蒸气压的统一基础集,其范围涵盖环境有机饱和浓度的范围,从0.01μgm〜(-3)的有效非挥发性物质到100 mg m〜(-3 )。可以通过结合各种基础向量的转换矩阵来处理化学演化。使用此框架,我们表明可以以自洽的方式描述半挥发物分配,并具有关于温度和变化的有机气溶胶负载的实际行为。时间演变强烈表明,许多“中间挥发性”蒸气(IVOC,饱和浓度在〜1 mg m〜(-3)以上)的被忽略的氧化作用可能对环境SOA的形成起重要作用。

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