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Investigations of Secondary Organic Aerosol in the UCR EPA Environmental Chamber

机译:UCR EPA环境室中二次有机气溶胶的研究

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A large indoor environmental reactor was completed in 2002 at UC Riverside to investigate photochemical processes leading to ozone and secondary organic aerosol (SOA) formation. The chamber is briefly described by Carter (2004) in a separate contribution to this workshop and in a more detailed manuscript submitted to Atmospheric Environment (Carter et al., 2005). The contribution to the workshop covered some details of the UCR chamber wall characterization (Carter, 2004), selected approaches to studies of secondary organic aerosol formation (Cocker et al., 2001 and Song et al, 2005), the NOX dependence of m-xylene SOA formation (Song et al, 2005), some acid catalyzed reaction work from Caltech (Gao et al, 2004), and select details of the Caltech environmental chamber (Cocker et al, 2001). This contribution will briefly describe the SOA components of the chamber facility and advantages of the new reactor with respect to SOA investigations, and will summarize the findings on the importance of hydrocarbon:NOx ratio on SOA formation in the w?-xylene photooxidation system.
机译:在2002年在UC河畔完成了一个大型室内环境反应堆,以调查导致臭氧和二次有机气溶胶(SOA)形成的光化学过程。 Carter(2004)将腔室简要描述为该研讨会的单独贡献,并在提交到大气环境的更详细的稿件中(Carter等,2005)。对研讨会的贡献涵盖了UCR室墙表征的一些细节(Carter,2004),用于研究二次有机气溶胶形成的选择方法(Cocker等,2001年,2001年和Song等,2005),NOx依赖性二甲苯SOA形成(Song等,2005),一些酸催化的反应工作来自Caltech(Gao等,2004),选择Caltech环境室的细节(Cocker等,2001)。该贡献将简要描述腔室设施的SOA组件以及新反应器关于SOA调查的优点,并将总结了对Wα-十三聚氧化系统中SOA形成的烃的重要性的研究结果。

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