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Laboratory studies of organic peroxy radical chemistry: an overview with emphasis on recent issues of atmospheric significance

机译:有机过氧自由基化学的实验室研究:概述,重点是对大气具有重要意义的最新问题

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Organic peroxy radicals (often abbreviated RO2) play a central role in the chemistry of the Earth's lower atmosphere. Formed in the atmospheric oxidation of essentially every organic species emitted, their chemistry is part of the radical cycles that control the oxidative capacity of the atmosphere and lead to the formation of ozone, organic nitrates, organic acids, particulate matter and other so-called secondary pollutants. In this review, laboratory studies of this peroxy radical chemistry are detailed, as they pertain to the chemistry of the atmosphere. First, a brief discussion of methods used to detect the peroxy radicals in the laboratory is presented. Then, the basic reaction pathways - involving RO2 unimolecular reactions and bimolecular reactions with atmospheric constituents such as NO, NO2, NO3, O3, halogen oxides, HO2, and other RO2 species - are discussed. For each of these reaction pathways, basic reaction rates are presented, along with trends in reactivity with radical structure. Focus is placed on recent advances in detection methods and on recent advances in our understanding of radical cycling processes, particularly pertaining to the complex chemistry associated with the atmospheric oxidation of biogenic hydrocarbons.
机译:有机过氧自由基(通常缩写为RO2)在地球低层大气化学过程中起着核心作用。它们的化学反应是大气中几乎所有排放出的有机物形成的,它是自由基循环的一部分,该自由基循环控制大气的氧化能力并导致形成臭氧,有机硝酸盐,有机酸,颗粒物和其他所谓的次级污染物。在这篇综述中,对这种过氧自由基化学的实验室研究进行了详细介绍,因为它们与大气化学有关。首先,简要介绍了用于检测实验室中过氧自由基的方法。然后,讨论了基本的反应途径-涉及RO2单分子反应和与大气成分(例如NO,NO2,NO3,O3,卤素氧化物,HO2和其他RO2种类)的双分子反应。对于这些反应途径中的每一个,均给出了基本反应速率以及与自由基结构的反应性趋势。重点放在检测方法的最新进展以及我们对自由基循环过程的理解上的最新进展,特别是与与生物烃类的大气氧化有关的复杂化学有关。

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