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A new diagnostic for tropospheric ozone production

机译:对流层臭氧生产的新诊断

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Tropospheric ozone is important for the Earth's climate and air quality. It is produced during the oxidation of organics in the presence of nitrogen oxides. Due to the range of organic species emitted and the chain-like nature of their oxidation, this chemistry is complex and understanding the role of different processes (emission, deposition, chemistry) is difficult. We demonstrate a new methodology for diagnosing ozone production based on the processing of bonds contained within emitted molecules, the fate of which is determined by the conservation of spin of the bonding electrons. Using this methodology to diagnose ozone production in the GEOS-Chem chemical transport model, we demonstrate its advantages over the standard diagnostic. We show that the number of bonds emitted, their chemistry and lifetime, and feedbacks on OH are all important in determining the ozone production within the model and its sensitivity to changes. This insight may allow future model–model comparisons to better identify the root causes of model differences.
机译:对流层臭氧对地球的气候和空气质量非常重要。在氮氧化物存在下在有机物氧化过程中产生。由于发出的有机物种和氧化的链状性质,这种化学复杂,了解不同方法的作用(排放,沉积,化学)是困难的。我们证明了一种基于在发射分子中包含的键的处理来诊断臭氧产生的新方法,其命运由粘合电子的旋旋守恒确定。使用该方法来诊断臭氧生产在地球化学化学传输模型中,我们展示了其优于标准诊断的优势。我们表明发出的债券数量,化学和寿命,以及OH反馈在确定模型内的臭氧产生及其对变化的敏感性方面都很重要。这种洞察力可能允许未来的模型模型比较以更好地确定模型差异的根本原因。

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