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Impact of HONO on global atmospheric chemistry calculated with an empirical parameterization in the EMAC model

机译:用EMAC模型中的经验参数化计算HONO对全球大气化学的影响

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The photolysis of HONO is important for the atmospheric HO _x (OH + HO _2) radical budget and ozone formation, especially in polluted air. Nevertheless, owing to the incomplete knowledge of HONO sources, realistic HONO mechanisms have not yet been implemented in global models. We investigated measurement data sets from 15 field measurement campaigns conducted in different countries worldwide. It appears that the HONO/NO _x ratio is a good proxy predictor for HONO mixing ratios under different atmospheric conditions. From the robust relationship between HONO and NO _x, a representative mean HONO/NO _x ratio of 0.02 has been derived. Using a global chemistry-climate model and employing this HONO/NO x ratio, realistic HONO levels are simulated, being about one order of magnitude higher than the reference calculations that only consider the reaction OH + NO → HONO. The resulting enhancement of HONO significantly impacts HO _x levels and photo-oxidation products (e.g, O _3, PAN), mainly in polluted regions. Furthermore, the relative enhancements in OH and secondary products are higher in winter than in summer, thus enhancing the oxidation capacity in polluted regions, especially in winter when other photolytic OH sources are of minor importance. Our results underscore the need to improve the understanding of HONO chemistry and its representation in atmospheric models.
机译:HONO的光解对于大气中的HO_x(OH + HO _2)自由基收支和臭氧形成非常重要,尤其是在污染的空气中。然而,由于对HONO来源的知识不完整,因此尚未在全局模型中实现实际的HONO机制。我们调查了在全球不同国家进行的15次现场测量活动中的测量数据集。似乎HONO / NO _x比是不同大气条件下HONO混合比的良好替代指标。从HONO和NO _x之间的稳健关系,可以得出代表性的平均HONO / NO _x比为0.02。使用全局化学-气候模型并采用此HONO / NO x比,模拟了实际的HONO水平,比仅考虑反应OH + NO→HONO的参考计算高约一个数量级。产生的HONO的增强显着影响HO _x水平和光氧化产物(例如,O _3,PAN),主要在污染区域。此外,冬季与夏季相比,OH和次级产品的相对增强要高,因此可以增强污染地区的氧化能力,特别是在冬季,其他光解OH源的重要性不高。我们的结果强调需要改进对HONO化学及其在大气模型中的表示的理解。

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