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北美城市近十年 OH 趋势估计。

Estimate of OH trends over one decade in North American cities.

机构信息

Department of Earth and Planetary Science, University of California, Berkeley, CA 94704.

Division of Geological and Planetary Sciences, California Institute of Technology, Pasadena, CA 91125.

出版信息

Proc Natl Acad Sci U S A. 2022 Apr 19;119(16):e2117399119. doi: 10.1073/pnas.2117399119. Epub 2022 Apr 11.

Abstract

The hydroxyl radical (OH) is the most important oxidant on global and local scales in the troposphere. Urban OH controls the removal rate of primary pollutants and triggers the production of ozone. Interannual trends of OH in urban areas are not well documented or understood due to the short lifetime and high spatial heterogeneity of OH. We utilize machine learning with observational inputs emphasizing satellite remote sensing observations to predict surface OH in 49 North American cities from 2005 to 2014. We observe changes in the summertime OH over one decade, with wide variation among different cities. In 2014, compared to the summertime OH in 2005, 3 cities show a significant increase of OH, whereas, in 27 cities, OH decreases in 2014. The year-to-year variation of OH is mapped to the decline of the NO2 column. We conclude that these cities in this analysis are either in the NOx-limited regime or at the transition from a NOx suppressed regime to a NOx-limited regime. The result emphasizes that, in the future, controlling NOx emissions will be most effective in regulating the ozone pollution in these cities.

摘要

羟基自由基(OH)是对流层中全球和局部范围内最重要的氧化剂。城市 OH 控制着一次污染物的去除率,并引发臭氧的生成。由于 OH 的寿命短且空间异质性高,因此城市地区 OH 的年际变化并没有得到很好的记录或理解。我们利用机器学习和观测输入(强调卫星遥感观测),从 2005 年到 2014 年预测了 49 个北美的城市的地表 OH。我们观察到了过去十年中夏季 OH 的变化,不同城市之间存在很大的差异。与 2005 年夏季相比,2014 年有 3 个城市的 OH 显著增加,而在 27 个城市中,OH 在 2014 年减少了。OH 的逐年变化与 NO2 柱的下降有关。我们得出的结论是,在本分析中,这些城市要么处于氮氧化物限制区,要么处于从氮氧化物抑制区向氮氧化物限制区的过渡区。这一结果强调,未来控制氮氧化物的排放将是这些城市控制臭氧污染最有效的手段。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2eb8/9169711/5ed5f02ad718/pnas.2117399119fig01.jpg

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