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Long-term Changes in Extreme Air Pollution Meteorology and the Implications for Air Quality

机译:极端空气污染气象的长期变化以及空气质量的影响

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Extreme air pollution meteorological events, such as heat waves, temperature inversions and atmospheric stagnation episodes, can significantly affect air quality. Based on observational data, we have analyzed the long-term evolution of extreme air pollution meteorology on the global scale and their potential impacts on air quality, especially the high pollution episodes. We have identified significant increasing trends for the occurrences of extreme air pollution meteorological events in the past six decades, especially over the continental regions. Statistical analysis combining air quality data and meteorological data further indicates strong sensitivities of air quality (including both average air pollutant concentrations and high pollution episodes) to extreme meteorological events. For example, we find that in the United States the probability of severe ozone pollution when there are heat waves could be up to seven times of the average probability during summertime, while temperature inversions in wintertime could enhance the probability of severe particulate matter pollution by more than a factor of two. We have also identified significant seasonal and spatial variations in the sensitivity of air quality to extreme air pollution meteorology.
机译:极端空气污染气象事件,如热波,温度倒和大气停滞事件,可以显着影响空气质量。基于观察数据,我们分析了全球规模极端空气污染气象的长期演变及其对空气质量的潜在影响,尤其是高污染发作。我们已经确定了过去六十年的极端空气污染气象事件发生的显着增加趋势,特别是在大陆地区。结合空气质量数据和气象数据的统计分析进一步表明了极端气象事件的空气质量(包括平均空气污染物浓度和高污染发作)的强敏感性。例如,我们发现,在美国,在夏季期间,在美国出现热波时,在夏季的平均概率的概率可能是七倍,而冬季的温度逆转可能会增加重症颗粒物质污染的可能性超过两个。我们还确定了对空气质量敏感性的显着季节性和空间变化,以极低的空气污染气象。

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