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Rapid formation and evolution of an extreme haze episode in Northern China during winter 2015

机译:2015年冬季中国北方极端霾事件的快速形成和演变

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摘要

We investigate the rapid formation and evolutionary mechanisms of an extremely severe and persistent haze episode that occurred in northern China during winter 2015 using comprehensive ground and vertical measurements, along with receptor and dispersion model analysis. Our results indicate that the life cycle of a severe winter haze episode typically consists of four stages: (1) rapid formation initiated by sudden changes in meteorological parameters and synchronous increases in most aerosol species, (2) persistent evolution with relatively constant variations in secondary inorganic aerosols and secondary organic aerosols, (3) further evolution associated with fog processing and significantly enhanced sulfate levels, and (4) clearing due to dry, cold north-northwesterly winds. Aerosol composition showed substantial changes during the formation and evolution of the haze episode but was generally dominated by regional secondary aerosols (53–67%). Our results demonstrate the important role of regional transport, largely from the southwest but also from the east, and of coal combustion emissions for winter haze formation in Beijing. Also, we observed an important downward mixing pathway during the severe haze in 2015 that can lead to rapid increases in certain aerosol species.
机译:我们使用全面的地面和垂直测量以及受体和色散模型分析,研究了中国北方在2015年冬季发生的极其严重和持续的霾事件的快速形成和演化机制。我们的结果表明,严重的冬季霾天气的生命周期通常包括四个阶段:(1)由气象参数的突然变化和大多数气溶胶物种的同步增加引发的快速形成,(2)继发性变化相对恒定的持续演变无机气溶胶和二次有机气溶胶,(3)与雾气处理有关的进一步演变和明显提高的硫酸盐含量,(4)由于干燥,寒冷的西北风,导致清除。在霾事件的形成和演变过程中,气溶胶成分显示出实质性变化,但通常以区域性次级气溶胶为主(53–67%)。我们的研究结果证明了区域运输的重要作用,主要是从西南方向,也从东部开始,以及煤炭燃烧排放对于北京冬季烟霾形成的重要作用。此外,我们在2015年的严重雾霾天气中观察到一条重要的向下混合路径,可能导致某些气溶胶物种迅速增加。

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