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Amplified transboundary transport of haze by aerosol-boundary layer interaction in China

机译:通过中国气溶胶边界层相互作用的雾霾扩增

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Although air quality in China has substantially improved since 2013 as a consequence of the clean air action, severe haze events still frequently strike megacities despite strict local emissions reduction efforts. Long-range transport and local accumulation as well as chemical transformation have been deemed as key factors of heavy haze pollution; however, the formation mechanisms of regional long-lasting haze and the physical and chemical connections between different megacities clusters are still poorly understood. Here we present that long-range transport and aerosol-boundary layer feedback may interact rather than act as two isolated processes as traditionally thought by investigating typical regional haze events in northern and eastern China. This interaction can then amplify transboundary air pollution transport over a distance of 1,000 km and boost long-lasting secondary haze from the North China Plain to the Yangtze River delta. Earlier emission reduction before the pollution episodes would provide better air pollution mitigation in both regions. Our results show an amplified transboundary transport of haze by aerosol-boundary layer interaction in China and suggest the importance of coordinated cross-regional emission reduction with a focus on radiatively active species like black carbon.
机译:尽管中国的空气质量自2013年以来,中国的空气质量显着提高,但由于严格的当地排放努力,严重的阴霾事件仍然经常罢工巨大。远程运输和局部积累以及化学转化被认为是重度雾度污染的关键因素;然而,区域长期雾霾的形成机制和不同巨型集群之间的物理和化学联系仍然明白。在这里,我们展示了远程运输和气溶胶边界层反馈可以相互作用而不是作为传统上思考的两种隔离过程来调查北部和东部地区的典型区域阴霾事件。然后,这种相互作用可以放大横向性空气污染运输在1,000公里的距离,从华北平原到长江三角洲升高了持久的次要阴霾。在污染事件之前,早期的减排将在两个地区提供更好的空气污染减缓。我们的结果表明,中国气溶胶边界层相互作用的雾霾越狱,建议协调跨区域排放减少的重要性,重点是黑炭等辐射活性物种。

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