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首页> 外文期刊>Advances in Meteorology >The Influence of Climate Factors, Meteorological Conditions, and Boundary-Layer Structure on Severe Haze Pollution in the Beijing-Tianjin-Hebei Region during January 2013
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The Influence of Climate Factors, Meteorological Conditions, and Boundary-Layer Structure on Severe Haze Pollution in the Beijing-Tianjin-Hebei Region during January 2013

机译:2013年1月气候因子,气象条件和边界层结构对北京-天津-河北地区严重烟霾污染的影响

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The air-pollution episodes in China in January 2013 were the most hazardous in the Beijing-Tianjin-Hebei (BTH) region. PM2.5, AOD, and long-term visibility data, along with various climate and meteorological factors and the boundary-layer structure, were used to investigate the cause of the heavy-haze pollution events in January 2013. The result suggests that unfavorable diffusion conditions (weak surface winds and high humidity) and high primary-pollutant emissions have induced heavy-haze pollution in the BTH region over the past two decades. A sudden stratospheric warming (SSW), weak East Asian winter monsoon, a weak Siberian High, weak meridional circulation, southerly wind anomalies in the lower troposphere, and abnormally weak surface winds and high humidity were responsible for the severe haze pollution events, rather than an abrupt increase in emissions. Heavy/severe haze pollution is associated with orographic wind convergence zones along the Taihang and Yanshan Mountains, slight winds (1.7∼2.1 m/s), and high humidity (70%∼90%), which limits the diffusion of pollutants and facilitates the hygroscopic growth of aerosols. Recirculation and regional transport, along with the poorest diffusion conditions and favorable conditions for hygroscopic growth of aerosols and secondary transformation under the high emission, led to explosive growth and the record high hourly average concentration of PM2.5in Beijing.
机译:2013年1月,中国的空气污染事件在京津冀地区最为严重。使用PM2.5,AOD和长期能见度数据,以及各种气候和气象因素以及边界层结构,调查了2013年1月重雾污染事件的原因。结果表明,不利的扩散在过去的二十年中,恶劣的天气条件(微弱的地面风和高湿度)和高水平的主要污染物排放已在BTH地区引起了严重的霾霾污染。平流层突然变暖(SSW),东亚冬季风弱,西伯利亚高弱,子午环流弱,对流层下层南风异常以及异常弱的地面风和高湿度是造成严重雾霾污染的原因,而不是排放突然增加。雾霾污染重度/重度与太行山和燕山山的地形汇聚区,微风(1.7〜2.1 m / s)和高湿度(70%〜90%)有关,这限制了污染物的扩散并促进了污染物的扩散。吸湿性的气溶胶生长。再循环和区域运输,再加上最差的扩散条件和高排放下气溶胶的吸湿性增长和二次转化的有利条件,导致爆炸性增长和北京PM2.5的每小时平均浓度创历史新高。

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