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A multisource observation study of the severe prolonged regional haze episode over eastern China in January 2013

机译:多源观测研究2013年1月中国东部地区严重的长期霾天气

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摘要

By employing visibility observation, PM_(10), SO_2 and NO_2 concentration, MODIS AOD at 550 nm, CARSNET AOD at 440 nm, CALIPSO extinction coefficient at 532 nm, we studied the air pollution condition of a severe haze episode occurred on 6-16 January 2013 over eastern China. The study found that this severe pollution episode of large area haze was accompanied with low visibility, high PM_(10) and AOD in eastern China. The most polluted regions is the Jing-Jin-Ji and its near southern neighboring region including central and south Hebei, west Shandong and north Henan province in the whole China Mainland. The haze pollutants were spread to the offshore area of 125 E to the east of China, and even affected to the west of 140°E. The PM10 variation trend shows a strong linkage among the big cities in Jing-jin-Ji and their near surrounding cities, indicating the possible inter-transport and influence among them. The suburb area of megacity suffered the similar serious pollution with urban region during this kind of severe haze episode. Most aerosol pollutants concentrated in boundary layer below 1500 m vertical height, in particular, the vertical heights of 100-800 m above the ground are peaks of the aerosol pollutants.
机译:通过能见度观测,PM_(10),SO_2和NO_2浓度,550 nm的MODIS AOD,440 nm的CARSNET AOD,532 nm的CALIPSO消光系数,我们研究了6-16日发生严重雾霾的空气污染状况2013年1月在中国东部。研究发现,在中国东部,这种大面积雾霾的严重污染事件伴随着低能见度,高PM_(10)和AOD。污染最严重的地区是京津冀及其附近的南部邻近地区,包括整个中国大陆的河北中部和南部,山东西部和河南北部。霾污染物扩散到中国东部125 E的近海区域,甚至影响到140°E的西部。 PM10的变化趋势表明,京津冀各大城市及其附近城市之间存在紧密的联系,表明它们之间可能存在相互影响和相互影响。在这种严重的霾天气中,特大城市的郊区遭受了与市区类似的严重污染。大多数气溶胶污染物集中在垂直高度低于1500 m的边界层中,尤其是高于地面100-800 m的垂直高度是气溶胶污染物的峰值。

著录项

  • 来源
    《Atmospheric environment》 |2014年第6期|807-815|共9页
  • 作者单位

    Institute of Atmospheric Composition (IAC)/Key Laboratory of Atmospheric Chemistry of China Meteorological Administration (CMA),Chinese Academy of Meteorological Sciences (CAMS), Beijing 100081, China,Collaborative Innovation Center on Forecast and Evaluation of Meteorological Disasters, Nanjing University of Information Science & Technology, Nanjing 210044, China;

    State Key Laboratory of Numerical Modeling for Atmospheric Sciences and Geophysical Fluid Dynamics (LASG), Institute of Atmospheric Physics (IAP),Chinese Academy of Sciences (CAS), Beijing 100029, China;

    Institute of Atmospheric Composition (IAC)/Key Laboratory of Atmospheric Chemistry of China Meteorological Administration (CMA),Chinese Academy of Meteorological Sciences (CAMS), Beijing 100081, China;

    College of Atmospheric Physics, Nanjing University of Information Science & Technology, Nanjing 210044, China,Institute of Atmospheric Composition (IAC)/Key Laboratory of Atmospheric Chemistry of China Meteorological Administration (CMA),Chinese Academy of Meteorological Sciences (CAMS), Beijing 100081, China;

    State Key Laboratory of Numerical Modeling for Atmospheric Sciences and Geophysical Fluid Dynamics (LASG), Institute of Atmospheric Physics (IAP),Chinese Academy of Sciences (CAS), Beijing 100029, China;

    College of Atmospheric Physics, Nanjing University of Information Science & Technology, Nanjing 210044, China,Institute of Atmospheric Composition (IAC)/Key Laboratory of Atmospheric Chemistry of China Meteorological Administration (CMA),Chinese Academy of Meteorological Sciences (CAMS), Beijing 100081, China;

    Institute of Atmospheric Composition (IAC)/Key Laboratory of Atmospheric Chemistry of China Meteorological Administration (CMA),Chinese Academy of Meteorological Sciences (CAMS), Beijing 100081, China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    East China; Haze episode; Visibility; AOD; PM_(10); Extinction coefficient;

    机译:华东阴霾发作;能见度;AOD;PM_(10);消光系数;

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