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首页> 外文期刊>Atmospheric chemistry and physics >Lower tropospheric distributions of O-3 and aerosol over Raoyang, a rural site in the North China Plain
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Lower tropospheric distributions of O-3 and aerosol over Raoyang, a rural site in the North China Plain

机译:罗曼省O-3和Aerosol的较低的对流层分布,北方北方的农村遗址

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摘要

The North China Plain (NCP) has become one of the most polluted regions in China, with the rapidly increasing economic growth in the past decades. High concentrations of ambient O-3 and aerosol have been observed at urban as well as rural sites in the NCP. Most of the in situ observations of air pollutants have been conducted near the ground so that current knowledge about the vertical distributions of tropospheric O-3 and aerosol over the NCP region is still limited. In this study, vertical profiles of O-3 and size-resolved aerosol concentrations below 2.5 km were measured in summer 2014 over a rural site in the NCP, using an unmanned aerial vehicle (UAV) equipped with miniature analyzers. In addition, vertical profiles of aerosol scattering property in the lower troposphere and vertical profiles of O-3 below 1 km were also observed at the site using a lidar and tethered balloon, respectively. The depths of the mixed layer and residual layer were determined according to the vertical gradients of lidar particle extinction and aerosol number concentration. Average O-3 and size-resolved aerosol number concentration in both the mixed and residual layer were obtained from the data observed in seven UAV flights. The results show that during most of the flights the O-3 levels above the top of mixed layer were higher than those below. Such a positive gradient in the vertical distribution of O-3 makes the residual layer an important source of O-3 in the mixed layer, particularly during the morning when the top of mixed layer is rapidly elevated. In contrast to O3, aerosol number concentration was normally higher in the mixed layer than in the residual layer, particularly in the early morning. Aerosol particles were overwhelmingly distributed in the size range < 1 mu m, showing slight differences between the mixed and residual layers. Our measurements confirm that the lower troposphere over the rural area of the NCP is largely impacted by anthropogenic pollutants locally emitted or transported from urban areas. Compared with the historic O-3 vertical profiles over Beijing from the Measurement of Ozone and Water Vapor by Airbus In-Service Aircraft (MOZAIC), a strong increase in O-3 can be found at all heights below 2.5 km in the decade from 2004 to 2014, with the largest enhancement of about 41.6 ppb. This indicates that the lower troposphere over the northern part of the NCP has experienced rapidly worsening photochemical pollution. This worsening trend in photochemical pollution deserves more attention in the future.
机译:华北平原(NCP)已成为中国最污染的地区之一,过去几十年的经济增长迅速增长。在城市以及NCP的农村地区,已观察到高浓度的环境O-3和气溶胶。大多数原位观察空气污染物在地面附近进行,因此目前关于对流层O-3和NCP地区气溶胶的垂直分布的知识仍然有限。在本研究中,2014年夏天,在NCP的农村现场,在2014年夏天,测量了O-3和尺寸分辨的气溶胶浓度的垂直曲线,在NCP的农村现场,使用了配备微型分析仪的无人驾驶车辆(UAV)。此外,在现场,也观察了使用延雷达和束缚气球在o-3较低的对流层和垂直曲线下的垂直曲线的垂直曲线。根据LIDAR粒子消光的垂直梯度和气溶胶数浓度的垂直梯度测定混合层和残余层的深度。在七种UAV飞行中观察到的数据中,在混合和残留层中的平均O-3和尺寸分辨的气溶胶数浓度。结果表明,在大多数航班期间,混合层顶部的O-3水平高于下方的O-3水平。在O-3的垂直分布中如此的正梯度使得残余层在混合层中的一个重要来源,特别是在早晨,当混合层的顶部迅速升高时。与O3相反,混合层的气溶胶数浓度通常比残余层更高,特别是在清晨。气溶胶颗粒在大小范围<1μm的大小范围内被压倒性地分布,显示混合和残留层之间的微小差异。我们的测量证实,NCP农村地区的对流层较低的对流层主要受到城市地区本地排放或运输的人为污染物的影响。与北京的历史悠久的O-3垂直档案相比,通过空中客车在卫星和水蒸气中通过空中客车(Mozaic),O-3的强劲增长可以在2004年的十年后的所有高度低于2.5公里处找到到2014年,增强约41.6 PPB。这表明,NCP北部的对流层较低经历了迅速恶化的光化学污染。光化学污染的恶化趋势值得将来更加关注。

著录项

  • 来源
    《Atmospheric chemistry and physics》 |2017年第6期|共13页
  • 作者单位

    Chinese Acad Meteorol Sci State Key Lab Severe Weather China Meteorol Adm Beijing Peoples R China;

    Chinese Acad Meteorol Sci State Key Lab Severe Weather China Meteorol Adm Beijing Peoples R China;

    Chinese Acad Meteorol Sci State Key Lab Severe Weather China Meteorol Adm Beijing Peoples R China;

    Guangxi Meteorol Disaster Mitigat Inst Nanning Guangxi Peoples R China;

    Chinese Acad Sci Inst Atmospher Phys Key Lab Middle Atmosphere &

    Global Environm Obser Beijing Peoples R China;

    Chinese Acad Sci Inst Atmospher Phys Key Lab Middle Atmosphere &

    Global Environm Obser Beijing Peoples R China;

    China Meteorol Adm Meteorol Observat Ctr Beijing Peoples R China;

    Chinese Acad Meteorol Sci State Key Lab Severe Weather China Meteorol Adm Beijing Peoples R China;

    China Meteorol Adm Inst Urban Meteorol Beijing Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 大气科学(气象学);
  • 关键词

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