大气与环境光学学报 ›› 2015, Vol. 10 ›› Issue (2): 139-148.

• “大气环境光学探测技术”专辑 • 上一篇    下一篇

差分光学吸收光谱技术监测气溶胶研究进展

王珊珊1,周斌2*   

  1. (1.上海理工大学环境与建筑学院,上海 200093;
    2. 复旦大学环境科学与工程系,上海 200433)
  • 收稿日期:2014-12-01 出版日期:2015-03-28 发布日期:2015-04-02
  • 通讯作者: 周斌(1966-), 男,汉,安徽蚌埠人,博士,教授,主要研究领域为环境遥感技术研究及应用、城市大气污染研究、环境监测新技术研发等。 E-mail:binzhou@fudan.edu.cn
  • 作者简介:王珊珊 (1985-),女,汉,副教授,主要从事大气环境光学遥感技术、城市大气污染及卫星数据反演及校验等研究。
  • 基金资助:

    国家科技部863项目(2006AA06Z417),国家自然科学基金(21477021、21277029、40975076、41405117),沪江基金研究基地专项(B14003)资助

Progress in Aerosol Measurements Based on the Differential Optical Absorption Spectroscopy Method

WANG Shan-shan1, ZHOU Bin2   

  1. (1. School of Environment and Architecture, University of Shanghai for Science and Technology, Shanghai 200093, China; 
    2. Department of Environmental Science and Engineering, Fudan University, Shanghai 200433, China)
  • Received:2014-12-01 Published:2015-03-28 Online:2015-04-02

摘要:

差分光学吸收光谱技术(DOAS)经过三十多年的发展,已经广泛用于地基、空基和卫星平台的大气痕量气体观测。目前,DOAS技术在大气气溶胶光学厚度、消光系数、粒径分布、污染类型等监测领域得到了很大的发展,为大气环境监测、大气化学研究提供了新的手段和方法。在分别回顾主动DOAS技术监测近地面气溶胶以及被动DOAS技术反演垂直方向上气溶胶光学参数等研究的基础上,对DOAS技术监测气溶胶的研究领域技术发展提出新思路。

关键词: 气溶胶, 消光系数, 气溶胶光学厚度, O4, 差分光学吸收光谱法

Abstract:

After more than three decades' development, the differential optical absorption spectroscopy (DOAS) method is widely used to measure the atmospheric trace gases in forms of ground based, air borne and satellite platform. Recently, the DOAS technique made great progresses in atmospheric aerosol measurement, including aerosol optical depth (AOD), extinction coefficient, size distribution and pollution type, which provides a new method for atmospheric environment monitoring and atmospheric chemistry research. Studies about the active DOAS technique to measure ground surface aerosol optical parameters and passive technique to retrieve vertical aerosol optical properties were reviewed, respectively. Afterwards, new ideas for the research on the aerosol monitoring by the DOAS technique were put forward.

Key words: aerosol, extinction coefficient, aerosol optical depth, O4, differential optical absorption spectroscopy

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