• DocumentCode
    340066
  • Title

    Retrieval of aerosol optical depth over water and over land from multi-spectral electro-optical sensors on satellites

  • Author

    De Leeuw, Gemt ; Veefkind, Pepijn J.

  • Author_Institution
    TNO Phys. & Electron. Lab., The Hague, Netherlands
  • Volume
    1
  • fYear
    1999
  • fDate
    1999
  • Firstpage
    362
  • Abstract
    Aerosols have been identified as an important factor in the regulation of the Earth climate. The incoming solar radiation is scattered by aerosols, which induces a negative (cooling) effect on the atmospheric radiation balance. The present contribution is focused on the detection of aerosols by using their scattering properties. The concentrations and occurrence of aerosols are highly variable in both space and time, due to the occurrence of many direct sources with strongly different source strengths, atmospheric residence times of several days, and a variety of transport mechanisms that disperse the aerosol throughout the troposphere. To obtain information on the regional and global distributions of aerosols, and thus on their effects on climate and other important issues such as health and environmental effects, satellite remote sensing is a very promising tool. Different satellite instruments are becoming available that have been designed to derive specific information that can be used for aerosol retrieval. The problem to derive aerosol properties from radiation received by satellite-based sensors is to separate the contribution due to reflection at the surface from the contribution due to scattering by aerosols. It was thought that aerosol retrieval was only possible over water, i.e. dark surfaces with very low reflection. However, at the TNO Physics and Electronics Laboratory (TNO-FEL), algorithms have been developed that can also be applied over land. An overview of algorithms presently available at TNO-FEL is presented
  • Keywords
    aerosols; air pollution measurement; atmospheric optics; atmospheric techniques; remote sensing; aerosol optical depth; atmospheric radiation balance; concentrations; cooling; incoming solar radiation; multi-spectral electro-optical sensors; occurrence; reflection; residence times; satellite remote sensing; satellite-based sensors; scattering; transport; Aerosols; Cooling; Earth; Optical reflection; Optical scattering; Optical sensors; Remote sensing; Satellites; Solar radiation; Terrestrial atmosphere;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Geoscience and Remote Sensing Symposium, 1999. IGARSS '99 Proceedings. IEEE 1999 International
  • Conference_Location
    Hamburg
  • Print_ISBN
    0-7803-5207-6
  • Type

    conf

  • DOI
    10.1109/IGARSS.1999.773498
  • Filename
    773498