0000000001115433

AUTHOR

B. N. Holben

showing 2 related works from this author

Spatial distribution of aerosol microphysical and optical properties and direct radiative effect from the China Aerosol Remote Sensing Network

2019

Multi-year observations of aerosol microphysical and optical properties, obtained through ground-based remote sensing at 50 China Aerosol Remote Sensing Network (CARSNET) sites, were used to characterize the aerosol climatology for representative remote, rural, and urban areas over China to assess effects on climate. The annual mean effective radii for total particles (ReffT) decreased from north to south and from rural to urban sites, and high total particle volumes were found at the urban sites. The aerosol optical depth at 440 nm (AOD440 nm) increased from remote and rural sites (0.12) to urban sites (0.79), and the extinction Ångström exponent (EAE440–870 nm) increased fro…

Atmospheric ScienceAngstrom exponent010504 meteorology & atmospheric sciencesEnvironmental pollution010501 environmental sciencesAtmospheric sciencesSpatial distribution01 natural sciencesAtmospherelcsh:ChemistrySpatial distributionRadiative effectComputingMilieux_MISCELLANEOUS0105 earth and related environmental sciencesAerosol properties15. Life on landAlbedoRemote sensingAridlcsh:QC1-999Aerosollcsh:QD1-99913. Climate actionExtinction (optical mineralogy)[SDE]Environmental SciencesEnvironmental scienceSunphotometerslcsh:Physics
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Statistical evaluation of aerosol retrievals from AERONET using in-situ aircraft measurements

2011

Abstract. Aerosol optical properties were measured by NOAA's Airborne Aerosol Observatory over Bondville, Illinois, during more than two years using a light aircraft. Measured properties included total light scattering, backscattering, and absorption, while calculated parameters included aerosol optical depth (AOD), Ångström exponent, single-scattering albedo, hemispheric backscatter fraction, asymmetry parameter, and submicrometer mode fraction of scattering. The in-situ aircraft measurements are compared here with AERONET measurements and retrievals of the aerosol optical properties at the same location. The comparison reveals discrepancies between the aerosol properties retrieved from AE…

In situMeteorologyEnvironmental sciencePhysics::Atmospheric and Oceanic PhysicsRemote sensingAerosolAERONET
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