Wavelength dependence of the optical depth of biomass burning, urban, and desert dust aerosols
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- Type
- article
- Published
- 1999-12-27
- Cited by
- 2,158
- References
- 40
- Access
- Open access
- OpenAlex
- https://openalex.org/W2050250373
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:129169298
Keywords
Aerosol, Angstrom exponent, Radiance, Wavelength, Environmental science
References
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- On the variability of desert aerosol radiative characteristics
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- Dynamic aerosol model: Urban/industrial aerosol
- Pinatubo and pre‐Pinatubo optical‐depth spectra: Mauna Loa measurements, comparisons, inferred particle size distributions, radiative effects, and relationship to lidar data
- Revised depolarization corrections for atmospheric extinction.
- Physical and optical properties of young smoke from individual biomass fires in Brazil
- Measurements of irradiance attenuation and estimation of aerosol single scattering albedo for biomass burning aerosols in Amazonia
- Humidification factors of aerosols from biomass burning in Brazil
- Comparison of aerosol optical depth from four solar radiometers during the fall 1997 ARM intensive observation period
- Effect of dry‐season biomass burning on Amazon basin aerosol concentrations and optical properties, 1992–1994
- Composition and sources of aerosols from the Amazon Basin
- Cirrus Cloud Radiative and Microphysical Properties from Ground Observations and In Situ Measurements During FIRE 1991 and Their Application to Exhibit Problems in Cirrus Solar Radiative Transfer Modeling
- Aerosol size distributions and optical properties found in the marine boundary layer over the Atlantic Ocean
- Use of second derivatives of canopy reflectance for monitoring prairie vegetation over different soil backgrounds
- Light Extinction by Aerosols during Summer Air Pollution
- Physical, chemical, and optical properties of regional hazes dominated by smoke in Brazil
- A flexible inversion algorithm for retrieval of aerosol optical properties from Sun and sky radiance measurements
Cited by
- Inferring wavelength dependence of AOD and Ångström exponent over a sub-tropical station in South Africa using AERONET data: influence of meteorology, long-range transport and curvature effect.
- Maritime Aerosol Network (MAN) as a component of AERONET - first results
- Development of an eye-safe diode-laser-based micro-pulse differential absorption lidar (mp-DIAL) for atmospheric water-vapor and aerosol studies
- Variabilité de la distribution verticale de l'ozone et des aérosols troposphériques en région méditerranéenne: processus de transport et impacts radiatifs.
- Black carbon and the regional climate of California
- Aerosol Characterizaton In El Paso-Juarez Airshed Using Optical Methods
- Interpretation of atmospheric particles at an urban area
- Developing a novel method to retrieve high spatial resolution Aerosol Optical Thickness (AOT) from satellite data
- Caractérisation du contenu atmosphérique en ozone et en aérosols au moyen de mesures spectrales dans l'UV : validation de l'instrument spatial OMI / AURA
- SINGLE MOLECULE STUDIES OF A SHORT RNA
- A New Algorithm for Retrieving Aerosol Properties Over Land from MODIS Spectral Reflectance
- A consistent aerosol optical depth (AOD) dataset over mainland China by integration of several AOD products
- Modis Validation, Data Merger and Other Activities Accomplished by the Simbios Project: 2002-2003
- Seasonal variation and difference of aerosol optical properties in columnar and surface atmospheres over Shanghai
- An outstanding Saharan dust event at Mt. Cimone (2165 m a.s.l., Italy) in March 2004
- An improvement of Simplified Atmospheric Correction : MODIS Visible Channel
- Identification of aerosol types over an urban site based on air-mass trajectory classification
- Wavelength dependence of the effective cloud optical depth
- Impacts of elevated-aerosol-layer and aerosol type on the correlation of AOD and particulate matter with ground-based and satellite measurements in Nanjing, southeast China.
- Aerosol optical properties over a coastal site in Goa, along the west coast of India
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- Authors' reply
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