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  • A study on optical properties, classification, and transport of . . .
    Therefore, the present study investigates aerosol properties such as aerosol optical depth (AOD) (500 nm), Angstrom exponent (AE) (440–870 nm), single scattering albedo (SSA), fine-mode fraction (FMF), absorption aerosol optical depth (AAOD), and absorption aerosol exponent (AAE) over selected AERONET sites namely Bhola (2012–2021), Dhaka
  • Long-term trend Analysis of aerosol optical characteristics in the . . .
    Long-term aerosol optical characteristics over Gorakhpur attributed to escalating emissions of anthropogenic in the central Indo-Gangetic Plain (IGP) were assessed aerosols driven by rapid urbanization, industrialization, using satellite-derived aerosol data from 2003 to 2023
  • Extensive characterization of aerosol optical properties and chemical . . .
    addition, the relationships between aerosol component content and aerosol optical parameters such as aerosol optical depth (AOD), fine-mode fraction (FMF), absorption Ångström exponent (AAE), scattering Ångström exponent (SAE), and single scattering albedo (SSA) are also analyzed for indirect verifying the reliability of the component retrieval
  • Atmospheric Aerosol Loading and Properties over India: A review - ut
    Aerosol Optical Depth (AOD) AOD is strongly dependent on wavelength and it is a common parameter to identify both sources of aerosol generation and their evolution as it represents the aerosol loading in the atmospheric column (Kumar et al , 2013; Mukherjee and Vinoj, 2020) The spectral dependence of AOD varies with various aerosol types due
  • Assessment of aerosol optical and physical properties and implications . . .
    OPAC-derived aerosol optical depth (AOD), single-scattering albedo (SSA), Angstrom Exponent (AE) and asymmetry parameter (AsyP) were estimated to be 0 57 ± 0 07, 0 78 ± 0 16, 0 99 ± 0 21 and0 81 ± 0 15, respectively
  • Aerosol optical properties and their relationship with meteorological . . .
    In situ and columnar measurements of aerosol optical properties (AOPs) [Aerosol optical depth (AOD), Angstrom Exponent (AE), Aerosol scattering (σ scat) and absorption (σ abs) coefficients and single scattering albedo (SSA)] along with soot particles (Black carbon: BC) and fine particles (PM 2 5: d ≤ 2 5) were continuously measured at an
  • Study of Aerosol Optical and Physical Properties (Including AOD . . .
    In the present work, Aerosol data (AOD, Angstrom Exponent and UV aerosol Index) analyzed from NASA based satellite Giovanni and data derived from MODIS (aqua and Terra) and OMI (Ozone Monitoring Station) for calculation of annual, monthly and seasonal data of Aerosol on Pune city
  • Aerosol Opto-physical Properties: Temporal Variation, Aerosol Type . . .
    The present study investigates the prevalent column-integrated aerosol properties using AOD retrieved from the ground-based Microtops II Sun photometer measurements for the first time from a semi-urban observational site, AC-Ahmednagar, situated in Maharashtra state, India
  • A study on optical properties, classification, and transport of . . .
    study applies a classication technique to examine the major aerosol types using three columnar properties of aerosols which include AOD (500 nm), AE (440–870 nm), FMF (500 µm) using ground-based AERONET (AErosol RObotic NETwork) level 2 measurements during the smog period (October, November, and December) from 2010 to 2021
  • STUDY OF AEROSOL OPTICAL PROPERTIES OVER TWO SITES IN THE
    this study Aerosol optical depth (AOD at 500 nm), angstrom exponent (α or AE), volume size distribution (VSD), single scattering albedo (SSA) and asymmetry parameter (AP) were studied for 2013-2014 and the average AOD was found to be: 0 64±0 41 (Lumbini) and 0 45±0 30 (Kathmandu)





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