Spatio-temporal distribution of INSAT-3D AOD derived particulate matter concentration over India
Author:
Funder
Indian Space Research Organisation
Publisher
Elsevier BV
Subject
Atmospheric Science,Pollution,Waste Management and Disposal
Reference95 articles.
1. A comparison study between AOD data from MODIS deep blue collections 51 and 06 and from AERONET over Saudi Arabia;Almazroui;Atmos. Res.,2019
2. A geographically and temporally weighted regression model for ground-level PM2.5 estimation from satellite-derived 500 m resolution AOD;Bai;Rem. Sens.,2016
3. Association of PM 2.5 pollution with the pattern of human activity: a case study of a developed city in eastern China;Bao;J. Air Waste Manag. Assoc.,2016
4. Estimating urban PM10 and PM2.5 concentrations, based on synergistic MERIS/AATSR aerosol observations, land cover and morphology data;Beloconi;Rem. Sens. Environ.,2016
5. Crop residue burning in India: policy challenges and potential solutions;Bhuvaneshwari;IJERPH,2019
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