Modeling and monitoring of air quality in greater cairo region, Egypt usinglandsat-8 images, hysplit and gisbased analysis

Moawad, Moawad Badawy; Youssief, Abdel Aziz; Madkour, Khaled Mohamed;

Abstract


The main objectives of this study are to model, monitor and observe air quality in Greater Cairo Region (GCR) based on Landsat-8 OLI and TIRS images, HYSPLIT dispersion model, and GIS techniques to overcome the great lack of data observation and to improve data coverage and comparability. Major land covers were mapped from Landsat-8 images. Air quality map and AOT (Aerosol Optical Thickness) were derived by calculating aerosol path radiance based on exoatmospheric solar constant and atmospheric transmittance. HYSPLIT dispersion model was run to simulate the extraordinary pollution episodes (black cloud) and to determine air mass trajectories. Eventually, GIS spatial analysis was carried out based on in situ data to adjust satellite derived PM10sat. The study deduced that concentrations of PM10 are high in GCR and exceed six times of the WHO air quality standards. It is extremely intensive in spring due to the local dusty wind "called Khamasin" and in autumn due to burning of agriculture residues. Mean annual concentrations of PM10 in GCR from 16 April 2014 to 29 January 2015 reveals that 70% of the region is considered as unhealthy for sensitive groups (200-250 μg/m3 year).


Other data

Title Modeling and monitoring of air quality in greater cairo region, Egypt usinglandsat-8 images, hysplit and gisbased analysis
Authors Moawad, Moawad Badawy; Youssief, Abdel Aziz; Madkour, Khaled Mohamed 
Keywords Air pollution;Air quality index;Greater Cairo Region(GCR);HYSPLIT;Climate change
Issue Date 2-Jun-2017
Journal Climate Change Research at Universities: Addressing the Mitigation and Adaptation Challenges 
Start page 37
End page 54
ISBN 9783319582146
DOI 10.1007/978-3-319-58214-6_3
Scopus ID 2-s2.0-85068990681

Recommend this item

Similar Items from Core Recommender Database

Google ScholarTM

Check

Citations 4 in scopus


Items in Ain Shams Scholar are protected by copyright, with all rights reserved, unless otherwise indicated.