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Multiyear MODIS observation of global aerosols from EOS Terra/Aqua satellites: validation, variability, and application

D. A. Chu, Yoram J. Kaufman, L. A. Remer, D. Tanré, Myeong-Jae Jeong

Year
2004
Citations
2

Abstract

The multiyear MODIS (Moderate Resolution Imaging Spectroradiometer) measurements are full of exciting aerosol events, such as the well-known Asian/Saharan dust outbreaks, biomass burning in South Africa, Southeast Asia, Central America, and Southern Africa, and air pollution all over the world. The MODIS aerosol optical depths (/spl tau//sub a/) are validated against AERONET (aerosol robotic network) and other radiometer/sunphotometer (e.g., airborne sunphotometer, shadowband radiometer, microtops, etc.) measurements within the expected retrieval errors of /spl Delta//spl tau//sub a/ = /spl plusmn/0.05/spl plusmn/0.2 /spl tau//sub a/ (e.g., 25% fir /spl tau//sub a/ = 1) over land and /spl Delta//spl tau//sub a/ = /spl plusmn/0.03/spl plusmn/0.05/spl tau//sub a/ (e.g., 8% for /spl tau//sub a/ = 1) over ocean. The comparisons of monthly MODIS V4 (version 4) and GACP (global aerosol climatology project) AVHRRR (advanced very high resolution radiometer) aerosol optical depths with AVHRR show that the difference of aerosol loading are generally larger in the northern hemisphere than in the southern hemisphere form March to August 2000 and February 2001 in both hemispheres. Similar conclusions can also be drawn from regional analysis, except in pristine oceans in the northern hemisphere where MODIS and AVHRR aerosol retrievals are in agreement throughout the year. The preliminary results of correlating MODIS aerosol optical depths with PM/sub 2.5/ (particular matter with diameter < 2.5 /spl mu/m) mass concentrations measured at surface are promising with the correlation coefficients found as high as 0.8-0.9 in many metropolitan areas. MODIS ability to provide the pseudosynoptic movement of aerosol-laden air mass can greatly improve air quality assessment and forecast.

Keywords

AERONETAerosolModerate-resolution imaging spectroradiometerRadiometerEnvironmental scienceSouthern HemisphereNorthern HemisphereAdvanced very-high-resolution radiometerAtmospheric sciencesClimatology

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