HR: 1400h
AN: A43A-14 [Abstracts]
TI: Analyses of Mexico City Surfaces Properties Using MODIS and Sun-photometer Data During MCMA-2006/MILAGRO Campaign
AU: * Castanho, A D
EM: castanho@mit.edu
AF: Massachusetts Institute of Technology, 77 Massachusetts Avenue,54-1411, Cambridge,
MA 02139, United States
AU: Prinn, R
EM: rprinn@MIT.EDU
AF: Massachusetts Institute of Technology, 77 Massachusetts Avenue,54-1411, Cambridge,
MA 02139, United States
AU: Molina, L T
EM: ltmolina@mit.edu
AF: Massachusetts Institute of Technology, 77 Massachusetts Avenue,54-1411, Cambridge,
MA 02139, United States
AU: Molina, L T
EM: ltmolina@mit.edu
AF: Molina Center for Energy and Environment, 3262 Holiday Ct. Suite201
, La Jolla, CA 92037, United States
AU: Martins, V
EM: martins@climate.gsfc.nasa.gov
AF: JCET - NASA/GSFC-UMBC, Office: NASA/GSFC Code 613.2
Bldg 33, Room C312, Greenbelt, MD 20771, United States
AB:
Monitoring the air quality in megacities around the world and understanding the impact of the emitted pollutants
on the local and global climate is a challenge for the scientific community. The air quality monitoring system in
megacities has been based almost exclusively on ground-based station networks. Satellites can be used as a
complementary tool to the ground-based stations by providing in a systematic way aerosol property with a higher
spatial resolution than the continuous ground-based stations. With the growing concern over aerosol particle
pollution in megacities, interest in the higher resolution ô data from satellite retrievals is increasing. However, to
achieve a higher spatial resolution from the MODIS instrument, it is essential to have more accurate information
on the surface reflectance and aerosol optical properties.
The heterogeneity of the surface cover in an urban environment only increases the uncertainties in the estimation
of the surface reflectance and therefore aerosol optical depth. In this work we perform an analysis of the surface
reflectance specifically for the Mexico City urban area. We also present the improvement that the new estimation
can provide for the ô retrievals over the region. We performed this analyses based on an unprecedented
measurement of ô from a network of sun photometers deployed in Mexico City during the MILAGRO Campaign
experiment in 2006.
The Milagro (Megacity Initiative: Local and Global Research Observations) campaign of air pollutant
measurements was carried out during the month of March 2006 in Mexico City. It has four main components, this
work is part of the MCMA-2006 (Mexico City Metropolitan Area - 2006) led by the Molina Center on Energy and the
Environment.
DE: 0305 Aerosols and particles (0345, 4801, 4906)
SC: Atmospheric Sciences [A]
MN: 2007 Joint Assembly