HR: 1340h
AN: A43C-1423 [Abstracts]
TI: Infrared Absorption by Atmospheric Aerosols in Mexico City during MILAGRO.
AU: * Kelley, K L
EM: kxbrock@ualr.edu
AF: University of Arkansas at Little Rock, 2801 S. University Avenue, Little Rock, AR 72204,
United States
AU: Mangu, A
EM: axmangu@ualr.edu
AF: University of Arkansas at Little Rock, 2801 S. University Avenue, Little Rock, AR 72204,
United States
AU: Gaffney, J S
EM: jsgaffney@ualr.edu
AF: University of Arkansas at Little Rock, 2801 S. University Avenue, Little Rock, AR 72204,
United States
AU: Marley, N A
EM: namarley@ualr.edu
AF: University of Arkansas at Little Rock, 2801 S. University Avenue, Little Rock, AR 72204,
United States
AB:
Past research in our group using cylindrical internal reflectance spectroscopy has indicated that aqueous
aerosols could contribute to the radiative warming as greenhouse species (1,2). Although aerosol radiative
effects have been known for sometime and are considered one of the major uncertainties in climate change
modeling, most of the studies have focused on the forcing due to scattering and absorption of radiation in the uv-
visible region (3). Infrared spectral information also allows the confirmation of key functional groups that are
responsible for enhanced absorption observations from secondary organics in the uv-visible region. This work
extends our efforts to evaluate the infrared absorption by aerosols, particularly organics, that are now found to be
a major fraction of urban and regional aerosols in the 0.1 to 1.0 micron size range and to help identify key types of
organics that can contribute to aerosol absorption.
During the MILAGRO campaign, quartz filter samples were taken at 12-hour intervals from 5 am to 5 pm (day) and
from 5 pm to 5 am (night) during the month of March 2006. These samples were taken at the two super-sites, T-0
(Instituto Mexicano de Petroleo in Mexico City) and T-1 (Universidad Technologica de Tecamac, State of Mexico).
The samples have been characterized for total carbon content (stable isotope mass spectroscopy) and natural
radionuclide tracers, as well as for their UV-visible spectroscopic properties by using integrating sphere diffuse
reflectance spectroscopy (Beckman DU with a Labsphere accessory). These same samples have been
characterized in the mid and near infrared spectral ranges using diffuse reflection spectroscopy (Nicolet 6700
FTIR with a Smart Collector accessory). Aerosol samples were removed from the surfaces of the aerosol filters
by using Si-Carb sampler. The samples clearly indicate the presence of carbonyl organic constituents and the
spectra are quite similar to those observed for humic and fulvic acids found as colloidal materials in surface and
groundwaters (4). Examples of the IR spectra obtained and variance as a function of time at the two sites will be
presented. The spectra are taken in Kubelka – Munk format, which also allows the infrared absorption strengths
to be evaluated as function of wavelength. The wavelength dependence of the aerosol complex refractive index
(m = n + ik) in the infrared spectral region is determined by application of the Kramers Kronig function. The
importance of the aerosol absorption in the infrared spectral region to radiative forcing will be discussed.
1. N.A. Marley, J.S. Gaffney, and M.M. Cunningham,Environ. Sci. Technol. 27 2864-2869 (1993).
2. N.A. Marley, J.S. Gaffney, and M.M. Cunningham, Spectroscopy 7 44-53 (1992).
3. J.S. Gaffney and N.A. Marley, Atmospheric Environment, New Directions contribution, 32, 2873-2874 (1998).
4. N.A. Marley, J.S. Gaffney, and K.A. Orlandini, Chapter 7 in Humic/Fulvic Acids and Organic Colloidal Materials in
the Environment, ACS Symposium Series 651, American Chemical Society, Washington, D.C., pp. 96-107, 1996.
This work was performed as part of the Department of Energy's Megacity Aerosol Experiment - Mexico City (MAX-
Mex) under the support of the Atmospheric Science Program. This research was supported by the Office of
Science (BER), U.S. Department of Energy, Grant No. DE-FG02-07ER64328.
DE: 0305 Aerosols and particles (0345, 4801, 4906)
DE: 0345 Pollution: urban and regional (0305, 0478, 4251)
DE: 0360 Radiation: transmission and scattering
DE: 0394 Instruments and techniques
DE: 3311 Clouds and aerosols
SC: Atmospheric Sciences [A]
MN: 2007 Fall Meeting