HR: 08:45h
AN: A51E-03 [Abstracts]
TI: Evaluating the potential influence of inter-continental transport of sulfate aerosols on air quality
AU: * Mauzerall, D L
EM: mauzeral@princeton.edu
AF: Princeton University, Woodrow Wilson School of Public and International Affairs, Princeton,
NJ 08544, United States
AU: Liu, J
EM: jliu@princeton.edu
AF: Princeton University, Woodrow Wilson School of Public and International Affairs, Princeton,
NJ 08544, United States
AB:
In this study, we compare the potential influence of inter-continental transport of sulfate aerosols on the air quality
of continental regions. We use a global chemical transport model, Model of Ozone and Related Tracers, version 2
(MOZART-2), to quantify the source-receptor relationships of inter-continental transport of sulfate aerosols
among ten regions in 2000.
In order to compare the importance of foreign emissions relative to domestic emissions and estimate the effect
of future changes in emissions on human exposure, we define an "influence potential" (IP). The IP quantifies the
human exposure that occurs in a receptor region as a result of a unit of SO2 emissions from a source region. We
find that due to the non-linear nature of sulfate production, regions with low SO2 emissions usually have large
domestic IP, and vice versa. An exception is East Asia (EA), which has both high SO2 emissions and relatively
large domestic IP, mostly caused by the spatial coincidence of emissions and population.
We find that intercontinental IPs are usually less than domestic IPs by 1-3 orders of magnitude. SO2 emissions
from the Middle East (ME) and Europe (EU) have the largest potential to influence populations in surrounding
regions. By comparing the IP ratios (IPR) between foreign and domestic SO2 emissions, we find that the IPR
values range from 0.00001 to 0.16 and change with season. Therefore, if reducing human exposure to sulfate
aerosols is the objective, all regions should first focus on reducing domestic SO2 emissions. In addition, we find
that relatively high IPR values exist among the EU, ME, the former Soviet Union (FSU) and African (AF) regions.
Therefore, based on the IP and IPR values, we conclude that a regional agreement among EA countries, and an
inter-regional agreement among EU, ME, FSU and north AF regions to control sulfur emissions would benefit
public health in these regions.
DE: 0305 Aerosols and particles (0345, 4801, 4906)
DE: 0345 Pollution: urban and regional (0305, 0478, 4251)
DE: 0365 Troposphere: composition and chemistry
DE: 0368 Troposphere: constituent transport and chemistry
SC: Atmospheric Sciences [A]
MN: 2007 Fall Meeting