HR: 1330h
AN: U32A-0035 [PDF]
TI: The Dynamics and Characteristics of Aeolian Dust in Dryland Central Asia: Possible Impacts on
Respiratory Health in the Aral Sea Basin
AU: * Wiggs, G F
EM: g.wiggs@sheffield.ac.uk
AF: Sheffield Centre for International Drylands Research, Department of Geography, University of Sheffield,
Western Bank, Sheffield, S10 2TN
United Kingdom
AU: O'Hara, S
EM: sarah.o'hara@nottingham.ac.uk
AF: School of Geography, University of Nottingham, Nottingham, NG7 2RD
United Kingdom
AU: Wegerdt, J
EM: lgxjfw@nottingham.ac.uk
AF: School of Geography, University of Nottingham, Nottingham, NG7 2RD
United Kingdom
AU: van der Meer, J
EM: joost.van.der.meer@amsterdam.msf.org
AF: Medecins Sans Frontieres, MSF-Holland, Amsterdam, 1001EA
Netherlands
AU: Small, I
EM: ian.small@utoronto.ca
AF: Health & Environment Consortium, Faculty of Medicine
University of Toronto, Toronto, M5S 1A8
Canada
AU: Hubbard, R
EM: Richard.Hubbard@nottingham.ac.uk
AF: Division of Respiratory Health, University of Nottingham, Nottingham, NG7 2RD
United Kingdom
AB:
Over the last 40 years over 36,000 km2 of the former Aral Sea bed have been exposed creating a potentially significant
aeolian dust source. It is widely believed, but little researched, that increased dust storm activity in the region has had a
major impact on human health. In this paper we report the findings of a study into the link between dust exposure and
respiratory health amongst children in the Autonomous Republic of Karakalpakstan, located on the southern shore of the Aral
Sea.
Data were collected over a 12 month period at 16 sites located within a broad transect running north to south through
Karakalpakstan. At each site monthly measurements of dust deposition were undertaken linked with daily meteorological data at
6 stations. At 3 sites weekly measurements of PM10 were also carried out. Approximately 100 children (aged 7-10 years) were
randomly selected within 5 km of each dust trap site and data were collected on their respiratory health and environmental
exposures. Lung function data were also collected using a handheld spirometer. A linear regression model was used to predict
lung function for the children incorporating variables for Forced Expiratory Volume in one second (FEV1), age, gender, height
and weight and we estimated the impact of dust deposition rates on the odds of having abnormal lung function using logistic
regression.
The findings indicate that dust deposition rates across the region are high with sites located near the former shore of the
sea being the worst affected. For these northerly regions the former Aral Sea bed is the most likely source of dust. The
situation for the rest of the country seems to be far more complex. In these regions it appears that local sources
(agricultural fields, abandoned irrigation grounds, overgrazed dunes, and unpaved roads) and more distant sources to the
south and south-west represent significant sediment providers, particularly in the early summer when agricultural fields are
ploughed. We found some evidence of a dose-related impact of dust levels on lung function. These associations were
statistically significant for all measures of dust exposure but were most marked for levels of winter dust exposure and level
of PM2.5 exposure.
The results from this study suggest that aeolian dust dynamics in the region are spatially and temporally highly variable
and, counter to local and regional perceptions, the former bed of the Aral Sea does not appear to be the only significant
source. Nevertheless, there is also evidence of a dose-related impact of airborne dust on the risk of having abnormally low
lung function in children living in the Aral Sea Area.
DE: 0305 Aerosols and particles (0345, 4801)
SC: U
MN: 2003 Fall Meeting