HR: 0830h
AN: B21F-0785 [PDF]
TI: Transoceanic transport of metals and deposition in the Southeastern United States
AU: * Holmes, C W
EM: cholmes@usgs.gov
AF: U.S.Geological Survey, 600 Fourth Street South, St.Petersburg, FL 33701 United States
AB:
Saharan dust is persistently being transported and deposited in ecosystems of the western Atlantic Ocean. Satellite photos
reveal that this dust is transported in tropospheric low-pressure waves that cross the central Atlantic Ocean. This dust is
an aggregate of clay and quartz particles cemented with iron oxides. Analysis of dust samples collected from Mali (central
Africa), the Azores, the Caribbean and the Eastern United States show that metal concentrations are significantly higher than
average crustal rocks. Over the past decade, there has been a significant effort to understand the cycling of mercury in
south Florida, but other metals has received very little attention. Trace metal measurements on the ombrogeneous sediment
formed during the last decade in south Florida indicates that metals can be correlated with aluminum, which is considered a
proxy for dust. The largest available aerosol data set is provided by the IMPROVE (Interagency Monitoring of Protected Visual
Environments) program. Focusing on arsenic as an example, the average concentration in aerosols collected during this
program range from 17 mg/kg in the Virgin Islands to 79 mg/kg at Chassahowitzka, Florida. At Chassahowitzka, most of the
arsenic appears to be associated with organic carbon. If it is assumed that the concentrations in Mali dust and in the
aerosols in the Virgin Islands are indicative of soil dust, then the higher values at Chassahowitzka are most likely derived
from local or regional sources. A simple calculation indicates that African dust supplies about 25 % of the arsenic
deposited from aerosols in the southeastern United States. Comparison of the average yearly arsenic concentrations measured
in the Virgin Islands and Everglades shows a negative relationship with the North Atlantic Oscillation Index (NAO). This
relationship demonstrates the influence of climate on the transport and deposition of aerosols with associated metals to the
southeastern United States.
DE: 0315 Biosphere/atmosphere interactions
DE: 0330 Geochemical cycles
SC: Biogeosciences [B]
MN: 2003 Fall Meeting