NYC 9/11 Public Portal Document
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Trade Center Air Held Unprecedented Amounts of Very Fine Particles,
Silicon, Sulfates, Metals, Say UC Davis Scientists
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February 11, 2002
In the most thorough analysis yet of the dust and smoke blown through
lower Manhattan after the collapse of the World Trade Center,
researchers at the University of California, Davis, today described
unprecedented clouds of very fine particles that should be considered
in evaluating rescue workers' and residents’ health problems.
Based on their findings, the UC Davis researchers also recommended
specific cleaning methods for contaminated apartments, offices,
schools and other indoor spaces.
"No one has ever reported a situation like the one we see in the World
Trade Center samples," said UC Davis researcher Thomas Cahill, Ph.D.,
an international authority on the constituents and transport of
airborne particles. "The air from Ground Zero was laden with extremely
high amounts of very small particles, probably associated with high
temperatures in the underground debris pile. Normally, in New York
City and in most of the world, situations like this just don’t exist."
Cahill, a UC Davis professor emeritus of physics and atmospheric
sciences and a research professor in applied science, heads the UC
Davis DELTA Group (for Detection and Evaluation of Long-range
Transport of Aerosols), a collaborative association of aerosol
scientists at several universities and national laboratories. The
DELTA Group has made detailed studies of aerosols from the 1991 Gulf
War oil fires, volcanic eruptions, global dust storms, and most
recently Asia.
The Manhattan air samples were collected at the request of a U.S.
Department of Energy scientist from Oct. 2 through mid-December, by a
DELTA Group air monitor placed on a rooftop at 201 Varick St., one
mile north-northeast of the trade center complex.
The samples were collected continuously in eight separate size modes
from coarse (12 micrometers diameter) to ultra-fine (0.09 micrometers
diameter). Regional meteorology showed that the site at Varick Street
could have received material from the World Trade Center site about
half the time.
The samples were periodically shipped back to Davis, where the DELTA
Group analyzed the samples for size, shape and composition. They used
a suite of seven techniques including synchrotron-induced X-ray
fluorescence (at DOE’s Advanced Light Source at Lawrence Berkeley
Laboratory), scanning transmission ion microscopy and proton elastic
scattering analysis (at DOE's Lawrence Livermore National Laboratory),
and soft beta mass measurements and scanning electron microscopy (at
UC Davis).
"The UC Davis DELTA Group’s ability to measure and analyze particle
size, composition and time continuously, day and night, is unequaled,”
Cahill said.
All analyses were done on a volunteer basis and will be available as
public documents. We report today on the data from Oct. 2 through Oct.
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