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Profile: Gregg Swayze
Gregg Swayze was a participant or observer in the following events:
Scientists who work for the US Geological Survey watch the World Trade Center towers collapse on their television sets. “We sat at home, watched that gray-white cloud roll over Lower Manhattan, and knew damned well that the dust was going to hurt a lot of people,” Gregg Swayze, a USGS geophysicist, will later tell the St. Louis Post-Dispatch. “I knew we had the best technology in the world to determine precisely what was in that dust.” [St. Louis Post-Dispatch, 2/10/2002] Swayze and other USGS scientists quickly get to work making arrangements to use USGS and NASA equipment to determine the composition of the dust clouds (see September 12, 2001).
US Geological Survey (USGS) geophysicists Gregg Swayze and Todd Hoefen fly to New York City to get calibration data from the ground that will supplement the data collected by AVIRIS (see 12:00 p.m. September 16, 2001-2:00 a.m. September 17, 2001). They collect 35 dust samples from a variety of locations around Ground Zero including window ledges, flower pots and car windshields. While “AVIRIS offers a bird’s-eye view…,” Roger Clark, a USGS astrophysicist, later explains to the St. Louis Post-Dispatch, “The ground samples… gave us up-close, specific information on specific points.” On September 19 they send their data to the USGS office in Denver over the Internet. The next day, scientists will begin conducting a variety of tests on the samples (see September 20, 2001). [St. Louis Post-Dispatch, 2/10/2002; St. Louis Post-Dispatch, 2/10/2002]
US Geological Survey (USGS) scientists begin performing tests on the dust samples collected by USGS geophysicists, Gregg Swayze and Todd Hoefen, during the previous three days (see September 17, 2001-September 19, 2001-). Roger Clark (the astrophysicist who heads the AVIRIS program at USGS), Gregg Swayze, Todd Hoefen and Eric Livo (another USGS scientist) analyze samples in the Imaging Spectroscopy Lab and Gregory Meeker (head of the USGS’s microbeam laboratory) views samples with the scanning electron microscope and conducts energy dispersive spectroscopy. Other USGS scientists study the samples using X-ray diffraction, X-ray fluorescence, as well as chemical analysis and chemical leach testing. Within hours, the results from the various tests indicate the presence of asbestos and an “alphabet soup of heavy metals.” Each of the different techniques used to determine the chemical components of the dust “back each other up,” Swayze later explains to the St. Louis Post-Dispatch. “Some techniques can see more than others, and we were throwing in every technique we had in house,” he says. Tests revealed the dust to be extremely alkaline with a pH of 12.1 (out of 14). [St. Louis Post-Dispatch, 2/10/2002] and that some of it was as caustic as liquid drain cleaner. [St. Louis Post-Dispatch, 2/10/2002] “We were startled at the pH level we were finding,” Swayze adds. “We knew that the cement dust was caustic, but we were getting pH readings of 12 and higher. It was obvious that precautions had to be taken to protect the workers and people returning to their homes from the dust.” Sam Vance, an environmental scientist with the EPA, sends the results to officials at the EPA, the New York health department and US Public Health Service. [St. Louis Post-Dispatch, 2/10/2002]
Entity Tags: Roger Clark, US Geological Service, Todd Hoefen, Steve Sutley, Joe Taggart, Eric Livo, Robert Green, Phil Hageman, Geoffrey Plumlee, Gregg Swayze, Gregory Meeker
Timeline Tags: Environmental Impact of 9/11
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