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Environmental persistence of 2,3,7,8-tetrachlorodibenzo-p-dioxin in soil around hardstand 7 at eglin air force base, Florida

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Abstract

Background and Goal

A number of global events have generated intense scientific scrutiny and public concern of polychlorinated dibenzo-p-dioxins (dioxin). DIoxins have been associated with a range of adverse health effects. 2,3,7,8-tetrachlorodibenzo-p-dioxin (TCDD) is recognized as among the most dangerous of the dioxin compounds, and was a contaminant found In one of the herbicides used for vegetation control during the Vietnam conflict: Agent Orange. As a result of purging spray systems and leaking drums of Agent Orange concentrate, TCDD contamination occurred in the soils surrounding Hardstand 7 at Eglin Air Force Base, Florida. This research uses a multimedia model to estimate the TCDD concentrations in surface soil around Hardstand 7 for a 70-year time Interval beginning with observed surface soil concentrations 1984.

Methods

Hardstand 7 is a nearly 40-m circular concrete and asphalt aircraft parking area. The hardstand was used as a staging area for spraying equipment used to disseminate herbicide In a test area called C-52A within EAFB. Concentrated herbicide was also stored in 208-L barrels for use with the equipment, and later, for disposal. In 1984, a field investigation characterized the extent of TCDD contamination in surface soils around Hardstand 7 using a radial sampling protocol. The 1984 observed concentrations and locations was used in a multimedia model, CalTOX, as an initial source term concentrations and locations to estimate expected concentrations during the subsequent 70-years.

Results

The results indicate that more than 94% of the TCDD observed in surface soils 1984 will remain after a 70-year period. Access restrictions and remediation activities at the site eliminate bar verification of the CalTOX estimates. Conclusions. TCDD is highly persistent in the soil medium and natural attenuation may not produce a significant decrease In soil concentrations.

Recommendation

Active remediation actions may be required to prevent exposure to TCDD contamination surface soils. Verifying CalTOX concentration estimates an Important step that should be performed, however, the, model provides an easy to use tool to estimate TCDD surface soil contamination at herbicide storage or dispersion staging sites.

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References

  • Agency for Toxic Substances and Disease Registry (ATSDR) (1998): Eglin Air Force Base http://www.floridadefense.org/uwf report/installations/ documents/eglinair force base.pdf

  • Agency for Toxic Substances and Disease Registry (ATSDR) (2003): Petitioned Public Health Assessment, Eglin Air Force Base, Okaloosa County, Florida, EPA Facility ID: FL8570024366. Federal Facilities Assessment Branch, Division of Health Assessment Branch, Agency for Toxic Substances and Disease Registry. Adanta, Georgia, 119 pp

  • Air Force Armament Center (1998): Eglin Air Force Base History http:// www.eglin.af.mil/history.htm

  • Crockett A, Propp A, Kimes T (1987): Herbicide Orange Site Characterization Study Eglin AFB, Final Report. ESL-TR-896-22 January, Tyndall Air Force Base, Florida

    Google Scholar 

  • Crosby D, Wong A (1977): Environmental degradation of 2,3,7,8-tetrachlorodibenzo-p-dioxin (TCDD), Science 195 (4284): 1337–1338

    Article  CAS  Google Scholar 

  • Eskenazi B, Mocarelli P, Warner M et al. (2001): Seveso Serum Dioxin Concentrations and Menstrual Cycle Characteristics. American Journal of Epidemiology 156: 383–392

    Article  Google Scholar 

  • Exner J (1986): Solving Hazardous Waste Problems: Learning from Dioxins, 2nd Ed. American Chemical Society, Washington D.C., 398 pp

    Google Scholar 

  • Freeman R, Schroy J (1985): Environmental mobility of dioxins, pp 422-439. In: Banner RC and Hasen D (eds), Aquatic Toxicology and Hazard Assessment: Eight Symposium: A Symposium on Biological Effects and Environmental Fate. PCN 04-891000-16. Fort Mitchell, KY, 15-17 April 1984. ASTM, Philadelphia, 480 pp

    Google Scholar 

  • Harrison D, Miller C, Crews C (1979): Residual Levels of 2,3,7,8-tetrachlorodibenzo-p-Dioxin (TCDD) Near Herbicide Storage and Loading Areas at Eglin AFB, Horida, Final Report. AFATL-TR-79-20 February. Air Force Armament Laboratory, Eglin Air Force Base, Florida http://www.nal.usda. gov/speccoll/findaids/agentorange/text/00 103.pdf

    Google Scholar 

  • IRAC - International Agency for Research on Cancer (1997): Polychorinated dibenzo-p-dioxins and polychlorinated dibenzofurans (Vol.69). IARC Monographs on the Evaluation of Carcinogenic Risks to Humans. IARC, Lyon, France, 666 pp

    Google Scholar 

  • Isensee A, Jones G (1975): Distribution of 2,3,7,8-tetrachlorodibenzo-p-dioxin in aquatic model ecosystems. Environmental Science and Technology 6:1017–1019

    Google Scholar 

  • Kapila S, Yanders A, Orazio C (1989): Field and laboratory studies on the movement and fate of 2,3,7,8-tetrachlorodibenzo-p-dioxin in soil. Chemosphere 18:297–1304

    Article  Google Scholar 

  • National Institute for Environmental Health Sciences (NIEHS) (2000): Dioxin Research at the NIEHShttp://www.niehs.nih.gov/oc/factsheets/dioxin.htm

  • Northcott G, Jones C (2001): Partitioning Extractability and Formation of Nonextractable PAH Residues in Soil 1: Compound Differences in Aging and Sequestration. Environmental Science and Technology 35:1103–1110

    Article  CAS  Google Scholar 

  • Overing JD, Weeks HH, Wilson JP Jr, Sullivan J, Ford RD (1995): Soil Survey of Okaloosa County, Florida. USDA/NRCS in cooperation with the University of Florida, Institute of Food and Agricultural Sciences, Agricultural Experiment Stations and SoL[ and Water Science Department, and the Florida Department of Agriculture and Consumer Services

  • Roger PA, Simpson I, Oficial R, Ardales S, Jimenez R (1994): Effects of pesticides on soil and water microflora and mesofauna in wetland ricefields: A summary of current knowledge and extrapolation to temperate environments. Australian Journal of Experimental Agriculture 34:1057–1068

    Article  Google Scholar 

  • Schecter A, Gasiewicz TA (eds) (2003): Dioxins and Health 2nd Ed. Wiley, New York, 952 pp

    Google Scholar 

  • SCOOP (2000): Assessment of dietary intake of dioxins and related PCBs by the population of EU-Member States. Report of Experts Participating in Task 3.2.5, Reports on Task for Scientific Cooperation. Health & Consumer Protection Directorate-General, European Commission, Brussels, Belgium, 115 pp

    Google Scholar 

  • Sweeney MH, Calvert GM, Egeland GA et al. (1997): Review and update of the results of the NIOSH medical study of workers exposed to chemicals contaminated with 2,3,7,8-tetra-chlorodibenzo-p-dioxin. Teratog Carcinog 11 Mutagen 17 (4-5): 241–247

    Article  CAS  Google Scholar 

  • U.S. Environmental Protection Agency (EPA) (2000): Exposure and Human Health Reassessment of 2,3,7,8-tetrachlorodibenzo-p-dioxin (TCDD) and Related Compounds. SAB Review Draft, EPA/600/P-00/001Bg. Office of Research and Development, US Environmental Protection Agency, Washington, D.C., September

    Google Scholar 

  • University of California, Davis (UCDavis) (1993): CalTOX, A Multimedia Total-Exposure Model for Hazardous-Waste Sites. Prepared for the Office of Scientific Affairs, Department of Toxic Substances Control, California Environmental Protection Agency, Sacramento, California

  • University of California, Davis (UCDavis) (1994): CalTOX, A Multimedia Total-Exposure Model for Hazardous-Waste Sites. In cooperation with Lawrence Livermore National Laboratory. Prepared for the Office of Scienrific Affairs, Department of Toxic Substances Control, California Environmental Protection Agency, Sacramento, California

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Correspondence to James T. Gunter.

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Vasquez, A.P., Regens, J.L. & Gunter, J.T. Environmental persistence of 2,3,7,8-tetrachlorodibenzo-p-dioxin in soil around hardstand 7 at eglin air force base, Florida. J Soils & Sediments 4, 151–156 (2004). https://doi.org/10.1007/BF02991132

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