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Technical Paper

Concentration of Tetrachloroethylene in Indoor Air at a Former Dry Cleaner Facility as a Function of Subsurface Contamination: A Case Study

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Pages 753-760 | Published online: 24 Feb 2012

References

  • Westbrook, W. Assessing Potential Indoor Air Impacts for Superfund Sites; EPA-451/R-92-002; U.S. Environmental Protection Agency, Office of Air Quality Planning and Standards: Research Triangle Park, NC, 1992.
  • U.S. Environmental Protection Agency. Draft Guidance for Evaluating the Vapor Intrusion to Indoor Air Pathway from Groundwater and Soils (Subsurface Vapor Intrusion Guidance); Fed. Regist. 2002, 67 (230), 71169–71172.
  • Boyer, J.; Morris, B. The Vapor Intrusion Picture Is as Clear as Mud. EM 2005, February, 14–16.
  • Hodgson, A.T.; Levin, H. Volatile Organic Compounds in Indoor Air: a Review of Concentrations Measured in North America Since 1990; LBNL-51715; Lawrence Berkeley National Laboratory: Berkeley, CA, 2003.
  • Nazaroff, W.W. Predicting the Rate of Radon Entry from Soil into the Basement of a Dwelling Due to Pressure-Driven Air Flow. Radiat. Prot. Dosimetry 1988, 24, 199–202.
  • Nazaroff, W.W.; Sextro, R.G. Technique for Measuring the Indoor 222Rn Source Potential of Soil. Environ. Sci. Technol. 1989, 23, 451–458.
  • Johnson, P.C.; Ettinger, R.A. Heuristic Model for Predicting the Intrusion Rate of Contaminant Vapors into Buildings; Environ. Sci. Technol. 1991, 25, 1445–1452.
  • User’s Guide for Evaluating Subsurface Vapor Intrusion into Buildings. U.S. Environmental Protection Agency, Office of Energy Environmental Response, June 19, 2003; available at http://www.epa.gov/oswer/riskassessment/airmodel/pdf/2004_0222_3phase_users_guide.pdf (accessed 2007).
  • DeVaull, G.; Ettinger, R.; Gustafson, J. Chemical Vapor Intrusion from Soil or Groundwater to Indoor Air: Significance of Unsaturated Zone Biodegradation of Aromatic Hydrocarbons; Soil Sediment Contam. 2002, 11, 625–641.
  • Abreu, L.D.V.; Johnson, P.C. Simulating the Effect of Aerobic Biodegradation on Soil Vapor Intrusion into Buildings: Influence of Degradation Rate, Source Concentration, and Depth. Environ. Sci. Technol. 2006, 40, 2304–2315.
  • McHugh, T.E.; DeBlanc, P.C; Pokuda, R.J. Indoor Air as a Source of VOC Contamination in Shallow Soils below Buildings. Soil Sediment Contam. 2006, 15, 103–122.
  • Using the Triad Approach to Streamline Brownfields Site Assessment and Cleanup-Brownfields Technology Primer Series. U.S. Environmental Protection Agency, Office of Solid Waste and Emergency Response, June 2003; available at http://www.epa.gov/tio/download/misc/triadprimer.pdf (accessed 2007).
  • U.S. Environmental Protection Agency. SW-846. Method 8265, Volatile Organic Compounds in Water, Soil, Soil Gas and Air by Direct Sampling Ion Trap Mass Spectrometry (DSITMS). March 2002; available at http://www.epa.gov/epaoswer/hazwaste/test/new-meth.htm#8265 (accessed 2007).
  • Compendium Method TO-15, Determination of Volatile Organic Compounds (VOCs) in Air Collected in Specially Prepared Canisters and Analyzed by Gas Chromatography/Mass Spectrometry (GC/MS). In Compendium of Methods for the Determination of Toxic Organic Compounds in Ambient Air, 2nd ed.; EPA/625/R-96-010b; U.S. Environmental Protection Agency: Cincinnati, OH, 1999.
  • Rehage, J., Brown, S.; Eklund, B.; Fain, S.; Blake, J.; Harris, W. Vapor Intrusion Assessment of Commercial Buildings at the Former Chanute Air Force Base. In Proceedings of the Fifth International Conference on Remediation of Chlorinated and Recalcitrant Compounds, May 2006, Monterey, CA, 2006; Battelle Press: Columbus, OH, 2006.
  • Fischer, M.L., Bentley, A.J.; Dunkin, K.A.; Hodgson, A.T.; Nazaroff, W.M.; Sextro, R.G.; Daisey, J.M. Factors Affecting Indoor Air Concentrations of Volatile Organic Compounds at a Site of Subsurface Gasoline Contamination; Environ. Sci. Technol. 1996, 30, 2948–2957.
  • Olson, D.A.; Corsi, R.L. Characterizing Exposure to Chemicals from Soil Vapor Intrusion Using a Two-Compartment Model; Atmos. Environ. 2001, 35, 4201–4209.
  • Johnson, P.C.; Kemblowski, M.W.; Johnson, R.L. Assessing the Significance of Subsurface Contaminant Vapor Migration to Enclosed Spaces: Site-Specific Alternatives to Generic Estimates; J. Soil Contam. 1999, 8, 389–421.
  • Johnson, P. Identification of Critical Parameters for the Johnson and Ettinger (1991) Vapor Intrusion Model; API Soil and Groundwater Technical Task Force Bulletin No. 17; American Petroleum Institute: Washington, DC, 2002.
  • Cleaner Technologies Substitutes Assessment: Professional Fabricare Processes; EPA 744-B-98-001; U.S. Environmental Protection Agency, Office of Pollution Prevention and Toxics, Economics, Exposure and Technology Division (OPPTEETD), Washington, DC, 1998; available at http://www.epa.gov/dfe/pubs/garment/ctsa/docs/front.pdf (accessed 2007).
  • Exposure Factors Handbook, Volume III—Activity Factors, Chapter 17— Residential Building Characteristics; EPA/600/P-95/002Fa. U.S. Environmental Protection Agency, Office of Research and Development, 1997; available at http://www.epa.gov/ncea/efh-chapter17.pdf (accessed 2007).
  • Persily, A.; Gorfain, J. Analysis of Ventilation Data from the U.S. Environmental Protection Agency Building Assessment Survey and Evaluation (BASE) Study; National Institute of Standards and Technology Internal Report 7145; National Institute of Standards and Technology: Gaithersburg, MD, 2004.
  • Cummings, J.B., Withers, C.R.; Shirey, D.B. Controlling Ventilation and Space Depressurization in Restaurants in Hot and Humid Climates. In Proceedings of the 18th Annual AIVC Conference, Vol. 1; Air Infiltration and Ventilation Centre (AIVC): Athens, Greece, 1997; pp 153-161; available at http://www.aivc.org (accesssed 2007).

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