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(newest | oldest) View (newer 50 | older 50) (20 | 50 | 100 | 250 | 500)- 13:34, 13 May 2019 Admin (talk | contribs) uploaded File:WH Picture21.PNG
- 13:34, 13 May 2019 Admin (talk | contribs) uploaded File:WH Picture20.PNG
- 13:32, 13 May 2019 Admin (talk | contribs) uploaded File:WH Picture19.PNG
- 13:32, 13 May 2019 Admin (talk | contribs) uploaded File:WH Picture18.PNG
- 13:32, 13 May 2019 Admin (talk | contribs) uploaded File:WH Picture17.PNG
- 13:23, 13 May 2019 Admin (talk | contribs) uploaded File:WH Picture16.PNG
- 15:21, 10 May 2019 Admin (talk | contribs) uploaded File:MassFluxToolkit WithVoice.mp4 (Mass Flux Toolkit)
- 20:52, 7 May 2019 Debra Tabron (talk | contribs) uploaded File:Beckley1w2 Fig4.png (Figure 4. Potential Entry Points into Buildings. VOCs can move from sewers and utility tunnels into buildings through a variety of features, for example: A. Dry p-traps; B. Faulty seal on plumbing fixture (e.g., Pennell et al. 2013); and C. French dr...)
- 20:51, 7 May 2019 Debra Tabron (talk | contribs) uploaded File:Beckley1w2 Fig3.png (Figure 3 . Vapor Sample Collection from Sewer)
- 20:47, 7 May 2019 Debra Tabron (talk | contribs) uploaded File:Beckley1w2 Fig2 legend.png
- 20:46, 7 May 2019 Debra Tabron (talk | contribs) uploaded File:Beckley1w2 Fig2d.png (Figure 2d. Sewer in Vadose Zone above Plume)
- 20:45, 7 May 2019 Debra Tabron (talk | contribs) uploaded File:Beckley1w2 Fig2c.png (Figure 2c. Sewer Intersects NAPL/Vadose Zone Source)
- 20:44, 7 May 2019 Debra Tabron (talk | contribs) uploaded File:Beckley1w2 Fig2b.png (Figure 2b. Discharge of Groundwater to Sewer Line)
- 20:43, 7 May 2019 Debra Tabron (talk | contribs) uploaded File:Beckley1w2 Fig2a.png (Figure 2a. Sewer Intersects Contaminated Groundwater)
- 20:41, 7 May 2019 Debra Tabron (talk | contribs) uploaded File:Beckley1w2 Fig1b.png (Figure 1b. Sewer/Utility Tunnel Vapor Intrusion. McHugh et al., 2017b)
- 20:40, 7 May 2019 Debra Tabron (talk | contribs) uploaded File:Beckley1w2 Fig1a.png (Figure 1a. Conventional (Standard) Vapor Intrusion. Figure 1b. Sewer/Utility Tunnel Vapor Intrusion. (from McHugh et al., 2017b))
- 21:28, 6 May 2019 Debra Tabron (talk | contribs) uploaded File:2018-Viteri Rapid Real-time TCE Measurements.pdf (Viteri, C. R.; Richman, B.; Vitouchkine, A.; Armen, M. A.; Miller, A., 2018. Rapid, Real-time TCE Measurements of Sewer Headspace: Characterizing Spatial and Temporal Variability. AEHS 28th Annual International Conference on Soil, Water, Energy, and A...)
- 21:27, 6 May 2019 Debra Tabron (talk | contribs) uploaded File:2018-Holton-A Review of Pref Path Case Studies.pdf (Holton, C.; Simms, J., 2018. A Review of Preferential Pathway Case Studies: Lessons Learned for Vapor Intrusion Site Assessment. Midwestern States Environmental Consultants Association Spring Seminar, Indianapolis, Indiana)
- 21:26, 6 May 2019 Debra Tabron (talk | contribs) uploaded File:2018b-McHugh-ER-201505 Conceptual Model.pdf (McHugh, T.; Beckley, L, 2018(b). Conceptual Model: Sewers and Utility Tunnels as Preferential Pathways for Volatile Organic Compound Migration into Buildings: Risk Factors and Investigation Protocol, ESTCP Project ER-201505.)
- 21:24, 6 May 2019 Debra Tabron (talk | contribs) uploaded File:2018a-McHugh-ER-201505 Investigation Protocol.pdf (McHugh, T.; Beckley, L, 2018(a). Investigation Protocol: Sewers and Utility Tunnels as Preferential Pathways for Volatile Organic Compound Migration into Buildings: Risk Factors and Investigation Protocol, ESTCP Project ER-201505.)
- 21:23, 6 May 2019 Debra Tabron (talk | contribs) uploaded File:2017-ERM-Vapor Intrusion Eval Activities Summary.pdf (ERM, 2017. Vapor Intrusion Evaluation Activities Summary Report - February to December 2016, Indianapolis, Indiana.)
- 21:21, 6 May 2019 Debra Tabron (talk | contribs) uploaded File:2017b-McHugh-Recent advances in vapor intrusion.pdf (McHugh, T.; Loll, P.; Eklund, B., 2017(b). Recent advances in vapor intrusion site investigations. Journal of Environmental Management 204: 783-792.)
- 21:18, 6 May 2019 Debra Tabron (talk | contribs) uploaded File:2014-Chemical Hazards and Poisons Rpt.pdf (Macklin, Y.; Welfare, W.; Kowalczyk, G.; Mitchem, L.; Modi, A.; Craswell, A.; Brown, M.; Lighton, L., 2014. Sewers, culverts and other underground pipes–an under recognised pathway for chemical exposures in acute incidents: case series. Chemical Haza...)
- 21:16, 6 May 2019 Debra Tabron (talk | contribs) uploaded File:2010-Riis-Migratioin pathways of Chlorinated Solvents.pdf (Riis, C.E.; Christensen, A.G.; Hansen, M.H.; Husum, H.; Terkelsen, M., 2010. Vapor intrusion through sewer systems: Migration pathways of chlorinated solvents from groundwater to indoor air. In: Seventh Battelle International Conference on Remediation...)
- 21:15, 6 May 2019 Debra Tabron (talk | contribs) uploaded File:1996-Turco and Huss Rehabilitation of TCE.pdf (Turco, M.A. and Huss, E.E., 1996. Rehabilitation of TCE-contaminated Underground Storm Water System using Trenchless Technology. Brown and Root Environmental, Wayne PA.)
- 18:07, 2 May 2019 Debra Tabron (talk | contribs) uploaded File:2017-Hinchee-1.4 Dioxane remediation by extreme soil XSVE ER-201326 Final Report.pdf (Hinchee, R.E., P.C. Johnson, P.R. Dahlen, and D.R. Durris, 2017. 1,4-Dioxane remediation by extreme soil vapor extraction (XSVE). Final Report ESTCP Project 201326.)
- 16:39, 2 May 2019 Debra Tabron (talk | contribs) uploaded File:2018-Evans-ER-201324 Cost & Performance Report.pdf (Evans, P., D.J. Hooper, M. Lamar, D. Nguyen, P. Dugan, M. Crimi, and N. Ruiz, 2018. Sustained in situ chemical oxidation (ISCO) of 1,4-dioxane and chlorinated VOCs using slow-release chemical oxidant cylinder. ESTCP Cost and Performance Report, ER-201324)
- 20:58, 1 May 2019 Debra Tabron (talk | contribs) uploaded File:2012-Shangraw-Full-scale Treatment of 1,4-dioxane.pdf (Shangraw, T. and W. Plaehn, 2012. Full-scale treatment of 1,4-dioxane using a bioreactor. Federal Remediation Technologies Roundtable Meetin)
- 20:17, 1 May 2019 Debra Tabron (talk | contribs) uploaded File:2007-Bowman-System and method fo remediating contaminated soil and groundwater.pdf (Bowman, R.H., Lahey, T. and Herlihy, P. System and method for remediating contaminated soil and groundwater in situ, Applied Process Tech Inc, 2007. U.S. Patent 7,264,419.)
- 14:57, 1 May 2019 Debra Tabron (talk | contribs) uploaded File:1997-Fleming-Laboratory assessment of advanced oxidation process.pdf (Fleming, E.C., M.E. Zappi, E. Toro, R. Hernandez, and K. Myters, 1997. Laboratory assessment of advanced oxidation processes for treatment of explosives and chlorinated solvents in groundwater from the former Nebraska ordnance plant. Technical Report S...)
- 19:49, 30 April 2019 Debra Tabron (talk | contribs) uploaded File:2000-Keel-Downtown Bellingham Air Toxics Screening Project.pdf (Keel, L. and A. Franzmann, 2000. Downtown Bellingham air toxics screening project, 1995-1999 staff report. Northwest Air Pollution Authority (NWAPA))
- 21:08, 26 April 2019 Debra Tabron (talk | contribs) uploaded File:1998-Ellis-Destroying 1,4-dioxane in byproduct streams formed during polyester.pdf (Ellis, R.A. and J.S. Thomas, 1998. Destroying 1,4-dioxane in byproduct streams formed during polyester synthesis. United States Patent Office: Wellman Inc.)
- 21:02, 26 April 2019 Debra Tabron (talk | contribs) uploaded File:1997-Sachdeva-Apparatus for decontaminating a liquid surfractant.pdf (achdeva, Y. and R. Gabriel, 1997. Apparatus for decontaminating a liquid surfractant of dioxane, United States: Pharm-Eco Laboratories Inc.)
- 20:56, 26 April 2019 Debra Tabron (talk | contribs) uploaded File:2012-Ortega-Sulfonation sulfation.pdf (Ortega, J.A.T., 2012. Sulfonation/sulfation processing technology for anionic surfactant manufacture. Advances in Chemical Engineering.)
- 20:48, 26 April 2019 Debra Tabron (talk | contribs) uploaded File:2001-Black-Occurrence of 1,4-dioxane in cosmetic raw materials....pdf (Black, R.E., F.J. Hurley, and D.C. Havery, 2001. Occurrence of 1,4-dioxane in cosmetic raw materials and finished cosmetic products. Journal of the Association of Official Agricultural Chemists International, 84(3), 666-670)
- 20:05, 26 April 2019 Debra Tabron (talk | contribs) uploaded File:2018-USEPA-Edition of the Drinking Water Standards and Health Advisories.pdf (US EPA, 2018(a). 2018 Edition of the Drinking Water Standards and Health Advisories. US Environmental Protection Agency, Publication number: EPA 822-F-18-001.)
- 19:17, 26 April 2019 Debra Tabron (talk | contribs) uploaded File:2012-ASTDR. Toxicological profile for 1,4-dioxane.pdf (ATSDR, 2012. Toxicological profile for 1,4-dioxane. Agency for Toxic Substances and Disease Registry)
- 21:11, 25 April 2019 Debra Tabron (talk | contribs) uploaded File:2016-Knappe-Occurrence of 1,4-dioxane in the Cape Fear River.pdf (Knappe, D.R.U., C. Lopez-Velandia, Z. Hopkins, and M. Sun, 2016. Occurrence of 1,4-dioxane in the Cape Fear River watershed and effectiveness of water treatment options for 1,4-dioxane control. Water Resources Research Institute of The University of No...)
- 20:11, 25 April 2019 Debra Tabron (talk | contribs) uploaded File:1994-Parales-Degradation of 1,4-Dioxane by an Actinomycete in Pure Culture.pdf (Parales, R.E., J.E. Adamus, N. White, and H.D. May, 1994. Dedegradation of 1,4-dioxane by an Actinomycete in pure culture. Applied and Environmental Microbiology, 60(12), 4527-4530.)
- 15:51, 25 April 2019 Debra Tabron (talk | contribs) uploaded File:2017-USEPA- Technical Fact Sheet.pdf (US EPA, 2017. Technical Fact Sheet – 1,4-Dioxane. Publication number: EPA 505-F-17-001)
- 15:49, 25 April 2019 Debra Tabron (talk | contribs) uploaded File:2007-NIOSH Pocket Guide to Chemical Hazards.pdf (NIOSH, 2007. NIOSH Pocket Guide to Chemical Hazards. US Department of Health and Human Services, DHHS (NIOSH) Publication Number 2005-149.)
- 14:28, 23 April 2019 Debra Tabron (talk | contribs) deleted page Shaily Mahendra (content was: "==Work and Contact Information== EMPLOYER: EMAIL: WEBPAGE: ==About the Contributor== ==Article Contributions==...", and the only contributor was "Debra Tabron" (talk))
- 14:18, 16 April 2019 Debra Tabron (talk | contribs) uploaded File:2018-USEPA. Remedial Technology Fact Sheet.pdf (USEPA, 2018. Remedial Technology Fact Sheet — Activated Carbon-Based Technology for In Situ Remediation. EPA 542-f-18-001)
- 13:40, 5 April 2019 Debra Tabron (talk | contribs) uploaded File:Weaver1w2fig2c.png (Figure 2, Panel C: Vertical separation distance from LNAPL petroleum contamination.)
- 13:38, 5 April 2019 Debra Tabron (talk | contribs) uploaded File:Weaver1w2fig2b.png (Figure 2, Panel B: Vertical separation distance from aqueous phase petroleum contamination.)
- 13:37, 5 April 2019 Debra Tabron (talk | contribs) uploaded File:Weaver1w2fig2a.png (Figure 2, Panel A: Lateral separation distance from petroleum contamination.)
- 13:31, 5 April 2019 Debra Tabron (talk | contribs) uploaded File:Weaver1w2fig1.png (Figure 1 Typical conceptual models for vapor intrusion from a release of petroleum hydrocarbons (such as a fuel spill) and for a release of chlorinated volatile organic compounds)
- 18:02, 4 April 2019 Debra Tabron (talk | contribs) uploaded File:2009-Davis- Bioattenuation of Petroleum Hydrocarbon Vapors in the Subsurface.pdf (Davis, R.V. 2009. Bioattenuation of Petroleum Hydrocarbon Vapors in the Subsurface: Update on Recent Studies and Proposed Screening Criteria for the Vapor‐Intrusion Pathway. LUSTLine Bulletin 61:11‐14. New England Interstate Water Pollution Control...)
- 17:53, 4 April 2019 Debra Tabron (talk | contribs) uploaded File:2013-USEPA-Evaluation of Empirical Data to Support soil Vapor intrusion Screening Criteria.pdf (U.S. Environmental Protection Agency (USEPA), 2013. Evaluation of Empirical Data to Support Soil Vapor Intrusion Screening Criteria for Petroleum Hydrocarbon Compounds. Office of Underground Storage Tanks, Washington, D.C. EPA 510-R-13-001. Report pdf.)
- 15:51, 4 April 2019 Debra Tabron (talk | contribs) uploaded File:2012b-USEPA-An Approach for Dev. Site-Specific Lateral and Vertical Inclusion Zones....pdf (U.S. Environmental Protection Agency (USEPA), 2012. An Approach for developing site-specific lateral and vertical inclusion zones within which structures should be evaluated for petroleum vapor intrusion due to releases of motor fuel from underground s...)