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(newest | oldest) View (newer 20 | older 20) (20 | 50 | 100 | 250 | 500)- 18:04, 18 August 2016 Debra Tabron (talk | contribs) uploaded File:McCall Article 2. Figure 3.PNG (Figure 3: Steps in the operation of a dual-tube groundwater sampler)
- 18:04, 18 August 2016 Debra Tabron (talk | contribs) uploaded File:McCall Article 2. Figure 2.PNG (Figure 2: The outer casing of the dual-tube system remains in place to control the bore hole as the inner rod is used to trip out the sample barrel with soil core.)
- 18:02, 18 August 2016 Debra Tabron (talk | contribs) uploaded File:McCall Article 2. Figure 1.PNG (Figure 1: Sampling sequence with an open-barrel, single-tube soil sampling system. The sample barrel is advanced through the open borehole to succeeding depths.)
- 20:32, 11 August 2016 Debra Tabron (talk | contribs) uploaded File:McCall-Article 1-Figure 5.PNG (Figure 5: Top-down materials injection with a pressure activated probe.)
- 20:30, 11 August 2016 Debra Tabron (talk | contribs) uploaded File:McCall-Article 1-Figure 4.PNG (Figure 4: Bottom-up tremie grouting through a tool string.)
- 20:26, 11 August 2016 Debra Tabron (talk | contribs) uploaded File:McCall-Article 1-Figure 3.PNG (Figure 3: Schematic of the Optical Image Profiler (OIP) that uses an ultraviolet light emitting diode (UV LED) and CMOS camera to induce and capture images of petroleum fuel fluorescence through a sapphire window.)
- 20:21, 11 August 2016 Debra Tabron (talk | contribs) uploaded File:McCall-Article 1-Figure 2.PNG (Figure 2: Monitoring water quality parameters while purging groundwater from a single-tube, protected screen, discrete interval sampler)
- 20:19, 11 August 2016 Debra Tabron (talk | contribs) uploaded File:McCall-Article 1-Figure 1.PNG (Figure 1: A track mounted DP machine set up for collection of soil and groundwater samples. The tool rack is transported to the sample location on the stabilizer bar at the back of the unit)
- 20:45, 4 August 2016 Debra Tabron (talk | contribs) uploaded File:USEPA-1999-Understanding variation in partition coefficient, Kd values-Vol 1.pdf (United States Environmental Protection Agency (USEPA), 1999. Understanding variation in partition coefficient, Kd, values, Volume 1 – The Kd model, methods of measurement, and application of chemical reaction codes. EPA 402-R-99-004A)
- 20:17, 4 August 2016 Debra Tabron (talk | contribs) uploaded File:USEPA-2007-MNA of Inorganic Contaminants in GW, Vol 1 Technical Basis for Assessment.pdf (U.S.E.P.A., 2007. Monitored Natural Attenuation of Inorganic Contaminants in Groundwater, Volume 1 Technical Basis for Assessment, Edited by R.G. Ford, R.T. Wilkin, and R.W. Puls. U.S. Environmental Protection Agency, EPA/600/R-07/139.)
- 19:38, 4 August 2016 Debra Tabron (talk | contribs) uploaded File:Palmisano-2003 Bioremed. of Metals and Radionuclides What it is and How it Works.pdf (Palmisano, A. and Hazen, T., 2003. Bioremediation of metals and radionuclides: What it is and how it works. Lawrence Berkeley National Laboratory.)
- 16:31, 4 August 2016 Debra Tabron (talk | contribs) uploaded File:Wilkin-2007-Metal Attenuation Processes at Mining Sites.pdf (Wilkin, R.T., 2007. Metal Attenuation Processes at Mining Sites. Environmental Protection Agency, EPA/600/R-07/092)
- 19:55, 3 August 2016 Debra Tabron (talk | contribs) uploaded File:Hem-1970-Chemical behavior of mercury in aqueous media.pdf (Hem, J.D., 1970. Chemical behavior of mercury in aqueous media. In Mercury in the Environment (Vol. 713, pp. 19-24). Washington, DC: US Government Printing Office.)
- 16:01, 3 August 2016 Debra Tabron (talk | contribs) uploaded File:Palmer-1994-Nat Att Hexavalent Chromium.pdf (Palmer, C.D. and Puls, R.W., 1994. Natural attenuation of hexavalent chromium in groundwater and soils. United States Environmental Protection Agency, EPA/540/5-94/505.)
- 20:04, 1 August 2016 Debra Tabron (talk | contribs) uploaded File:Hazen-2008-Complexity of GW at DOE Sites.pdf (Hazen, T.C., Faybishenko, B., Jordan, P., 2008. Complexity of Groundwater Contaminants at DOE Sites. LBNL-4117E, Lawrence Berkeley National Laboratory)
- 19:45, 1 August 2016 Debra Tabron (talk | contribs) uploaded File:Riley-1992-Chemical Contaminants on DOE Lands and Selection of Contaminant Mix.pdf (Riley, R.G., Zachara, J.M., Wobber, F.J., 1992. Chemical Contaminants on DOE Lands and Selection of Contaminant Mixtures for Subsurface Science Research. DOE/ER—0547T, U.S. Department of Energy)
- 19:10, 1 August 2016 Debra Tabron (talk | contribs) uploaded File:GAO-2005-GW Contamination - DOD Uses and Develops a Range of Remed Technologies .pdf (Government Accountability Office, 2005. Groundwater Contamination – DOD Uses and Develops a Range of Remediation Technologies to Clean Up Military Sites. Report to Congressional Committees, GAO-05-666.)
- 17:53, 1 August 2016 Debra Tabron (talk | contribs) uploaded File:Fabian-2005-Army-Small-Arms-Training-Range-BMP.pdf (Fabian, G. and Watts, K., 2005. Army Small Arms Training Range Environmental Best Practices (BMPs) Manual. DTC Project No. 9-CO-160-000-504, U.S. Army Environmental Center, Aberdeen Proving Ground, MD.)
- 16:04, 29 July 2016 Debra Tabron (talk | contribs) uploaded File:Davis-1997-How Heat can Accelarate In-Situ Soil and Aqufier Remediation.pdf (Davis, E. L. 1997. How Heat Can Accelerate In-situ Soil and Aquifer Remediation: Important Chemical Properties and Guidance on Choosing the Appropriate Technique. US EPA Issue paper, EPA/540/S-97/502)
- 17:36, 27 July 2016 Debra Tabron (talk | contribs) uploaded File:Geoprobe-2003-Membrane Interface Probe SOP.pdf (Geoprobe, 2003. Geoprobe® Membrane Interface Probe (MIP) Standard Operating Procedure, Technical Bulletin No. MK3010. Revised, April, 2010. 28 Pages)