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  • <div id="mp-tfa" style="padding:0.0em 1.0em;">[[File:ThierryFig1.png|450px|left|link=Restoration of Ecological Func ...opane|Summary of anticipated, primary reaction pathways for degradation of 1,2,3-Trichloropropane (TCP). TCP is a man-made chemical that was used in the
    15 KB (2,019 words) - 19:25, 30 December 2023
  • [[File:Denham-Article 2-Equation 1.PNG|150px|center]] ...ate the calculated aqueous speciation of uranium on an Eh-pH diagram (Fig. 1). The dominant species is different at different pH and Eh values (species
    24 KB (3,645 words) - 21:43, 26 April 2022
  • File:Crimi 1 Fig1a.png
    Fig 1. Change in Maximum Parent Compound Concentration by Technology Variant for
    (525 × 392 (63 KB)) - 13:51, 14 April 2016
  • File:Crimi 1 Fig1b.png
    Fig 1. Change in Maximum Parent Compound Concentration by Technology Variant for
    (524 × 392 (63 KB)) - 13:54, 14 April 2016
  • 1. Introductory page i. 1,4-dioxane (Shaily Mahendra)
    2 KB (231 words) - 14:03, 21 August 2015
  • File:ITRC-2007-Vapor Intrusion Pathway, A Practical Guide.pdf
    ITRC, 2007. Vapor Intrusion Pathway: A Practical Guide. VI-1. Washington, D.C.: Interstate Regulatory Council, Vapor Intrusion Team
    (0 × 0 (3.42 MB)) - 19:25, 19 April 2018
  • File:ITRC-2014-PVI Fundamentals of Screening and Investigation and Mgmt.pdf
    ...r Intrusion: Fundamentals of Screening, Investigation, and Management. PVI-1. Washington, D.C.: Interstate Technology & Regulatory Council, Petroleum Va
    (0 × 0 (24.24 MB)) - 19:12, 19 April 2018
  • ...pgs. 29-37. [http://dx.doi.org/10.1007/978-1-4419-1401-9_2 doi:10.1007/978-1-4419-1401-9_2]</ref> ...; carbon tetrachloride and tetrachloroethylene. Environmental Forensics, 1(2), 69-81. [http://dx.doi.org/10.1006/enfo.2000.0010 doi:10.1006/enfo.2000.
    19 KB (2,341 words) - 02:54, 28 April 2022
  • Enviro Wiki PRIVACY POLICY VERSION 1 Adopted December 17, 2015
    2 KB (402 words) - 16:55, 3 November 2017
  • | style="text-align:center;"| Level 1 Heading reserved for Page Name
    6 KB (827 words) - 20:57, 4 May 2018
  • ...nd water. He has experience with the behavior of chlorinated solvents and 1,4-dioxane, petroleum hydrocarbons, and fuel additives in groundwater. He h
    2 KB (242 words) - 17:20, 17 January 2020
  • ...n several DoD-sponsored research projects on cometabolic biodegradation of 1,4-Dioxane, innovative approaches for treatment of chlorinated solvents in l
    2 KB (220 words) - 16:39, 4 February 2022
  • ...[http://dx.doi.org/10.1007/978-1-4614-4115-1 doi: 10.1007/978-1-4614-4115-1]</ref>. In anaerobic groundwater, chlorinated alkenes can undergo a sequent ...ediation evaluation model for chlorinated solvents user’s manual Version 1.0. Cent. for subsurface model. support, US Environ. Prot. Agency, Ada, Okla
    27 KB (3,804 words) - 15:14, 1 April 2024
  • ...tterns that will have cascading impacts on wildlife and habitat<ref name=":1">Inkley, D. B., Anderson, M. G., Blaustein, A. R., Burkett, V. R., Felzer, ...ldlife in North America. Wildlife Society Technical Review 04-2<ref name=":1" />
    14 KB (1,969 words) - 14:07, 25 April 2022
  • ...ge Meters for Quantifying Flow between Groundwater and Surface Water: Part 1 – Freshwater Settings. Earth-Science Reviews, 204(103167). [https://doi.o ...Leading Edge, 41 (8), pp. 540–547. [https://doi.org/10.1190/tle41080540.1 doi: 10.1190/tle41080540].</ref>]]
    51 KB (7,290 words) - 19:40, 1 February 2024
  • ...of the US getting drier, others getting wetter<ref name=":0" /><ref name=":1"> ...ther events becoming more common</onlyinclude><ref name=":0" /><ref name=":1" /><onlyinclude>.</onlyinclude>
    29 KB (4,108 words) - 13:53, 3 May 2022
  • ...ure-sectors “Critical Infrastructure Sectors”.]</ref>, listed in Table 1, and detailed a plan to strengthen and maintain, secure, functioning, and r |+Table 1. DHS Critical Infrastructure Sectors<ref name="CISAcis" />
    26 KB (3,805 words) - 22:15, 26 April 2022
  • ...ed by proteomics in genome annotation. Briefings in Functional Genomics, 7(1), pp. 50-62. [https://doi.org/10.1093/bfgp/eln010 doi: 10.1093/bfgp/eln010] ...ingerprinting to Omics. Journal of Environmental Engineering, 142(10), pp. 1-13. [https://doi.org/10.1061/(ASCE)EE.1943-7870.0001141 doi: 10.1061/(ASCE)
    27 KB (3,796 words) - 18:54, 7 January 2022
  • ...ium, B.C. Alleman and A. Leeson (eds.), Vol 2. New Orleans, April 28–May 1, 1997. Battelle Press, Columbus OH. pp 309–314.
    11 KB (1,475 words) - 17:09, 31 January 2017
  • * 1,4-Dioxane * 1,4-Dioxane MNA (or MNA of 1,4-Dioxane)
    11 KB (1,258 words) - 20:57, 4 May 2018
  • File:Crimi 2 Table1.JPG
    Table 1
    (985 × 452 (97 KB)) - 14:36, 15 April 2016
  • ...in fractured sandstone, and determining the anaerobic biodegradability of 1,4-dioxane.
    1 KB (147 words) - 15:25, 12 February 2019
  • File:atsdr toxprofile stp57.pdf
    ...c Substances and Disease Registry (ATSDR), 1992. Toxicological Profile for 1,2,3-Trichloropropane
    (0 × 0 (1.52 MB)) - 19:20, 16 December 2016
  • File:ITRC-2010-A Decision Framework.pdf
    ...tate Technology and Regulatory Council, Technical/Regulatory Guidance AMPR-1.
    (0 × 0 (4.21 MB)) - 19:25, 29 January 2016
  • File:ITRC-2013-Groundwater Stat Mon.pdf
    ...Monitoring Compliance, Statistical Tools for the Project Life Cycle. GSMC-1. Washington, D.C.: Interstate Technology & Regulatory Council, Groundwater
    (0 × 0 (4.47 MB)) - 20:57, 4 February 2016
  • File:Fig1 qPCR Olges.JPG
    Fig 1: Results for qPCR monitoring of Dehalococcoides and vinyl chloride reductas
    (1,061 × 524 (61 KB)) - 16:57, 19 February 2016
  • [[File:Tabl1 Ogles qPCR.PNG |thumbnail|600px|right|Table 1. Potential qPCR assays for common and emerging contaminants.]] .... Microbiological Reviews, 59(1), 143-169. [http://mmbr.asm.org/content/59/1/143.short Journal Article]</ref>; plate count results are therefore biased
    22 KB (2,889 words) - 22:07, 26 April 2022
  • File:Fig1 SIP Olges.jpg
    Fig 1: SIP in Use: Loading, deployment and recovery of Bio-Trap passive sampler w
    (1,383 × 393 (98 KB)) - 18:48, 23 February 2016
  • File:Table1 SIP Ogles.JPG
    Table 1. Examples of Appropriate Contaminants for SIP Studies
    (1,034 × 258 (61 KB)) - 19:03, 23 February 2016
  • ....indexOf('.js') === -1 && mw.config.get('wgPageName').indexOf('.css') === -1 ) ) * 1. get the template list, make the dropdown list and set up the template dial
    30 KB (3,518 words) - 15:17, 25 February 2016
  • 'cite-error-samecontent-msg' : 'Multiple refs contain the same content: $1', 'cite-error-repeated-msg' : 'Multiple refs are given the name: \'$1\'',
    6 KB (581 words) - 15:17, 25 February 2016
  • * month - The numberic month (1-12) if ($.inArray(reflist[i].content, refs2) != -1) {
    9 KB (1,005 words) - 15:18, 25 February 2016
  • * or Reftoolbar 1.0) depending on the user preferences (the // Enhanced editing toolbar is off. Loading RefToolbar 1.0. (legacy)
    2 KB (247 words) - 15:19, 25 February 2016
  • * or Reftoolbar 1.0) depending on the user preferences (the // Enhanced editing toolbar is off. Loading RefToolbar 1.0. (legacy)
    2 KB (247 words) - 15:20, 25 February 2016
  • field = fieldobj.field.replace('<N>', '1'); 'val':1,
    11 KB (1,413 words) - 15:21, 25 February 2016
  • File:Falta-2005-The potential for Ground Water Contamination.pdf
    ...Water Contamination by the Gasoline Lead Scavengers Ethylene Dibromide and 1, 2‐Dichloroethane. Environmental Science and Technology Magazine Online.
    (0 × 0 (238 KB)) - 20:18, 3 March 2016
  • ...Molecular Biology Reviews, 59(1), 143-169. [http://mmbr.asm.org/content/59/1/143.short Journal Article]</ref> *'''Cultivation independent''': Less than 1% of bacteria can be cultivated (grown) in the laboratory<<ref name="Amann19
    14 KB (1,902 words) - 22:04, 26 April 2022
  • File:Denham pH buffering Fig1.jpg
    Fig 1. Graphic showing the dissolved carbonate system.
    (2,938 × 2,083 (2.03 MB)) - 19:10, 27 April 2016
  • ...Geochemistry. Prentice-Hall, Inc. Upper Saddle River, NJ. ISBN 0-02-367412-1</ref><ref>Drever, J.I., 1997. The Geochemistry of Natural Waters: Surface a [[File:Denham Equation page 1.PNG|575 px|center]]
    17 KB (2,465 words) - 00:06, 17 February 2017
  • File:2006 EPA 542-R-06-009.pdf
    Treatment Technologies for 1,4-Dioxane
    (0 × 0 (1.25 MB)) - 16:29, 5 May 2016
  • File:2008 AFCEE A Primer for AF RPMs AFD-081010-028.pdf
    Primer for Air Force Remedial Program Managers and assessors for 1,4-Dioxane
    (0 × 0 (379 KB)) - 16:48, 5 May 2016
  • File:Results of Analyses for 1,4-Dioxane in Groundwater Samples.pdf
    Results of Analyses for 1,4-dioxane in groundwater samples
    (0 × 0 (4.74 MB)) - 17:01, 5 May 2016
  • File:2013 EPA Technical Fact Sheet 1,4-Dioxane.pdf
    Technical Fact Sheet for 1,4-Dioxane
    (0 × 0 (88 KB)) - 17:40, 5 May 2016
  • File:Kamath-2010-Passive Soil Vapor Extraction-SRNL-STI-2009-00571.pdf
    ....B. Looney. 2010. Passive Soil Vapor Extraction. SRNL-STI-2009-00571, Rev. 1, Savannah River National Laboratory, Aiken, South Carolina
    (0 × 0 (3.57 MB)) - 13:59, 11 May 2016
  • File:USACE-2002-Soil Vapor Extraction and Bioventing-EM 1110-1-4001.pdf
    ...002. Engineering and Design: Soil Vapor Extraction and Bioventing. EM 1110-1-4001, U.S. Army Corps of Engineers, Washington, D.C
    (0 × 0 (3.6 MB)) - 17:50, 11 May 2016
  • File:Wilson-2008-Natural attenuation of the lead scavengers.pdf
    ...n of the lead scavengers 1, 2-dibromoethane (EDB) and 1, 2-dichloroethane (1, 2-DCA) at motor fuel release sites and implications for risk management. U
    (0 × 0 (2.2 MB)) - 20:58, 12 May 2016
  • File:Wilson 2 Figure 1. BTEX.PNG
    Figure 1. Distribution of BTEX plume lengths from 604 hydrocarbon sites (Newell and
    (870 × 501 (343 KB)) - 18:47, 13 May 2016
  • File:Wilson 3 Fig1.png
    Figure 1. Degradation of chlorinated alkenes
    (566 × 368 (12 KB)) - 14:48, 16 May 2016
  • |[[Biodegradation - 1,4-Dioxane]] |[[1,2,3-Trichloropropane]]||[[Dr. Alexandra Salter-Blanc |Salter-Blanc, Alexand
    13 KB (1,800 words) - 20:01, 29 April 2022
  • File:Slater-Article 2-Figure 1.PNG
    Figure 1. Resistivity imaging at the 300 Area of the Hanford Facility, Richland, WA.
    (890 × 427 (630 KB)) - 19:15, 31 January 2017
  • ...IM components, namely 2,4-dinitroanisole (DNAN), nitrotriazelone (3-nitro-1,2,4-triazol-5-one, NTO), and nitroguanidine (NQ). ...A6W-08, Protocol No. 0A6W-38-08-02-01, Subchronic oral toxicity of 3-nitro-1,2,4-triazol-5-one (NTO) in rats. U.S. Army Public Health Command, Toxicolog
    22 KB (3,264 words) - 20:57, 4 May 2018
  • File:Fig1 LTM1 Overview.jpg
    Figure 1. Example of long term monitoring data from 52 source zone monitoring wells
    (3,179 × 921 (2.09 MB)) - 12:53, 17 June 2016
  • File:Adamson-Article 2-Table 1.PNG
    Table 1. Monitoring Data Required to Determine Long-Term Attenuation Rate
    (887 × 286 (24 KB)) - 14:57, 20 June 2016
  • ...viro.wiki/images/b/b6/2006_EPA_542-R-06-009.pdf Treatment Technologies for 1,4-Dioxane: Fundamentals and Field Applications]
    3 KB (340 words) - 01:46, 28 April 2022
  • File:Walsh-Article 1-Figure 1.PNG
    Figure 1. Range ordnance disposal operation. Blow-in-place (BIP) operations often re
    (940 × 623 (1.13 MB)) - 20:04, 11 November 2016
  • *[[1,2,3-Trichloropropane]] *[[1,4-Dioxane]]
    2 KB (249 words) - 02:44, 28 April 2022
  • *[[Biodegradation - 1,4-Dioxane]]
    1 KB (153 words) - 21:22, 26 April 2022
  • File:Fig1 LTM DataVariability.jpg
    Figure 1. Effect of Short-term Variability on Evaluation of Long-Term Contaminant At
    (2,809 × 1,419 (1.53 MB)) - 17:43, 24 June 2016
  • File:Fig1 PassiveSampling.jpg
    Figure 1. The Snap Sampler<sup>TM</sup> is an example of a passive grab sampler. Th
    (1,625 × 1,148 (1.53 MB)) - 19:55, 24 June 2016
  • File:Truex 1 Fig1.png
    Figure 1. Xanthan gum concentration influence on fluid viscosity and rheology for se
    (910 × 631 (32 KB)) - 20:42, 30 June 2016
  • File:Truex 3 Fig1.png
    Figure 1. Conceptual Diagram of Basic SVE System for Vadose Zone Remediation
    (800 × 619 (73 KB)) - 17:35, 1 July 2016
  • ...ncy Response, Washington, D.C. EPA/540/F-96/008. [//www.enviro.wiki/images/1/1b/EPA-1996-User%E2%80%99s_Guide_to_the_VOCs_in_Soils_Presumptive_Remedy.pd ...iver National Laboratory, Aiken, South Carolina. SRNL-STI-2009-00571, Rev. 1. [//www.enviro.wiki/images/0/06/Kamath-2010-Passive_Soil_Vapor_Extraction-S
    16 KB (2,250 words) - 20:57, 21 February 2022
  • File:Haley-2009-Aquatic toxicity of 3-Nitro-1,2,4-triazol-5-one..pdf
    ...M.V., R.G. Kuperman, and R.T. Checkai. 2009. Aquatic toxicity of 3-nitro-1,2,4-triazol-5-one (NTO). ECBC-TR-726. Edgewood Chemical Biological Center (
    (0 × 0 (2.53 MB)) - 14:35, 12 July 2016
  • *[[1,2,3-Trichloropropane]]
    1 KB (140 words) - 18:48, 3 February 2021
  • File:Reiffsteck-2010-A New Hydraulic Profiling Tool including CPT Measurements.pdf
    ...Cone Penetration Testing. Volume 2: Equipment and Procedures, Paper No. 1-11, 8 pages
    (0 × 0 (280 KB)) - 14:54, 27 July 2016
  • File:USEPA-2007-MNA of Inorganic Contaminants in GW, Vol 1 Technical Basis for Assessment.pdf
    ...ored Natural Attenuation of Inorganic Contaminants in Groundwater, Volume 1 Technical Basis for Assessment, Edited by R.G. Ford, R.T. Wilkin, and R.W.
    (0 × 0 (2.16 MB)) - 20:17, 4 August 2016
  • File:USEPA-1999-Understanding variation in partition coefficient, Kd values-Vol 1.pdf
    ...1999. Understanding variation in partition coefficient, Kd, values, Volume 1 – The Kd model, methods of measurement, and application of chemical react
    (0 × 0 (3.61 MB)) - 20:45, 4 August 2016
  • File:McCall-Article 1-Figure 1.PNG
    Figure 1: A track mounted DP machine set up for collection of soil and groundwater s
    (407 × 358 (342 KB)) - 20:19, 11 August 2016
  • ...and logging tools using a percussion hammer and vehicle weight (e.g. Figs 1, 2). Sampling and logging tools are advanced by rearrangement and compressi [[File:McCall-Article 1-Figure 1.PNG|275px|thumb|right|Figure 1. A track mounted DP machine set up for collection of soil and groundwater s
    14 KB (1,927 words) - 21:53, 26 April 2022
  • File:McCall Article 2. Figure 1.PNG
    Figure 1: Sampling sequence with an open-barrel, single-tube soil sampling system. T
    (402 × 378 (39 KB)) - 19:34, 19 August 2016
  • ...& Regulatory Council, 2007. Vapor intrusion pathway: A practical guide. VI-1. ITRC Vapor Intrusion Team, Washington, D.C. [//www.enviro.wiki/images/0/06 [[File:McCall Article 2. Figure 1.PNG|left|thumb|250px|Figure 1. Sampling sequence with an open-barrel, single-tube soil sampling system. T
    26 KB (3,624 words) - 21:55, 26 April 2022
  • File:McCall Article 3 Figure 1.PNG
    Figure 1: General components of a DP logging system.
    (415 × 448 (58 KB)) - 21:10, 26 August 2016
  • [[File:McCall Article 3 Figure 1.PNG|thumbnail|left|300 px|Figure 1. General components of a DP logging system.]] ...probe. Most of these logging systems have several features in common (Fig. 1). The probe provides an interface between the measurement device and the fo
    32 KB (4,559 words) - 21:54, 26 April 2022
  • File:Krug-Article 1. Fig1 perchlorate.jpg
    Figure 1: Perchlorate Releases and Drinking Water Detections
    (1,592 × 1,021 (1.88 MB)) - 20:00, 30 August 2016
  • File:Krug-Article 1. Table1 perchlorate.PNG
    Table 1. Perchlorate Physical and Chemical Properties
    (1,150 × 278 (31 KB)) - 20:04, 30 August 2016
  • File:Newell-Article 1-Fig1.JPG
    Figure 1. Hydraulic gradient (typically described in units of m/m or ft/ft) is the d
    (650 × 708 (139 KB)) - 01:07, 9 May 2018
  • File:Newell-Article 1-Table1r.jpg
    Table 1. Representative Values of Total Porosity (n), Effective Porosity (ne), and
    (1,041 × 511 (138 KB)) - 20:38, 6 September 2016
  • File:Newell-Article 1-Equation 1r.jpg
    Chuck Newell - Article 1 - Equation 1
    (551 × 56 (12 KB)) - 14:09, 7 September 2016
  • File:Newell-Article 1-Equation 1rr.jpg
    Newell-Article 1-Equation 1
    (543 × 49 (11 KB)) - 14:42, 7 September 2016
  • [[File: Schwartz1w2Fig1.PNG | thumb | 500px | Figure 1. Conceptual model of mercury speciation in the environment<ref>European Co ...onment. MeHg production occurs in anoxic environments and is affected by: (1) the bioavailability of Hg(II) complexes to Hg-[[Wikipedia: Methylation | m
    17 KB (2,394 words) - 21:33, 11 January 2022
  • ...| perfluoroalkyl and polyfluoroalkyl substances (PFAS)]], [[1,4-Dioxane | 1,4-dioxane]], and many more. [[File: Nagar1w2Fig1.png | thumb | 400px | Figure 1. Water phase diagram showing the supercritical water region (not to scale)
    17 KB (2,487 words) - 20:27, 4 May 2022
  • ...ber 4322. Water Research Foundation, Denver, Colorado. 123 pages. ISBN 978-1-60573-234-3</ref> ...itrcweb.org/ Website]&nbsp;&nbsp; [//www.enviro.wiki/images/2/2e/ITRC_PFAS-1.pdf Report.pdf]</ref>
    38 KB (5,183 words) - 00:48, 28 April 2022
  • File:Richardson-Article 1-Table 1.JPG
    Table 1. Chemical structures and selected properties of the 16 USEPA priority pollu
    (588 × 814 (105 KB)) - 19:57, 12 September 2016
  • ...chemical properties of the 16 USEPA-regulated PAHs are presented in Table 1. [[File:Richardson-Article 1-Table 1.JPG|thumbnail|600px|center|Table 1. Chemical structures and selected properties of the 16 USEPA priority pollu
    18 KB (2,440 words) - 03:04, 28 April 2022
  • File:Gerhard Fig1.jpg
    Figure 1. Smoldering charcoal example of a flameless, self-sustaining combustion rea
    (2,042 × 1,733 (5.26 MB)) - 18:56, 15 September 2016
  • File:Fig1 dispanddiff.JPG
    ...of diffusion of dissolved chemicals recently place in a container at Time 1 (left panel) and then distributed throughout the container (right panel) at
    (732 × 494 (45 KB)) - 20:37, 16 September 2016
  • File:Deeb-Article 1-Table 2-L2-Drinking water screening values.pdf
    Deeb-Article 1-Table 2-L2-Drinking water screening values
    (0 × 0 (841 KB)) - 13:11, 22 September 2016
  • File:Deeb-Article 1-Table 2-L6-Dev of MCL recommendations for PFOA and PFOS.pdf
    Deeb-Article 1-Table 2-L6-Dev of MCL recommendations for PFOA and PFOS
    (0 × 0 (404 KB)) - 13:16, 22 September 2016
  • File:Deeb-Article 1-Table 2-L7-Health-Based Maximum Contaminant Level MCL.pdf
    Deeb-Article 1-Table 2-L7-Health-Based Maximum Contaminant Level_MCL
    (0 × 0 (2.3 MB)) - 13:17, 22 September 2016
  • File:Deeb-Article 1-Table 2-L10-Provisional Groundwater Remediaton Objectives Class I Groundwater.pdf
    Deeb-Article 1-Table 2-L10-Provisional Groundwater Remediaton Objectives_Class I Groundwat
    (0 × 0 (6.03 MB)) - 13:21, 22 September 2016
  • File:Deeb-Article 1-Table 2-L11-Provisional Groundwater Remediaton Objectives Class II Groundwater .pdf
    Deeb-Article 1-Table 2-L11-Provisional Groundwater Remediaton Objectives_Class II Groundwa
    (0 × 0 (6.03 MB)) - 13:26, 22 September 2016
  • File:Deeb-Article 1-Table 2-L13-Interim specific groundwatr quality criterion fact sheet.pdf
    Deeb-Article 1-Table 2-L13-Interim specific groundwatr quality criterion_fact_sheet
    (0 × 0 (573 KB)) - 13:30, 22 September 2016
  • File:Deeb-Article 1-Table 2-L15-Groundwater residential generic cleanup criteria and screening levels .pdf
    Deeb-Article 1-Table 2-L15-Groundwater residential generic cleanup criteria and screening
    (0 × 0 (3.03 MB)) - 13:36, 22 September 2016
  • File:Deeb-Article 1-Table 2-L16-Groundwater nonresidential generic cleanup criteria and screening levels.pdf
    Deeb-Article 1-Table 2-L16-Groundwater nonresidential generic cleanup criteria and screeni
    (0 × 0 (3.03 MB)) - 13:44, 22 September 2016
  • File:Deeb-Article 1-Table 2-L18-Residential soil screening levels.pdf
    Deeb-Article 1-Table 2-L18-Residential soil screening levels
    (0 × 0 (517 KB)) - 14:37, 22 September 2016
  • File:Deeb-Article 1-Table 2-L22-ME-Remedial Action guidelines.pdf
    Deeb-Article 1-Table 2-L22-ME-Remedial Action guidelines
    (0 × 0 (599 KB)) - 15:54, 22 September 2016
  • File:IARC-2016-Monographs on the eval of carcinogenic risks to humans List of Classifications.pdf
    ...luation of Carcinogenic Risks to Humans. Lists of Classifications, Volumes 1 to 116.
    (0 × 0 (199 KB)) - 20:12, 28 September 2016
  • [[File:Beal1w2 Fig1.png|thumb|200 px|left|Figure 1: Downrange distance of visible propellant plume on snow from the firing of ...olition areas, high order detonations typically yield very small amounts (<1 to 10 mg/round) of residual high explosive compounds (e.g., [[Wikipedia: TN
    19 KB (2,727 words) - 18:58, 29 April 2020
  • File:Borden3w2 Fig1.PNG
    Figure 1. Photo-micrograph of EVO (0.7 µm median diameter). White scale bar 25 µm
    (578 × 457 (210 KB)) - 20:01, 13 November 2018
  • ...y Wastes: A Field Guidance Book for Federal On-scene Coordinators, Version 1.0, October 2003. Region 6 South Central Response and Prevention Branch. [[m ...utrients to enhance biodegradation by naturally occurring bacteria (Figure 1). Fertilizers such as urea and triple superphosphate (TSP) are used to prov
    15 KB (2,188 words) - 02:13, 28 April 2022
  • File:McGuire1w2Equation1.PNG
    McGuire 1w2 Equation 1
    (552 × 83 (4 KB)) - 15:37, 22 August 2018
  • ...ediation. The [[Media:RemediationPerformance.mp4 | video]] shown in Figure 1 presents a summary of remediation performance at 235 chlorinated solvent si [[File:RemediationPerformance.mp4 | 400px | thumb | left | Figure 1. Remediation performance at 235 chlorinated solvent sites.]]
    24 KB (3,252 words) - 16:25, 14 August 2019
  • File:Denham-Article 3-Figure 1.PNG
    Figure 1. Typical contaminant plume evolution in an aquifer showing leading and trai
    (1,082 × 558 (230 KB)) - 17:18, 23 January 2017
  • File:Denham-Article 3-Table 1.PNG
    Table 1. Tiered four-phase approach to demonstrating MNA for inorganic compounds
    (676 × 604 (55 KB)) - 17:20, 23 January 2017
  • File:Edwards Article 1-figure 1.PNG
    Figure 1. Components of hydrocarbon biodegradation. Understanding and facilitating b
    (464 × 453 (58 KB)) - 16:12, 25 January 2017
  • File:Edwards Article 1-figure 3.PNG
    ...ion of benzene and alkylbenzenes. Acetate and H2 are consumed in reactions 1, 2, and 3, keeping the fermentation reaction energetically favorable. When
    (925 × 380 (74 KB)) - 16:17, 25 January 2017
  • File:MacKinnon AnBiorem Fig1.jpg
    Figure 1. Redox ladder for common electron donors and electron acceptors.
    (2,550 × 3,300 (519 KB)) - 18:41, 9 January 2017
  • File:Mackinnon-Article 2- figure 1.PNG
    Figure 1. Amendment addition for biobarrier.
    (455 × 668 (829 KB)) - 16:03, 6 January 2017
  • File:Palaia-Article 1-Figure 1.PNG
    Figure 1. Conceptualization of Vapor Transport-related NSZD Processes at a Petroleum
    (796 × 683 (250 KB)) - 18:28, 25 October 2016
  • File:Palaia-Article 1-Table 1.PNG
    Table 1. Terminal Electron Accepting Processes Associated with the Aqueous Expressi
    (830 × 189 (95 KB)) - 18:39, 25 October 2016
  • File:Heron-Article 1. Table 1.PNG
    Table 1. Characteristics of the three main thermal technologies.
    (719 × 292 (29 KB)) - 18:09, 26 October 2016
  • File:Deeb-Article 1-Figure 1.JPG
    Figure 1. a) Structure of a perfluoroalkyl substance, PFOS, compared with b) the str
    (757 × 418 (29 KB)) - 15:17, 5 October 2016
  • File:Deeb-Article 1-Table 1.JPG
    Table 1. Physical and chemical properties of PFOS and PFOA
    (1,068 × 589 (142 KB)) - 15:20, 5 October 2016
  • File:Krug-Article 1. Table1 perchlorate rev.PNG
    Table 1. Perchlorate Physical and Chemical Properties
    (772 × 150 (15 KB)) - 14:35, 13 October 2016
  • File:Maymo-Gatell-1999-Reductive dechlorination.pdf
    ...sh, T.; Zinder, S. H., Reductive dechlorination of chlorinated ethenes and 1,2-dichloroethane by "Dehalococcoides ethenogenes" 195. Appl. Environ. Micro
    (0 × 0 (105 KB)) - 19:41, 14 October 2016
  • File:Taylor-A1-Figure 1.PNG
    Figure 1. Comp B pieces from a single partial detonation of a 155-mm round (Taylor e
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  • File:EPA MNA of Inorganics Vol. 1.pdf
    Monitored Natural Attenuation of Inorganic Contaminants in Ground Water Vol. 1
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  • File:Heron-Article 1. Figure 1.PNG
    Figure 1. Candidate Site for ISTR Application with Significant NAPL Source Material
    (614 × 357 (65 KB)) - 18:02, 26 October 2016
  • ...etion Rate Assessment. Applied NAPL Science Review (ANSR), Volume 6, Issue 1, May.</ref>. NSZD processes occur at most petroleum release sites and quant ...2009. Evaluating Natural Source Zone Depletion at Sites with LNAPL. LNAPL-1. Washington, D.C.: Interstate Technology & Regulatory Council, LNAPLs Team.
    36 KB (5,231 words) - 20:46, 27 April 2022
  • ...ompounds, PAHs, and BTEX), and emerging contaminants (such as explosives, 1,4-dioxane, endocrine disrupting compounds, pharmaceutical and personal care
    1 KB (142 words) - 20:57, 4 May 2018
  • File:Denham-Article 2-Figure 1.PNG
    Figure 1: Aqueous speciation of uranium (diagram produced with The Geochemist’s Wo
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    Figure 1: Uranium’s complicated aqueous speciation (diagram produced with The Geoc
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  • ...cals of Major Public Health Concern]</ref> are quite variable (e.g., Table 1). The behavior of metal contaminants in groundwater depends on the nature o |+Table 1. Several metal/metalloid contaminants of concern in groundwater (revised fr
    24 KB (3,517 words) - 02:56, 28 April 2022
  • File:Dortch-2009-Methods for Tier 1 modeling training range ERCDC-EL-TR0911.pdf
    Dortch, M.S., J.A. Gerald, and B.E. Johnson. 2009. Methods for Tier 1 modeling with the Training Range Environmental Evaluation and Characterizat
    (0 × 0 (1.71 MB)) - 20:21, 4 November 2016
  • File:Dortch-2012-Extension of cap for the Tier 1 and 2 approaches Training range ERDC-EL-TR-12-11.pdf
    ...E. Johnson, and J.A. Gerald. 2012. Extension of capabilities for the Tier 1 and Tier 2 Approaches within the Training Range Environmental Evaluation an
    (0 × 0 (510 KB)) - 20:45, 4 November 2016
  • File:BJohnson-Article 1-Figure 1.PNG
    Figure 1. TREECS main screen as it appears for an application involving GIS data.
    (955 × 641 (434 KB)) - 19:57, 7 November 2016
  • File:Favara-Article 1-Figure 1-Exhibit-2.jpg
    Figure 1. Comparison of linear versus holistic approach to integrating sustainabilit
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    Table 1. Median lethal concentration of NTO to Ceriodaphnia (mg/L)
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  • ...nt-based modeling software system developed for personal computers. Figure 1 is a home screen shot of the software with application to [http://www.wood. ....E. Johnson, and J.A. Gerald. 2012. Extension of capabilities for the tier 1 and tier 2 approaches within the training range environmental evaluation an
    12 KB (1,794 words) - 20:38, 27 April 2022
  • ...boundaries of the specific project phase</onlyinclude> (left side, Figure 1)<onlyinclude>. SURF provides a framework that advocates thinking holistical [[File:Favara-Article 1-Figure 1-Exhibit-2.jpg|500px|thumbnail|center|Figure 1. Comparison of linear versus holistic approach to integrating sustainabilit
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  • File:SalterBlanc Figure1 ZVI.png
    Figure 1. Overlap between areas of environmental technology related to ZVMs such as
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    Saler-Blanc-chemistry-Equation 1
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  • File:Tratnyek-2010-Prospects for Remediation-ER1457.pdf
    ...G. O’Brien Johnson, T. DeVoe, P. Lee, 2010. Prospects for Remediation of 1,2,3-Trichloropropane by Natural and Engineered Abiotic Degradation Reaction
    (0 × 0 (2.22 MB)) - 21:58, 9 December 2016
  • File:waterboards.ca.govgamadocscoc tcp123.pdf
    ...State Water Resources Control Board, 2016. Groundwater Information Sheet: 1,2,3-Trichloropropane (TCP)
    (0 × 0 (825 KB)) - 19:28, 16 December 2016
  • File:INTERIM GUIDANCE FOR INVESTIGATING POTENTIAL 1,2,3-TRICHLOROPROPANE SOURCES.pdf
    Interim Guidance for Investigating Potential 1,2,3-Trichloropropane Sources in San Gabriel Valley Area 3
    (0 × 0 (1.29 MB)) - 19:32, 16 December 2016
  • File:Maximum contaminant level recommendations for 1,2,3-trichloroporpane in drinking water.pdf
    Maximum contaminant level recommendations for 1,2,3-trichloroporpane in drinking water
    (0 × 0 (115 KB)) - 19:42, 16 December 2016
  • File:1,2,3-Trichloropropane state of science.pdf
    1,2,3-Trichloropropane State of the Science. Water Research Foundation.
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  • File:123-TRICHLOROPROPANE ERD.PDF
    Integrated Risk Information System (IRIS), 2009. 1,2,3-Trichloropropane
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  • File:Complete reductive dechlorinate of 1 2 dichloropropane by anaerobic bacteria.pdf
    Complete Reductive Dechlorination of 1,2-Dichloropropane
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  • ...ediation evaluation model for chlorinated solvents user’s manual Version 1.0. Cent. for subsurface model. support, US Environ. Prot. Agency, Ada, Okla ...r New York. [https://doi.org/10.1007/978-1-4614-6922-3_6 doi: 10.1007/978-1-4614-6922-3_6]</ref>
    22 KB (3,226 words) - 20:57, 4 May 2018
  • File:KFinneran-Article 1-Figure 1.PNG
    Fig. 1. Chemical structures of TNT, 2,4-DNT, Tetryl, DNAN, RDX, HMX, NTO and NQ.
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  • File:KFinneran-Article 1-Table 1.PNG
    Table 1. Common US military explosives, propellants and IM formulations
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  • File:OARS-2014-NTO OARS WEEL.pdf
    OARS, 2014. Workplace environmental exposure level (WEEL) 3-Nitro-1,2,4-Triazol-5-One (NTO). OARS, Cincinnati, OH.
    (0 × 0 (213 KB)) - 14:19, 5 January 2017
  • File:Dontsova-Article 1-Figure 1.PNG
    Figure 1. Common energetic materials, modified from Taylor et al. (Taylor et al., 20
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  • File:Heron EHR Fig1.jpg
    Figure 1. Electrical Resistance Heating Schematic (courtesy of TerraTherm).
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  • File:Heron ISTD Fig1.jpg
    Figure 1. In Situ Thermal Desorption (ISTD) schematic.
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    Figure 1. Generic hydrogenolysis; R = organic compound, X = halide.
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    Figure 4. Dihaloelimination of 1,2-dibromoethane to ethene.
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    Figure 1. Sketch of a complex site with multiple zones with different levels of cont
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    Table 1. Technologies applied in the different zones of a complex contaminated sit
    (902 × 292 (33 KB)) - 20:15, 17 January 2017
  • File:ATSDR-1999-Tox profile for TPH.pdf
    ...ological profile for total petroleum hydrocarbons (TPH). Accessed December 1, 2016 from
    (0 × 0 (8.31 MB)) - 17:14, 24 January 2017
  • File:Denham-Article 4-Figure 1.PNG
    Figure 1. Example of an Attenuation Conceptual Model for metals contamination
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  • File:Slater Intro Fig3.jpg
    ...oil emulsion (VOE) amendment which produces a negative change in slowness (1/velocity) relative to background conditions (after Lane et al., 2006.
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  • File:Slater Intro Table1.jpg
    Table 1. Details of borehole geophysical logging methods commonly used at remediati
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  • File:Krug-Article 2-Figure 1.PNG
    Figure 1. Example electron donor distribution during active amendment injection.
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  • File:Slater Intro Fig1.jpg
    Figure 1. Example borehole logging equipment and log panel from the U. Connecticut L
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  • File:Gamlin SBGR Figure 1.PNG
    Figure 1. Typical subgrade biogeochemical reactor (SBGR) layout.
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  • File:Gamlin SBGR Table 1.PNG
    Table 1. SBGR Construction and Cost Details
    (925 × 120 (14 KB)) - 21:54, 1 February 2017
  • ...iness Media. 523 pgs. [https://doi.org/10.1007/1-4020-3102-5 doi: 10.1007/1-4020-3102-5]</ref> ...ands. 371 pgs. [https://doi.org/10.1007/978-1-4020-4912-5 doi: 10.1007/978-1-4020-4912-5]</ref>
    14 KB (1,927 words) - 22:00, 26 April 2022
  • ...chlorinated volatile organic compounds (CVOCs) since the early 2000s (Fig. 1)<ref>ESTCP, 2002. Final Report-Impact of Landfill Closure Designs on Long-T [[File:Gamlin SBGR Figure 1.PNG|800px|thumbnail|center|Figure 1. Typical subgrade biogeochemical reactor (SBGR) layout.]]
    15 KB (2,092 words) - 02:19, 28 April 2022
  • ...r and Diet and a co-author of Environmental Investigation and Remediation: 1,4-Dioxane and Other Solvent Stabilizers (Second Edition).
    1 KB (144 words) - 16:27, 22 March 2021
  • ...these emerging contaminants at 100’s of sites. Bill frequently conducts 1,4-dioxane and PFAS training for a variety of groups, including the Intersta
    1 KB (176 words) - 14:08, 11 February 2021
  • ...ediation evaluation model for chlorinated solvents user’s manual Version 1.0. Cent. for subsurface model. support, US Environ. Prot. Agency, Ada, Okla ...r, New York. [https://doi.org/10.1007/978-1-4419-1401-9_6 doi: 10.1007/978-1-4419-1401-9_6]</ref>
    24 KB (3,388 words) - 19:46, 16 December 2019
  • ...r answering specific questions related to contaminant biodegradation (Fig. 1). [[File:Fig1_MBT_Olges.JPG|thumbnail|left|600px|Figure 1. Questions that MBTs can answer.]]
    20 KB (2,658 words) - 22:05, 26 April 2022
  • ...o‐Traps<sup>®</sup> and Stable Isotope Probing. Remediation Journal, 23(1), 7-22. [http://onlinelibrary.wiley.com/doi/10.1002/rem.21335/abstract doi: ...o the study. Such a passive sampler is deployed in a monitoring well (Fig. 1).
    17 KB (2,397 words) - 22:08, 26 April 2022
  • ...ield, extraction wells and pumps, and an effluent treatment system (Figure 1). [[File:Heron1w1Fig1.png|thumbnail|600px|Figure 1. Steam Enhanced Extraction schematic.]]
    10 KB (1,487 words) - 02:41, 28 April 2022
  • ..., and 2% contained [[wikipedia: 1,1-Dichloroethane | 1,1-dichloroethane (1,1-DCA)]]. ...solvents and their transformation products in groundwater are good (Table 1).
    24 KB (3,239 words) - 20:57, 4 May 2018
  • ...Geochemistry. Prentice-Hall, Inc. Upper Saddle River, NJ. ISBN 0-02-367412-1</ref><ref>Drever, J.I., 1997. The Geochemistry of Natural Waters: Surface a [[File:Denham Equation page 1.PNG|575 px|center]]
    17 KB (2,473 words) - 21:44, 26 April 2022
  • File:Lutes-Article1w2.Fig 1.PNG
    Figure 1. Key elements of vapor intrusion pathways
    (802 × 634 (553 KB)) - 20:31, 19 April 2018
  • ...committee that recently released a vapor intrusion mitigation standard for 1-4 family residential buildings. He has recently completed a DoD study of th
    1 KB (220 words) - 19:23, 11 July 2018
  • [[Wikipedia: 1,2,3-Trichloropropane | 1,2,3-Trichloropropane (TCP)]] is a chlorinated volatile organic compound (CV ...en Johnson, G., DeVoe, T., and Lee, P., 2010. Prospects for Remediation of 1,2,3-Trichloropropane by Natural and Engineered Abiotic Degradation Reaction
    37 KB (5,042 words) - 03:07, 28 April 2022
  • ...k. [https://doi.org/10.1007/978-3-211-99323-1 doi: 10.1007/978-3-211-99323-1]</ref>. For example, marine algae produce chloromethane as part of a chemic [[File:Freedman Article 1 Equation 1.PNG|150px|center|]]
    32 KB (4,314 words) - 21:35, 26 April 2022
  • ...tored natural attenuation of inorganic contaminants in groundwater, Volume 1 Technical basis for assessment, Edited by R.G. Ford, R.T. Wilkin, and R.W. ...processes to metals and radionuclides, Technical/Regulatory Guidance AMPR-1. [[Media:ITRC-2010-A_Decision_Framework.pdf|Report pdf]]</ref>
    14 KB (2,087 words) - 20:40, 27 April 2022
  • [[File:Krug-Article 1. Fig1 perchlorate.jpg|thumbnail|left|450px|Figure 1. Perchlorate releases and drinking water detections<ref name="ITRC2008TG" / ...perchlorate in soil and groundwater<ref>Cox, E., 2008. Final Report: Phase 1, Evaluation of alternative causes of widespread, low concentration perchlor
    18 KB (2,424 words) - 02:59, 28 April 2022
  • ...contaminated soils and groundwater: an evaluation. Engineering Geology, 60(1), 193-207. [http://dx.doi.org/10.1016/s0013-7952(00)00101-0 doi: 10.1016/S0 ...aminant removal technologies each with advantages and disadvantages (Table 1).
    26 KB (3,563 words) - 02:14, 28 April 2022
  • [[File:Chu-Article1-Figure1.jpg|475px|thumbnail|left|Figure 1. Generic oxygenase enzyme reactions with NAD(P)H serving as reductant. Scha ...effan, R.J. and Zylstra, G.J., 2012. Biodegradation of tetrahydrofuran and 1, 4-dioxane by soluble diiron monooxygenase in Pseudonocardia sp. strain ENV
    18 KB (2,328 words) - 05:07, 30 November 2021
  • ...f><ref>Borden, R.C., 2007, Anaerobic Bioremediation of Perchlorate and 1,1,1-Trichloroethane in an Emulsified Oil Barrier, Journal of Contaminant Hydrol ...oC. Figure 1 shows a typical pattern of SWQI parameters with time in the: 1) injection area; 2) near plume (25 m downgradient); 3) medium-distance plum
    22 KB (3,292 words) - 02:01, 28 April 2022
  • ...il: Pilot field tests of STAR. Environmental Science & Technology, 49(24), 1-9. [http://dx.doi.org/10.1021/acs.est.5b03177 doi: 10.1021/acs.est.5b03177] ::[[File:Gerhard Equation 1.JPG|350px]]<br />
    25 KB (3,776 words) - 23:45, 1 April 2024
  • ...eatment Impact on a CVOC Plume. Groundwater Monitoring and Remediation, 36(1), pp. 26-37. [http://onlinelibrary.wiley.com/wol1/doi/10.1111/gwmr.12148/fu [[File:Heron Combined therm Fig1.PNG|550px|thumbnail|right| Figure 1. Conceptual model of a complex site with multiple zones with different leve
    9 KB (1,229 words) - 02:39, 28 April 2022
  • ...13</sup>C. Typically occurring under natural conditions in the ratio of 99:1, the small relative differences in the ratio of <sup>13</sup>C/<sup>12</sup ...MTBE: microcosm and field evidence. Environmental Science & Technology, 39(1), 213-220. [https://doi.org/10.1021/es040420e doi: 10.1021/es040420e]</ref>
    30 KB (4,077 words) - 21:52, 26 April 2022
  • ...heat to temperatures that mobilize the contaminants for extraction (Figure 1). Typical ERH systems utilize three-phase alternating current applied to bu [[File:Heron3w1Fig1.png|600px|thumbnail|Figure 1. Electrical Resistance Heating Schematic]]
    11 KB (1,518 words) - 02:40, 28 April 2022
  • ...hydro-1,3,5-trinitro-1,3,5-triazine (RDX) and octahydro-1,3,5,7-tetranitro-1,3,5,7-tetreazocine (HMX)), nitrate esters (e.g. nitroglycerin (NG), pentaer ...ation of sites contaminated with energetic materials (No. ERDC/CRREL-TR-02-1) U.S. Armu Environmental Center SFIM-AEC-TC-CR-200170. [//www.enviro.wiki/i
    23 KB (3,047 words) - 20:11, 27 April 2022
  • ...ary ranges: Camp Edwards, Massachusetts, USA. Environmental Pollution, 129(1), 13-21. [http://dx.doi.org/10.1016/j.envpol.2003.10.002 doi: 10.1016/j.env ...ellant charges (referred to as a “blow-in-place” [BIP] operation; Fig. 1). Propellants, explosive loads, and pyrotechnic loads or tracers all contai
    31 KB (4,268 words) - 20:28, 27 April 2022
  • ...nd transformation of energetic compounds are of interest for two reasons: (1) these chemicals are toxic and can harm humans, animals and plants, and (2) [[File:Taylor-Article 1-T1.PNG|500 px|thumbnail]]
    27 KB (3,946 words) - 20:33, 27 April 2022
  • ...siness Media. 523 pgs. [https://doi.org/10.1007/1-4020-3102-5 doi: 10.1007/1-4020-3102-5]</ref> ...ands. 371 pgs. [https://doi.org/10.1007/978-1-4020-4912-5 doi: 10.1007/978-1-4020-4912-5]</ref>
    23 KB (3,215 words) - 21:58, 26 April 2022
  • ...o the environment. Journal of Molecular Microbiology and Biotechnology, 26(1-3), 5-28. [https://doi.org/10.1159/000443997 doi:10.1159/000443997]</ref> ...tic hydrocarbons (PAHs): A review. Journal of Hazardous Materials, 169(1), 1-15. http://dx.doi.org/10.1016/j.jhazmat.2009.03.137</ref><ref name="Xue2015
    31 KB (4,212 words) - 21:19, 1 April 2024
  • ...4419-7825-7. [http://dx.doi.org/10.1007/978-1-4419-7826-4 doi: 10.1007/978-1-4419-7826-4]</ref> ...oundtable), 2008. Field Sampling and Analysis Technologies Matrix, Version 1. [http://www.frtr.gov/site http://www.frtr.gov/site]</ref>. Because of the
    23 KB (3,226 words) - 02:02, 28 April 2022
  • ...taminants| metals, metalloids]], and [[Perchlorate | perchlorate]] (Tables 1, 2). |+Table 1. Biodegradation processes for perchlorate and common organic contaminants.
    42 KB (5,517 words) - 02:47, 28 April 2022
  • [[File:Mackinnon-Article 2- figure 1.PNG|300px|thumbnail|right|Figure 1. Amendment addition for biobarrier.]] *A linear treatment zone, referred to as a biobarrier (Fig. 1), treats contaminants as they flow through the biologically active zone to
    23 KB (3,119 words) - 01:53, 28 April 2022
  • ...4419-7825-7. [http://dx.doi.org/10.1007/978-1-4419-7826-4 doi: 10.1007/978-1-4419-7826-4]</ref><ref name="McGuire2016">McGuire, T., 2016. Development of ...concentrations before and after treatment<ref name="McGuire2016"/>. Figure 1 shows change in geometric means of parent compound (left panel) and change
    14 KB (1,732 words) - 02:01, 28 April 2022
  • ...9-1401-9. [http://dx.doi.org/10.1007/978-1-4419-1401-9_15 doi: 10.1007/978-1-4419-1401-9_15]</ref> ...ies: significance of low Eh reactions. Soil & Sediment Contamination, 17(1), 63-74. [http://dx.doi.org/10.1080/15320380701741438 doi: 10.1080/15320380
    28 KB (3,865 words) - 02:03, 28 April 2022
  • [[File:Newell-Article 1-Fig1r.JPG|thumbnail|left|400px|Figure 1. Hydraulic gradient (typically described in units of m/m or ft/ft) is the d ...ure and gravitational energy) toward areas of lower hydraulic head (Figure 1). The rate of change (slope) of the hydraulic head is known as the hydrauli
    34 KB (4,751 words) - 03:24, 28 April 2022
  • [[File:Heron-Article 1. Figure 1.PNG|400px|thumbnail|left|Figure 1. Candidate site for ISTR application with significant NAPL source material. ...L) has migrated to significant depth and constitutes a source zone (Figure 1)<onlyinclude>.</onlyinclude>
    14 KB (1,980 words) - 02:27, 28 April 2022
  • ...approaches for injection and distribution of aqueous amendments include: (1) active injection with continuous recirculation of groundwater; (2) semi-pa ...ia. 325 pgs. [http://dx.doi.org/10.1007/978-1-4614-2239-6 doi: 10.1007/978-1-4614-2239-6]</ref>
    15 KB (2,094 words) - 02:11, 28 April 2022
  • ...monitoring compliance, statistical tools for the project life cycle. GSMC-1. Washington, D.C.: Interstate Technology & Regulatory Council, Groundwater [[File:Adamson-Article 2-Table 1.PNG|thumbnail|right|600 px|Table 1. Monitoring data required to determine long-term attenuation rate.]]
    13 KB (1,736 words) - 22:01, 26 April 2022
  • ...ine the true long-term change in contaminant concentration over time (Fig. 1). [[File:Fig1 LTM DataVariability.jpg|thumbnail|600 px|center|Figure 1. Effect of short-term variability on evaluation of long-term contaminant at
    11 KB (1,566 words) - 22:02, 26 April 2022
  • ...from a contaminated groundwater site over an extended period of time (Fig. 1). Typically, groundwater is the medium sampled and the analyses focus on th [[File:Fig1 LTM1 Overview.jpg|thumbnail|center|850 px|Figure 1. Example of long term monitoring (LTM) data from 52 source zone monitoring
    16 KB (2,259 words) - 22:01, 26 April 2022
  • ...blic wells contained MTBE at concentrations > 0.2 µg/L, and approximately 1% of wells contained toluene at concentrations > 0.2 µg/L. [[File:Wilson 2 Figure 1. BTEX.PNG|thumbnail|right|600 px|Figure 1. Distribution of BTEX plume lengths from 604 hydrocarbon sites<ref name="Ne
    20 KB (2,913 words) - 20:40, 27 April 2022
  • *[//www.enviro.wiki/images/1/1d/ITRC-2006-Technology_Overview_of_Passive_Sampler_Technologies.pdf Techno [[File:Fig1 PassiveSampling.jpg|thumbnail|400 px|right|Figure 1. The Snap Sampler<sup>TM</sup> is an example of a passive grab sampler. The
    21 KB (2,965 words) - 22:01, 26 April 2022
  • ...ozone]] (discussed below) are the most common oxidants used in ISCO (Table 1<ref name = "Huling2006" />). However, peroxone, percarbonate, and [[wikiped [[File:Crimi 2 Table1.JPG|thumbnail|550 px|center|Table 1. Common oxidants used in ISCO (adapted from Huling and Pivetz, 2006<ref nam
    11 KB (1,488 words) - 02:03, 28 April 2022
  • ...Sites. Technical Report TR-NAVFAC-EXWC-EV-1603. [//www.enviro.wiki/images/1/1a/DON_-_2015._A_Quantitative_Decision...Tech_Rpt_TR-NAVFAC-EXWC-EV-1603.pd ...r intrusion: Fundamentals of screening, investigation, and management. PVI-1. Washington, D.C. Petroleum Vapor Intrusion Team. [//www.enviro.wiki/images
    26 KB (3,631 words) - 21:46, 26 April 2022
  • *[[1,4-Dioxane]] *[[Biodegradation - 1,4-Dioxane]]
    932 bytes (110 words) - 15:22, 16 October 2019
  • [[File:Deeb-Article 1-Figure 1.JPG|thumbnail|right|400px|Figure 1. a) Structure of a perfluoroalkyl substance, PFOS, compared with b) the str ...ntains [[wikipedia: Carbon–hydrogen bond | carbon-hydrogen bonds]] (Fig. 1).
    42 KB (5,615 words) - 14:36, 3 December 2018
  • [[File:Truex 1 Fig1.png|thumbnail|400 px|right|Figure 1. Xanthan gum concentration influence on fluid viscosity and rheology for se ...er using shear‐thinning fluids. Groundwater Monitoring & Remediation, 31(1), 50-58. [http://dx.doi.org/10.1111/j.1745-6592.2010.01319.x doi: 10.1111/j
    15 KB (2,001 words) - 02:12, 28 April 2022
  • ...ing more and [[wikipedia:Nitroguanidine |nitroguanidine (NQ)]] and 3-nitro-1,2,4-triazol-5-one (NTO) having little adsorption. While overall energetic m ...|2,4-dinitroanisole (DNAN)]], and 3-nitro-1,2,4-triazol-5-one (NTO) (Fig. 1). Liquid propellants, like [[Perchlorate | perchlorate]], are not discussed
    29 KB (4,075 words) - 20:37, 27 April 2022
  • [[File:Salter-Blanc-Chemistry-Equation 1.PNG|center|180 px]] ...hnson, R.L., 2006. Nanotechnologies for environmental cleanup. Nano today, 1(2), pp. 44-48. [http://dx.doi.org/10.1016/S1748-0132(06)70048-2 doi:10.1016
    17 KB (2,286 words) - 02:04, 28 April 2022
  • File:Newell-Article 1-Fig1r.JPG
    Figure 1. Hydraulic gradient (typically described in units of m/m or ft/ft) is the d
    (650 × 708 (139 KB)) - 01:12, 9 May 2018
  • File:ITRC-2017. Remediation of Complex Sites..pdf
    ...latory Council (ITRC), 2017. Remediation Management of Complex Sites. RMCS-1. Washington, D.C. Interstate Technology & Regulatory Council Remediation Ma
    (0 × 0 (92 KB)) - 19:46, 10 May 2018
  • ...York, NY.[https://www.springer.com/us/book/9781461469216 doi: 10.1007/978-1-4614-6922-3]</ref> ...ulatory Council Remediation Management of Complex Sites Team.[https://rmcs-1.itrcweb.org Website]</ref>
    21 KB (2,909 words) - 01:32, 28 April 2022
  • ...olvents | trichloroethene (TCE)]] and then to [[Chlorinated Solvents | cis-1,2-dichloroethene(cDCE)]] can occur at a pH as low as 5.5. However, rates o ...name= "Li2012">Li, Y.X., 2012. Adaptation of a Dechlorinating Culture, KB-1, to Acidic Environments. M.S. Thesis, University of Toronto, Toronto, ON, C
    20 KB (2,768 words) - 02:00, 28 April 2022
  • File:2012-Li yixuan-MASc thesis Adaptation of KB-1 to Acidic Environments.pdf
    Li, J.J., 2012. Adaptation of a Dechlorinating Culture, KB-1, to Acidic Environments. M.S. Thesis, University of Toronto, Toronto, ON,
    (0 × 0 (1.31 MB)) - 14:43, 18 July 2018
  • File:2008-ITRC-EACO Framework General.pdf
    ...gulatory Council), 2008. Enhanced Attenuation: Chlorinated Organics, EACO-1. Washington, D.C.: Interstate Technology & Regulatory Council, Enhanced Att
    (0 × 0 (90 KB)) - 13:09, 20 July 2018
  • File:2008-ITRC-EACO 1.pdf
    ...gulatory Council), 2008. Enhanced Attenuation: Chlorinated Organics, EACO-1. Washington, D.C.: Interstate Technology & Regulatory Council, Enhanced Att
    (0 × 0 (1.89 MB)) - 14:24, 20 July 2018
  • ...Use of the mass flux/discharge approach combines three different factors: 1) contaminant concentration in groundwater; 2) groundwater flow rate through ...on: Evaluation at two field sites. Journal of Contaminant Hydrology, 102(1-2), pp.140-153. [https://doi.org/10.1016/j.jconhyd.2008.05.008 doi: 10.1016
    48 KB (7,175 words) - 01:50, 2 May 2022
  • *This is your recommendation to reader of the 1 or 2 best references for more info.
    9 KB (1,351 words) - 21:23, 14 January 2019
  • ...>, Ca<sup>2+</sup>, Mg<sup>2+</sup>) gradually acidifying the soil. Figure 1 shows soil pH in the contiguous United States. ...Soil pH]). Alkaline soils (pH>7.4) are shown in blue. Acidic soils (pH<6.1) are shown in brown.]]
    33 KB (5,378 words) - 01:57, 28 April 2022
  • File:Kamath1w2 Fig1.png
    Figure 1: Soils undergoing treatment at a Landfarming Facility
    (477 × 313 (318 KB)) - 18:36, 9 November 2018
  • [[File:Borden3w2_Fig1.PNG|thumbnail| Figure 1. Photo-micrograph of EVO (0.7 µm median diameter). White scale bar 25 µm ...ping and also improves transport through typical aquifer materials (Figure 1). Some product vendors provide more concentrated EVO products containing o
    32 KB (4,599 words) - 01:58, 28 April 2022
  • [[File:PFASupdate2019Fig1.png | thumbnail | left | 700 px |Figure 1. PFAS families of compounds<ref name="OECD2015">Organisation for Economic C [[File:Deeb-Article 1-Figure 1.JPG|thumbnail|right|400 px|Figure 2. a) Structure of a perfluoroalkyl subst
    36 KB (4,894 words) - 00:45, 28 April 2022
  • File:Falta1w2 Fig1.png
    Figure 1: Spread of CVOCs in the subsurface
    (894 × 486 (163 KB)) - 16:41, 5 November 2019
  • File:Falta1w2 Fig3.png
    Figure 3: Concentration profiles in fractures at 1, 49, 51 and 100 years.
    (875 × 656 (68 KB)) - 16:44, 5 November 2019
  • File:Allen-King1w2 Fig1a.png
    Figure 1. Batch reactor experiments (a, top) to generate points on a sorption isothe
    (391 × 287 (202 KB)) - 21:44, 18 February 2019
  • ...focused on contaminants of concern to the Department of Defense, including 1,2-dibromoethane (EDB), N-nitrosodimethylamine (NDMA), perchlorate, methyl t
    1,023 bytes (126 words) - 20:36, 14 February 2019
  • [[File:Hatzinger1w2 Fig1.png|thumb|Figure 1. NDMA chemical structure]] ...h [[wikipedia:Unsymmetrical dimethylhydrazine | 1,1-Dimethylhydrazine]] (1,1-DMH or UDMH). It is also frequently reported at ng/L concentrations in wate
    12 KB (1,634 words) - 02:58, 28 April 2022
  • ...neers, Public Works Technical Bulletin 200-1-95. [//www.enviro.wiki/images/1/18/2011-ACOE-pwtb_200_1_95.pdf Report.pdf]</ref> ...ing soils from contaminated ammunition production sites. Error bars are ± 1 standard deviation. IVSP = in-vessel static pile; MAIV = mechanically agita
    13 KB (1,849 words) - 20:28, 27 April 2022
  • |+<div style="text-align: center;"> Table 1. Observed Batch Kinetics for the Alkaline Destruction of Secondary Explosi !Pseudo 1<sup>st</sup> Order<br />Decay Constant<br />(min<sup>-1</sup>)(10<sup>-3</sup>)
    19 KB (2,643 words) - 20:27, 27 April 2022
  • ...oethane (1,1-DCA)]], [[Wikipedia: 1,2-Dichloroethane | 1,2-dichloroethane (1,2-DCA)]], [[Wikipedia: Chloroform | chloroform]], and [[Wikipedia: Carbon t ...w to ensure the contaminant plume is intercepted for treatment (See Figure 1) so contaminant flow beneath, around, or above the treatment system does no
    20 KB (2,715 words) - 02:05, 28 April 2022
  • File:Johnson1w2 Fig1.png
    Figure 1: RDX concentrations in leachate by rain event for meso-scale lysimeters con
    (803 × 474 (26 KB)) - 22:00, 30 January 2019
  • File:2011-ACOE-pwtb 200 1 95.pdf
    ...Learned, U.S. Army Corps of Engineers, Public Works Technical Bulletin 200-1-95.
    (0 × 0 (1.06 MB)) - 15:05, 1 February 2019
  • File:Craig1w2 Fig1.png
    ...ing soils from contaminated ammunition production sites. Error bars are ± 1 standard deviation. IVSP = in-vessel static pile; MAIV = mechanically agita
    (1,141 × 566 (38 KB)) - 16:28, 5 February 2019
  • File:Hatzinger1w2 Fig1.png
    Figure 1. NDMA chemical structure
    (642 × 420 (19 KB)) - 17:23, 11 February 2019
  • <div id="mp-tfa" style="padding:0.0em 0.5em;">[[File:Edwards Article 1-figure 1.PNG|200 px|left|]]<dailyfeaturedpage> </dailyfeaturedpage><br> ...opane|Summary of anticipated, primary reaction pathways for degradation of 1,2,3-Trichloropropane (TCP). TCP is a man-made chemical that was used in the
    12 KB (1,567 words) - 17:50, 10 May 2019
  • ..., as the aquifer is remediated and contaminant concentrations drop below 0.1 mg/L, non-linear sorption has a much more pronounced impact, slowing aquife ...io of carbonaceous material. The sorption coefficient (per gram carbon) is 1-2 orders of magnitude greater for more condensed carbonaceous matter, as in
    15 KB (2,236 words) - 21:45, 26 April 2022
  • File:Liu1w2 Fig1.png
    Figure 1. Schematic of Darcy’s Law flow experiment.
    (929 × 330 (12 KB)) - 18:09, 5 March 2019
  • File:Liu1w2 Fig8.png
    ...les at GEMS. The slug test profile is located 2 m northwest of DPP profile 1, and 2 m southeast of DPP profile 2. (Butler, 2005)
    (774 × 741 (39 KB)) - 18:34, 5 March 2019
  • *[[1,4-Dioxane]]
    367 bytes (43 words) - 14:12, 23 April 2019
  • *[[1,4-Dioxane]] *[[Biodegradation - 1,4-Dioxane]]
    1 KB (124 words) - 15:21, 16 October 2019
  • File:2017-USEPA- Technical Fact Sheet.pdf
    US EPA, 2017. Technical Fact Sheet – 1,4-Dioxane. Publication number: EPA 505-F-17-001
    (0 × 0 (126 KB)) - 15:51, 25 April 2019
  • 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 Mic
    (0 × 0 (829 KB)) - 20:11, 25 April 2019
  • File:2016-Knappe-Occurrence of 1,4-dioxane in the Cape Fear River.pdf
    ...Cape Fear River watershed and effectiveness of water treatment options for 1,4-dioxane control. Water Resources Research Institute of The University of
    (0 × 0 (3.43 MB)) - 21:11, 25 April 2019
  • 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
    (0 × 0 (6.82 MB)) - 19:17, 26 April 2019
  • 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
    (0 × 0 (48 KB)) - 20:48, 26 April 2019
  • 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 St
    (0 × 0 (606 KB)) - 21:08, 26 April 2019
  • 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 M
    (0 × 0 (3.47 MB)) - 20:58, 1 May 2019
  • File:2018-Evans-ER-201324 Cost & Performance Report.pdf
    .... Crimi, and N. Ruiz, 2018. Sustained in situ chemical oxidation (ISCO) of 1,4-dioxane and chlorinated VOCs using slow-release chemical oxidant cylinder
    (0 × 0 (2.02 MB)) - 16:39, 2 May 2019
  • 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
    (0 × 0 (11.28 MB)) - 18:07, 2 May 2019
  • ...soil or groundwater, through the soil and into an overlying building (Fig. 1). [[File:Weaver1w2fig1.png|thumb|right|500 px|Figure 1 Typical conceptual models for vapor intrusion from a release of petroleum h
    20 KB (2,842 words) - 21:47, 26 April 2022
  • ...d Adams, E.E., 1992. Field study of dispersion in a heterogeneous aquifer: 1. Overview and site description. Water Resources Research, 28(12), pp.3281-3 ...Springer, Dordrecht. [https://doi.org/10.1007/1-4020-3102-5_2 doi: 10.1007/1-4020-3102-5_2]</ref>
    54 KB (8,229 words) - 21:52, 26 April 2022
  • File:Weaver1w2fig1.png
    Figure 1 Typical conceptual models for vapor intrusion from a release of petroleum h
    (1,456 × 563 (598 KB)) - 13:31, 5 April 2019
  • ...tial pathways of metal(loid) release on shooting ranges is shown in Figure 1. Upon exposure to the atmosphere, initially zero-valent metal(loid)s are ox [[File:Barker1w2 Fig1.png|thumb|500 px|left|Figure 1. Simplified schematic of shooting ranges with berm-style backstops that typ
    32 KB (4,737 words) - 01:53, 2 May 2022

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