Difference between revisions of "Main Page"
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{| class="MainPageBG" style="margin: auto; width: 95%; border-spacing:0px;" | {| class="MainPageBG" style="margin: auto; width: 95%; border-spacing:0px;" | ||
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| − | | style="width: | + | | style="width:55%;" |<center><span style="font-size:175%; line-height: 0.2em; vertical-align:top;"><big><span style="color:#008566">Welcome to '''ENVIRO'''</span> <span style="color:#762a87">'''Wiki'''</span></big></span><br /><br /><br /><span style="font-size:150%; color:#008566; line-height: 0.2em; vertical-align:top;"> Peer Reviewed. Accessible. Written By Experts</span></center> |
| − | | style="width: | + | | style="width:40%;" |<center><span style="font-size:110%; vertical-align:top;"> ''Developed and brought to you by '' <br>[[File:MainLogo-serdp-estcp.png|link=https://www.serdp-estcp.org |frameless|center|350px]]</span>''<span style="font-size:140%; vertical-align:top;">Your Environmental Information Gateway</span>'' |
</center> | </center> | ||
|- | |- | ||
| − | |<span style="line-height: 0.3em;"> The goal of ENVIRO | + | |<span style="width:55%; line-height: 0.3em;"> The goal of ENVIRO Wiki is to make scientific and engineering research results more accessible to environmental professionals, facilitating the permitting, design and implementation of environmental projects. Articles are written and edited by invited experts (see [[Contributors]]) to summarize current knowledge for the target audience on an array of topics, with cross-linked references to reports and technical literature. </span> |
|<center><span style="font-size:130%"><br />[[#Table of Contents|See Table of Contents]]</span> | |<center><span style="font-size:130%"><br />[[#Table of Contents|See Table of Contents]]</span> | ||
</center> | </center> | ||
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{| role="presentation" id="mp-upper" style="margin: auto; width: 95%; margin-top:3px; border-spacing: 0px; " | {| role="presentation" id="mp-upper" style="margin: auto; width: 95%; margin-top:3px; border-spacing: 0px; " | ||
<!-- TODAY'S FEATURED ARTICLE --> | <!-- TODAY'S FEATURED ARTICLE --> | ||
| − | | id="mp-left" class="MainPageBG" style="width: | + | | id="mp-left" class="MainPageBG" style="width:55%; padding:0; vertical-align:top; color:#000;" | |
| − | <h2 id="mp-tfa-h2" style="margin:0.5em; background:#cef2e0; font-family:inherit; font-size:120%; font-weight:bold; border:1px solid #a3bfb1; color:#000; padding:0.2em 0.4em;"> Featured article: PFAS | + | <h2 id="mp-tfa-h2" style="margin:0.5em; background:#cef2e0; font-family:inherit; font-size:120%; font-weight:bold; border:1px solid #a3bfb1; color:#000; padding:0.2em 0.4em;"> Featured article: PFAS Toxicology and Risk Assessment</h2> |
| − | <div id="mp-tfa" style="padding:0.0em | + | <div id="mp-tfa" style="padding:0.0em 1.0em;">[[File:ConderFig1.png|400px|left|link=PFAS Toxicology and Risk Assessment]]<dailyfeaturedpage></dailyfeaturedpage> |
| − | [[PFAS | + | |
| + | [[PFAS Toxicology and Risk Assessment|(Full article...)]] </div> | ||
| style="border:1px solid transparent;" | | | style="border:1px solid transparent;" | | ||
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<slideshow sequence="random" transition="fade" refresh="7500"> | <slideshow sequence="random" transition="fade" refresh="7500"> | ||
| − | [[File:WH Picture1.JPG|thumb|center|x350px|link= | + | [[File:WH Picture1.JPG|thumb|center|x350px|link=Matrix Diffusion|Molecular diffusion slowly transports solutes into clay-rich, lower permeability zones]] |
[[File:WH Picture2.JPG|thumb|center|x350px|link=Subgrade Biogeochemical Reactor (SBGR)|Typical subgrade biogeochemical reactor (SBGR) layout. The SBGR is an in situ remediation technology for treatment of contaminated source areas and groundwater plume hot spots<br/>]] | [[File:WH Picture2.JPG|thumb|center|x350px|link=Subgrade Biogeochemical Reactor (SBGR)|Typical subgrade biogeochemical reactor (SBGR) layout. The SBGR is an in situ remediation technology for treatment of contaminated source areas and groundwater plume hot spots<br/>]] | ||
[[File:WH Picture3.JPG|thumb|center|x350px|link=Direct Push Logging|An Hydraulic Profiling Tool (HPT) log with electrical conductivity (EC) on left, injection pressure in middle, and flow rate on the right]] | [[File:WH Picture3.JPG|thumb|center|x350px|link=Direct Push Logging|An Hydraulic Profiling Tool (HPT) log with electrical conductivity (EC) on left, injection pressure in middle, and flow rate on the right]] | ||
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[[File:WH Picture20.JPG|thumb|center|x350px|link=Mass_Flux_and_Mass_Discharge|Data input screen for ESTCP Mass Flux Toolkit]] | [[File:WH Picture20.JPG|thumb|center|x350px|link=Mass_Flux_and_Mass_Discharge|Data input screen for ESTCP Mass Flux Toolkit]] | ||
[[File:WH Picture21.JPG|thumb|center|x350px|link=Bioremediation_-_Anaerobic_Design_Considerations|Amendment addition for biobarrier]] | [[File:WH Picture21.JPG|thumb|center|x350px|link=Bioremediation_-_Anaerobic_Design_Considerations|Amendment addition for biobarrier]] | ||
| − | [[File:WH Picture22.JPG|thumb|center|x350px|link= | + | [[File:WH Picture22.JPG|thumb|center|x350px|link=Thermal Conduction Heating (TCH)|Thermal Remediation - Desorption schematic]] |
[[File:WH_Picture23.jpg|thumb|center|x350px|link=Contaminated_Sediments_-_Introduction |Key exposure pathways for human health risk from contaminated sediments]] | [[File:WH_Picture23.jpg|thumb|center|x350px|link=Contaminated_Sediments_-_Introduction |Key exposure pathways for human health risk from contaminated sediments]] | ||
[[File:WH_Picture24.jpg|thumb|center|x350px|link=Perfluoroalkyl_and_Polyfluoroalkyl_Substances_(PFAS)| The PFAS family of compounds]] | [[File:WH_Picture24.jpg|thumb|center|x350px|link=Perfluoroalkyl_and_Polyfluoroalkyl_Substances_(PFAS)| The PFAS family of compounds]] | ||
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*[[Vapor Intrusion (VI)]] | *[[Vapor Intrusion (VI)]] | ||
**[[Vapor Intrusion - Separation Distances from Petroleum Sources]] | **[[Vapor Intrusion - Separation Distances from Petroleum Sources]] | ||
| − | **[[Vapor Intrusion – Sewers and Utility Tunnels as Preferential Pathways]] | + | **[[Vapor Intrusion – Sewers and Utility Tunnels as Preferential Pathways|Vapor Intrusion - Sewers and Utility Tunnels as Preferential Pathways]] |
| + | **[[Assessing Vapor Intrusion (VI) Impacts in Neighborhoods with Groundwater Contaminated by Chlorinated Volatile Organic Chemicals (CVOCs)|Vapor Intrusion - Assessing VI Impacts in Neighborhoods with Groundwater Contaminated CVOCs]] | ||
<u>'''[[Characterization, Assessment & Monitoring]]'''</u> | <u>'''[[Characterization, Assessment & Monitoring]]'''</u> | ||
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*[[Compound Specific Isotope Analysis (CSIA)|Compound Specific Isotope Analysis (CSIA)]] | *[[Compound Specific Isotope Analysis (CSIA)|Compound Specific Isotope Analysis (CSIA)]] | ||
*[[Direct Push (DP) Technology]] | *[[Direct Push (DP) Technology]] | ||
| − | **[[Direct Push Logging | | + | **[[Direct Push Logging |Direct Push Logging]] |
| − | **[[Direct Push Sampling | | + | **[[Direct Push Sampling |Direct Push Sampling]] |
*[[Geophysical Methods | Geophysical Methods]] | *[[Geophysical Methods | Geophysical Methods]] | ||
| − | **[[Geophysical Methods - Case Studies | Case Studies]] | + | **[[Geophysical Methods - Case Studies |Case Studies]] |
| + | **[[Hydrogeophysical Methods for Characterization and Monitoring of Groundwater-Surface Water Exchanges]] | ||
*[[Groundwater Sampling - No-Purge/Passive]] | *[[Groundwater Sampling - No-Purge/Passive]] | ||
*[[Long-Term Monitoring (LTM)|Long-Term Monitoring (LTM)]] | *[[Long-Term Monitoring (LTM)|Long-Term Monitoring (LTM)]] | ||
| − | **[[Long-Term Monitoring (LTM) - Data Analysis | LTM Data Analysis]] | + | **[[Long-Term Monitoring (LTM) - Data Analysis |LTM Data Analysis]] |
| − | **[[Long-Term Monitoring (LTM) - Data Variability | LTM Data Variability]] | + | **[[Long-Term Monitoring (LTM) - Data Variability |LTM Data Variability]] |
| − | *[[Molecular Biological Tools - MBTs | Molecular Biological Tools (MBTs)]] | + | *[[Molecular Biological Tools - MBTs |Molecular Biological Tools (MBTs)]] |
**[[Metagenomics]] | **[[Metagenomics]] | ||
| + | **[[Proteomics and Proteogenomics]] | ||
**[[Quantitative Polymerase Chain Reaction (qPCR)]] | **[[Quantitative Polymerase Chain Reaction (qPCR)]] | ||
**[[Stable Isotope Probing (SIP)]] | **[[Stable Isotope Probing (SIP)]] | ||
| − | *[[Natural Attenuation in Source Zone and Groundwater Plume - Bemidji Crude Oil Spill | Natural Attenuation in Source Zone and Groundwater Plume -<br /> Bemidji Crude Oil Spill]] | + | *[[Natural Attenuation in Source Zone and Groundwater Plume - Bemidji Crude Oil Spill |Natural Attenuation in Source Zone and Groundwater Plume -<br />Bemidji Crude Oil Spill]] |
| + | *[[OPTically-based In-situ Characterization System (OPTICS)]] | ||
| − | <u>'''[[Climate Change]]'''</u> | + | <u>'''[[Climate Change Primer | Climate Change]]'''</u> |
| − | *[[Climate Change | + | *[[Climate Change Effects on Wildlife]] |
| + | *[[Downscaled High Resolution Datasets for Climate Change Projections]] | ||
| + | *[[Infrastructure Resilience]] | ||
| + | *[[Predicting Species Responses to Climate Change with Population Models]] | ||
| + | *[[Restoration of Ecological Function in Terrestrial Systems Impacted by Invasive Species]] | ||
<u>'''[[Coastal and Estuarine Ecology]]'''</u> | <u>'''[[Coastal and Estuarine Ecology]]'''</u> | ||
*[[Phytoplankton (Algae) Blooms]] | *[[Phytoplankton (Algae) Blooms]] | ||
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<u>'''[[Contaminated Sediments - Introduction | Contaminated Sediments]]'''</u> | <u>'''[[Contaminated Sediments - Introduction | Contaminated Sediments]]'''</u> | ||
| + | *[[Contaminated Sediment Risk Assessment]] | ||
*[[In Situ Treatment of Contaminated Sediments with Activated Carbon]] | *[[In Situ Treatment of Contaminated Sediments with Activated Carbon]] | ||
| + | *[[Mercury in Sediments]] | ||
| + | *[[Passive Sampling of Sediments]] | ||
| + | *[[Sediment Capping]] | ||
| + | *[[Sediment Porewater Dialysis Passive Samplers for Inorganics (Peepers)]] | ||
<u>'''[[Light Non-Aqueous Phase Liquids (LNAPLs)]]'''</u> | <u>'''[[Light Non-Aqueous Phase Liquids (LNAPLs)]]'''</u> | ||
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<u>'''[[Munitions Constituents]]'''</u> | <u>'''[[Munitions Constituents]]'''</u> | ||
| − | *[[Munitions Constituents - Alkaline Degradation| Alkaline Degradation]] | + | *[[Munitions Constituents - Abiotic Reduction|Abiotic Reduction]] |
| − | *[[Munitions Constituents - Composting| Composting]] | + | *[[Munitions Constituents - Alkaline Degradation|Alkaline Degradation]] |
| − | *[[Munitions Constituents - Deposition | Deposition]] | + | **[[Pyrogenic Carbonaceous Matter Enhanced Alkaline Hydrolysis]] |
| − | *[[Munitions Constituents - Dissolution | Dissolution]] | + | *[[Munitions Constituents - Composting|Composting]] |
| − | *[[ | + | *[[Munitions Constituents - Deposition |Deposition]] |
| + | *[[Munitions Constituents - Dissolution |Dissolution]] | ||
| + | *[[Munitions Constituents - Electrochemical Treatment|Electrochemical Treatment]] | ||
*[[Metal(loid)s - Small Arms Ranges]] | *[[Metal(loid)s - Small Arms Ranges]] | ||
| − | *[[Munitions Constituents - Soil Sampling | Soil Sampling]] | + | *[[Passive Sampling of Munitions Constituents|Passive Sampling]] |
| − | *[[Munitions Constituents - Sorption | Sorption]] | + | *[[Munitions Constituents – Photolysis |Photolysis]] |
| − | *[[Munitions Constituents - IM Toxicology | Toxicology]] | + | *[[Remediation of Stormwater Runoff Contaminated by Munition Constituents |Remediation of Stormwater Runoff ]] |
| + | *[[Munitions Constituents – Sample Extraction and Analytical Techniques|Sample Extraction and Analytical Techniques]] | ||
| + | *[[Munitions Constituents - Soil Sampling |Soil Sampling]] | ||
| + | *[[Munitions Constituents - Sorption |Sorption]] | ||
| + | *[[Munitions Constituents - IM Toxicology |Toxicology]] | ||
*[[Munitions Constituents- TREECS™ Fate and Risk Modeling|TREECS™]] | *[[Munitions Constituents- TREECS™ Fate and Risk Modeling|TREECS™]] | ||
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*[[Monitored Natural Attenuation (MNA) of Chlorinated Solvents| MNA of Chlorinated Solvents]] | *[[Monitored Natural Attenuation (MNA) of Chlorinated Solvents| MNA of Chlorinated Solvents]] | ||
| + | *[[Monitored Natural Attenuation (MNA) of Fuels| MNA of Fuels]] | ||
*[[Monitored Natural Attenuation (MNA) of Metal and Metalloids| MNA of Metals and Metalloids]] | *[[Monitored Natural Attenuation (MNA) of Metal and Metalloids| MNA of Metals and Metalloids]] | ||
| − | |||
*[[Natural Source Zone Depletion (NSZD)]] | *[[Natural Source Zone Depletion (NSZD)]] | ||
*[[Monitored Natural Attenuation - Transitioning from Active Remedies| Transitioning from Active Remedies]] | *[[Monitored Natural Attenuation - Transitioning from Active Remedies| Transitioning from Active Remedies]] | ||
| + | <u>'''[[Perfluoroalkyl and Polyfluoroalkyl Substances (PFAS)]]'''</u> | ||
| + | |||
| + | *[[Hydrothermal Alkaline Treatment (HALT)]] | ||
| + | *[[PFAS Ex Situ Water Treatment]] | ||
| + | **[[PFAS Treatment by Anion Exchange]] | ||
| + | *[[PFAS Monitored Retention (PMR) and PFAS Enhanced Retention (PER)]] | ||
| + | *[[PFAS Soil Remediation Technologies]] | ||
| + | *[[PFAS Sources]] | ||
| + | *[[PFAS Toxicology and Risk Assessment]] | ||
| + | *[[PFAS Transport and Fate]] | ||
| + | *[[PFAS Treatment by Electrical Discharge Plasma]] | ||
| + | *[[Photoactivated Reductive Defluorination - PFAS Destruction | Photoactivated Reductive Defluorination]] | ||
| + | *[[Reverse Osmosis and Nanofiltration Membrane Filtration Systems for PFAS Removal]] | ||
| + | *[[Transition of Aqueous Film Forming Foam (AFFF) Fire Suppression Infrastructure Impacted by Per and Polyfluoroalkyl Substances (PFAS)| Transition of Aqueous Film Forming Foam Fire Suppression Infrastructure Impacted by Per and Polyfluoroalkyl Substances]] | ||
| + | |||
| + | | style="width:33%; vertical-align:top; " | | ||
<u>'''[[Regulatory Issues and Site Management]]'''</u> | <u>'''[[Regulatory Issues and Site Management]]'''</u> | ||
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*[[Sustainable Remediation]] | *[[Sustainable Remediation]] | ||
| − | + | <u>'''[[Remediation Technologies]]'''</u> | |
*[[Amendment Distribution in Low Conductivity Materials]] | *[[Amendment Distribution in Low Conductivity Materials]] | ||
*[[Bioremediation - Anaerobic|Anaerobic Bioremediation]] | *[[Bioremediation - Anaerobic|Anaerobic Bioremediation]] | ||
| Line 180: | Line 208: | ||
*[[Stream Restoration]] | *[[Stream Restoration]] | ||
*[[Subgrade Biogeochemical Reactor (SBGR)]] | *[[Subgrade Biogeochemical Reactor (SBGR)]] | ||
| + | *[[Supercritical Water Oxidation (SCWO)]] | ||
*[[Thermal Remediation]] | *[[Thermal Remediation]] | ||
**[[Thermal Remediation - Combined Remedies | Combined Remedies]] | **[[Thermal Remediation - Combined Remedies | Combined Remedies]] | ||
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<u>'''[[Soil & Groundwater Contaminants]]'''</u> | <u>'''[[Soil & Groundwater Contaminants]]'''</u> | ||
| + | *[[1,2,3-Trichloropropane]] | ||
*[[1,4-Dioxane]] | *[[1,4-Dioxane]] | ||
*[[Chlorinated Solvents]] | *[[Chlorinated Solvents]] | ||
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*[[N-nitrosodimethylamine (NDMA)]] | *[[N-nitrosodimethylamine (NDMA)]] | ||
*[[Perchlorate|Perchlorate]] | *[[Perchlorate|Perchlorate]] | ||
| − | |||
| − | |||
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*[[Petroleum Hydrocarbons (PHCs)]] | *[[Petroleum Hydrocarbons (PHCs)]] | ||
*[[Polycyclic Aromatic Hydrocarbons (PAHs)]] | *[[Polycyclic Aromatic Hydrocarbons (PAHs)]] | ||
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|} | |} | ||
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Latest revision as of 12:33, 24 November 2025
Peer Reviewed. Accessible. Written By Experts |
Your Environmental Information Gateway |
| The goal of ENVIRO Wiki is to make scientific and engineering research results more accessible to environmental professionals, facilitating the permitting, design and implementation of environmental projects. Articles are written and edited by invited experts (see Contributors) to summarize current knowledge for the target audience on an array of topics, with cross-linked references to reports and technical literature. | See Table of Contents |
Featured article: PFAS Toxicology and Risk AssessmentThe use of aqueous film-forming foam (AFFF) can release PFAS into the environment during fire training, an emergency response, or as a result of leaks or spills from AFFF systems. Following AFFF releases, perfluoroalkyl acids (PFAAs), particularly PFOS, PFOA, and PFHxS, tend to be the most commonly detected PFAS in environmental media. PFAAs are relatively water-soluble and mobile in the environment, are not volatile (i.e., they do not evaporate to the atmosphere readily) and can sorb to the organic carbon present in soil or sediment. PFAS can bioaccumulate in animals and plants, and persistent PFAS, such as PFCAs and PFSAs, do not undergo significant biodegradation or biotransformation once present in a biological system. The human health issues associated with PFAS AFFF sites are primarily the exposure pathways associated with drinking water ingestion and dietary intake of PFAS. The characterization of toxicological effects in human health risk assessments is based on toxicological studies of mammalian exposures to per- and polyfluoroalkyl substances (PFAS), primarily studies involving perfluorooctanesulfonic acid (PFOS) and perfluorooctanoic acid (PFOA). The most sensitive noncancer adverse effects involve the liver and kidney, immune system, and various developmental and reproductive endpoints. Only PFOS and PFOA (and their derivatives) have sufficient data for USEPA to characterize as Likely to Be Carcinogenic to Humans via the oral route of exposure. Epidemiological studies provided evidence of bladder, prostate, liver, kidney, and breast cancers in humans related to PFOS exposure, as well as kidney and testicular cancer in humans and limited evidence of breast cancer related to PFOA exposure.
(Full article...)
|
Enviro Wiki Highlights |