Difference between revisions of "Remediation Technologies"

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Remediation technologies include both traditional remediation approaches and emerging technologies. Common technologies employ a range of abiotic chemical treatments, biologically based remediation, and thermal approaches.  Also included in this category are technologies for extracting contaminants from the subsurface and delivering treatment amendments.  
 
Remediation technologies include both traditional remediation approaches and emerging technologies. Common technologies employ a range of abiotic chemical treatments, biologically based remediation, and thermal approaches.  Also included in this category are technologies for extracting contaminants from the subsurface and delivering treatment amendments.  
 
==Related Articles==
 
==Related Articles==
{| style="width:100%; vertical-align:top; "
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{| style="width:100%; vertical-align:top;"
 
|
 
|
*[[Bioremediation - Anaerobic]]
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*[[Amendment Distribution in Low Conductivity Materials]]
**[[Bioremediation - Anaerobic Design Considerations]]
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*[[Bioremediation - Anaerobic | Anaerobic Bioremediation]]
**[[Bioremediation - Anaerobic Secondary Water Quality Impacts]]
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**[[Bioremediation - Anaerobic Design Considerations | Design Considerations]]
*[[Biodegradation - Cometabolic]]
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**[[Design Tool - Base Addition for ERD]]
*[[Injection Techniques for Liquid Amendments]]
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**[[Emulsified Vegetable Oil (EVO) for Anaerobic Bioremediation]]
*[[Injection Techniques - Viscosity Modification]]
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**[[Low pH Inhibition of Reductive Dechlorination]]
 +
**[[Bioremediation - Anaerobic Secondary Water Quality Impacts | Secondary Water Quality Impacts]]
 
*[[Chemical Oxidation (In Situ - ISCO)|In Situ Chemical Oxidation (ISCO)]]
 
*[[Chemical Oxidation (In Situ - ISCO)|In Situ Chemical Oxidation (ISCO)]]
 
**[[Chemical Oxidation Design Considerations(In Situ - ISCO)]]
 
**[[Chemical Oxidation Design Considerations(In Situ - ISCO)]]
 
**[[Chemical Oxidation Oxidant Selection (In Situ - ISCO)]]
 
**[[Chemical Oxidation Oxidant Selection (In Situ - ISCO)]]
 
*[[Chemical Reduction (In Situ - ISCR)|In Situ Chemical Reduction (ISCR)]]
 
*[[Chemical Reduction (In Situ - ISCR)|In Situ Chemical Reduction (ISCR)]]
*[[Monitored Natural Attenuation (MNA)]]
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**[[Zerovalent Iron (ZVI) (Chemical Reduction - ISCR)]]
**[[Monitored Natural Attenuation (MNA) of Chlorinated Solvents| MNA of Chlorinated Solvents]]
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**[[Zerovalent Iron Permeable Reactive Barriers]]
**[[Monitored Natural Attenuation (MNA) of Metal and Metalloids | MNA of Metals and Metalloid]]
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*[[In Situ Groundwater Treatment with Activated Carbon]]
**[[Monitored Natural Attenuation (MNA) of Fuels| MNA of Petroleum Hydrocarbons and Fuel Components]]
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*[[Injection Techniques for Liquid Amendments]]
**[[Natural Source Zone Depletion (NSZD)]]
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| style="width:50%; vertical-align:top;" |<br />
|style="width:50%; vertical-align:top; "|
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 +
*[[Injection Techniques - Viscosity Modification]]
 +
*[[Landfarming]]
 +
*[[LNAPL Remediation Technologies]]
 
*[[Metal and Metalloids - Remediation]]
 
*[[Metal and Metalloids - Remediation]]
*[[Perchlorate]]
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*[[Remediation Performance Assessment at Chlorinated Solvent Sites]]
 
*[[Soil Vapor Extraction (SVE)]]
 
*[[Soil Vapor Extraction (SVE)]]
 +
*[[Stream Restoration]]
 +
*[[Subgrade Biogeochemical Reactor (SBGR)]]
 +
*[[Supercritical Water Oxidation (SCWO)]]
 
*[[Thermal Remediation]]
 
*[[Thermal Remediation]]
**[[Thermal Remediation - Combined Remedies]]
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**[[Thermal Remediation - Combined Remedies | Combined Remedies]]
**[[Thermal Remediation - Electrical Resistance Heating]]
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**[[Thermal Remediation - Electrical Resistance Heating | Electrical Resistance Heating]]
**[[Thermal Remediation - Desorption]]
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**[[Thermal Remediation - Smoldering | Smoldering]]
**[[Thermal Remediation - Smoldering]]
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**[[Thermal Remediation - Steam | Steam Enhanced Extraction]]
**[[Thermal Remediation - Steam]]
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**[[Thermal Conduction Heating (TCH)|Thermal Conduction Heating]]
*[[Zerovalent Iron (ZVI) (Chemical Reduction - ISCR)]]
 
 
|}
 
|}
  
 
==Additional Documents==
 
==Additional Documents==
*[[Media:AFCEE_Biov_1996.pdf|Bioventing Performance and Cost Results from Multiple Air Force Test Sites]]
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*[[Media:EPA_Bioventing_Principles_and_Practice.pdf|Bioventing Principles and Practice EPA]]
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*[//www.enviro.wiki/images/8/86/AFCEE_Biov_1996.pdf Bioventing Performance and Cost Results from Multiple Air Force Test Sites]
*[[Media:AFCEE_BioSlurper_Initiative_1997.pdf|Engineering Evaluation and Cost Analysis for Bioslurper Initiative]]
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*[//www.enviro.wiki/images/b/ba/EPA_Bioventing_Principles_and_Practice.pdf Bioventing Principles and Practice EPA]
*[[Media:Epa-nanotechnology-white-paper-final-february-2007.pdf|EPA Nanotechnology White Paper]]
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*[//www.enviro.wiki/images/0/00/AFCEE_BioSlurper_Initiative_1997.pdf Engineering Evaluation and Cost Analysis for Bioslurper Initiative]
*[[Media:Vacuum_Mediated_LNAPL_Recovery_bioremediation.pdf|Technology Profile: Vacuum-Mediated LNAPL Free Product Recovery/Bioremediation (Bioslurper)]]
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*[//www.enviro.wiki/images/a/a7/Epa-nanotechnology-white-paper-final-february-2007.pdf EPA Nanotechnology White Paper]
*[[Media:2006_EPA_542-R-06-009.pdf|Treatment Technologies for 1,4-Dioxane: Fundamentals and Field Applications]]
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*[//www.enviro.wiki/images/d/dc/Vacuum_Mediated_LNAPL_Recovery_bioremediation.pdf Technology Profile: Vacuum-Mediated LNAPL Free Product Recovery/Bioremediation (Bioslurper)]
 +
*[//www.enviro.wiki/images/b/b6/2006_EPA_542-R-06-009.pdf Treatment Technologies for 1,4-Dioxane: Fundamentals and Field Applications]

Latest revision as of 01:46, 28 April 2022

Remediation technologies include both traditional remediation approaches and emerging technologies. Common technologies employ a range of abiotic chemical treatments, biologically based remediation, and thermal approaches. Also included in this category are technologies for extracting contaminants from the subsurface and delivering treatment amendments.

Related Articles


Additional Documents