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Endocrine disruptors / Permeable reactive barrier / In situ chemical oxidation / Superfund / Polychlorinated biphenyl / Arsenic / In-situ capping of subaqueous waste / Environmental remediation / Pollution / Environment / Soil contamination


Use of Amendments for In Situ Remediation at Superfund Sediment Sites
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Document Date: 2013-04-30 19:15:38


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City

Spokane / Portland / Massena / /

Company

Interlake / McCormick / /

Event

Product Issues / /

Facility

University of New Hampshire / /

IndustryTerm

aquatic food web / stable end products / free-phase product / food chain / transportation / direct sediment amendment applications / chemical oxidation / gas migration / gas ebullition / pilotor full-scale applications / surface using equipment / treatment technology / gas bubbles / sediment treatment technology / toxic by-products / contaminant / few field applications / amendment applications / environmental applications / field applications / In situ technologies / /

NaturalFeature

Louis River / Spokane River / /

Organization

United States Army / U.S. Environmental Protection Agency / University of New Hampshire / Engineer Research Development Center / United States Environmental Protection Agency office of Superfund Remediation and Technology Innovation / office of Superfund Remediation and Technology Innovation / /

Product

sediments / new benthic layer / thus preventing exposure / Sediment Remediation Guidance / sediment / case / sediment sites / groundwater / materials / /

ProvinceOrState

Oregon / New York / Connecticut / Washington / New Hampshire / /

Technology

ion exchange / sorption / treatment technology / sediment treatment technology / In situ technologies / /

URL

www.epa.gov/superfund/health/conmedia/sediment/guidance.htm / /

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