Last edited by Faura
Saturday, April 18, 2020 | History

2 edition of Metal-enhanced dechlorination of volatile organic compounds using an above-ground reactor found in the catalog.

Metal-enhanced dechlorination of volatile organic compounds using an above-ground reactor

Metal-enhanced dechlorination of volatile organic compounds using an above-ground reactor

EnviroMetal Technologies, Inc.

by

  • 381 Want to read
  • 4 Currently reading

Published by U.S. Environmental Protection Agency, Office of Research and Development in Cincinnati, OH .
Written in English

    Subjects:
  • EnviroMetal Technologies, Inc.,
  • Groundwater -- Purification -- Technological innovations.,
  • Hazardous waste site remediation -- Technological innovations.,
  • Volatile organic compounds -- Environmental aspects.

  • Edition Notes

    Other titlesMetal enhanced dechlorination of volatile organic compounds using an above-ground reactor.
    SeriesSITE technology capsule
    ContributionsSuperfund Innovative Technology Evaluation Program (U.S.)
    The Physical Object
    FormatMicroform
    Pagination7 p.
    ID Numbers
    Open LibraryOL18118230M


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Metal-enhanced dechlorination of volatile organic compounds using an above-ground reactor Download PDF EPUB FB2

Metal-enhanced dechlorination of volatile organic compounds using an above-ground reactor EnviroMetal Technologies, Inc (SuDoc EP //R/ A) [U.S.

Environmental Protection Agency] on *FREE* shipping on qualifying offers. EnviroMetal Technologies, Inc metal-enhanced dechlorination of volatile organic compounds using an above-ground reactor (SuDoc EP //R/) [U.S. Environmental Protection Agency] on *FREE* shipping on qualifying : U.S.

Environmental Protection Agency. Metal-enhanced dechlorination of volatile organic compounds using an above-ground reactor [microform]: EnviroMetal Technologies, Inc U.S.

Environmental Protection Agency, Office of Research and Development Cincinnati, OH Australian/Harvard Citation. Superfund Innovative Technology Evaluation Program (U.S.). Metal-enhanced dechlorination of volatile organic compounds using an above-ground reactor: EnviroMetal Technologies, Inc.

Also Titled. Metal enhanced dechlorination of volatile organic compounds using an above-ground reactor Other Authors. Superfund Innovative Technology Evaluation Program (U.S.).

Get this from a library. Metal-enhanced dechlorination of volatile organic compounds using an above-ground reactor: EnviroMetal Technologies, Inc. [Superfund. Get this from a library. EnviroMetal Technologies, Inc.: metal-enhanced dechlorination of volatile organic compounds using an above-ground reactor.

[National Risk Management Research Laboratory (U.S.); Superfund Innovative Technology Evaluation Program (U.S.);].

EPA//R/ September EnviroMetal Technologies, Inc. Metal-Enhanced Dechlorination of Volatile Organic Compounds Using an In-Situ Reactive Iron Wall Innovative Technology Evaluation Report National Risk Management Research Laboratory Office of Research and Development U.S.

Environmental Protection Agency Cincinnati, Ohio Printed on Recycled Paper. Buy Metal-enhanced dechlorination of volatile organic compounds using an above-ground reactor EnviroMetal Technologies, Inc (SuDoc EP //R/ A) by U.S.

Environmental Protection Agency (ISBN:) from Amazon's Book Store. Everyday low prices and free delivery on eligible : U.S. Environmental Protection Agency. Metal-Enhanced Dechlorination of Volatile Organic Compounds Using an In-Situ Reactive Iron Wall Innovative Technology Evaluation Report National Risk Management Research Laboratory Office of Research and Development U.S.

Environmental Protection Agency. Pilot-scale evaluation of the iron-enhanced dechlorination technology for remediation of contaminated groundwater. The remediation of groundwater affected by volatile organic compounds (VOCs) and metals continues to be one of the primary challenges facing the environmental industry.

With documented evidence that the traditional pump-and-treat method of remediating contaminated groundwater is highly inefficient. Metal enhanced dechlorination of volatile organic compounds using an above-ground reactor, National Risk Management Research Laboratory, Cincinnati, Ohio: Innovative Technology Evaluation Report, EPA//R/ ().

Two methods of in situ metal-enhanced dechlorination are used: a permeable treatment wall or a funnel and gate configuration. The permeable wall can be used above ground in a reactor (ex situ) setting. In the future, material other than iron will be assessed for effectiveness on VOCs.

Remediation of Chlorinated Solvents in Groundwater. of Share & Embed. This banner text can have markup. web; books; video; audio; software; images; Toggle navigation. Request PDF | Choosing the Best Design and Construction Technologies for Permeable Reactive Barriers | At many sites, groundwater (GW) remediation is proving to be a much more difficult and.

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Introduction We are pleased to present the edition of the EPA National Publications Catalog. As in the past editions, this fourth edition continues to offer current Agency publications available from EPA Headquarters, Regions and Laboratories on a wide variety of environmental issues.

Request PDF | On Jan 1,Lisa A. Totten and others published Abiotic Dehalogenation by Metals | Find, read and cite all the research you need on ResearchGate. Finally, the degradation of chlorinated organic compounds using zero-valent met als (iron)appears to be a promising and sig nificant advancement in the remediation of contaminated groundwater.

United States Environmental Protection Agency Office of Solid Waste and Emergency Response (G) EPA B June Inno vative Remediation Innov Tec hnologi.

Catalytic Destruction of Chlorinated Volatile Organic Compounds. DTIC Science & Technology. Figure 1. The glass reactor passed through two furnaces.

Both the furnaces. Anaerobic bacteria that dechlorinate perchloroethene. PubMed Central. Fathepure, B Z; Nengu, J P; Boyd, S A. In this study, we identified specific cultures of anaerobi. Risks of Hazardous Wastes Risks of Hazardous Wastes Paul E.

Rosenfeld Lydia G. Feng AMSTERDAM BOSTON HEIDELBERG LONDON NEW YORK OXFORD PARIS SAN DIEGO SAN FRANCISCO SINGAPORE SYDNEY TOKYO G G G G G G. When we imagine organic compounds mixed in water, we recognize that organic molecules and water molecules differ from one another in two primary ways: (1) they have very dissimilar shapes and sizes, and (2) in general, organic molecules are much less polar than water since they are chiefly constructed from atoms having comparable.

research and application of permeable reactive barriers - CLU-IN.