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Mechanochemical reductive dehalogenation of hazardous polyhalogenated contaminants

  • V. Birke*
  • , J. Mattik
  • , D. Runne
  • *Corresponding author for this work

    Research output: Journal contributionsJournal articlesResearchpeer-review

    96 Citations (Scopus)

    Abstract

    Ball mills are utilized as mechanochemical (MC) dehalogenation reactors for defined reductive dehalogenations of various hazardous polyhalogenated pollutants such as polychlorinated biphenyls (PCBs) or pentachlorophenol (PCP) to their parent hydrocarbons in high yields, i.e., biphenyl and phenol, respectively. This versatile technique, designated as "Dehalogenation By Mechanochemical Reaction" (DMCR), can be preferentially deployed for novel approaches regarding hazardous waste management and destruction; contaminated materials as well as highly concentrated or pure contaminants and their mixtures are treatable at room temperature in a short time, virtually regardless of their state. For instance, PCBs in contaminated soils, filter dusts, transformer oils, or as pure substances are dechlorinated to harmless chloride and their parent hydrocarbon biphenyl by applying magnesium, aluminum or sodium metal plus a low acidic hydrogen source (ether, alcohol, amine etc.). DMCR offers several economic and ecological benefits: ball milling requires a low energy input only. Because of the strikingly benign reaction conditions, toxic compounds can be converted to defined and usable products. Furthermore, detoxified materials like transformer oils can be readily recycled, and DMCR facilitates the re-use of scrap metals. No harmful emissions to the environment have to be expected. This paper presents selected results of basic laboratory studies demonstrating the versatility, efficiency and limits of DMCR.

    Original languageEnglish
    JournalJournal of Materials Science
    Volume39
    Issue number16-17
    Pages (from-to)5111-5116
    Number of pages6
    ISSN0022-2461
    DOIs
    Publication statusPublished - 01.08.2004

    UN SDGs

    This output contributes to the following UN Sustainable Development Goals (SDGs)

    1. SDG 12 - Responsible Consumption and Production
      SDG 12 Responsible Consumption and Production

    Research areas and keywords

    • Engineering

    ASJC Scopus Subject Areas

    • Ceramics and Composites
    • Materials Science (miscellaneous)
    • General Materials Science
    • Mechanics of Materials
    • Mechanical Engineering
    • Polymers and Plastics
    • Materials Science(all)

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