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Comparison of trace element mobility from MSWI ash before and after plasma vitrification.

Wesley N OehmigJustin RoesslerAbdul Mulla SalehKyle A ClavierChristopher C FerraroTimothy G Townsend
Published in: Waste management & research : the journal of the International Solid Wastes and Public Cleansing Association, ISWA (2021)
A common perception of plasma arc treatment systems for municipal solid waste incineration ash is that the resulting vitrified slag is inert from an environmental perspective. Research was conducted to examine this hypothesis and to assess whether reduced pollutant release results from pollutant depletion during the process of the ash with plasma, or encapsulation in the glassy vitrified matrix. The concentrations of four discrete municipal solid waste incineration ash samples before and after plasma arc vitrification in a bench-scale unit were compared. Slag and untreated ash samples were leached using several standardized approaches and mobility among the four metals of interest (e.g. As, Cd, Pb and Sb) varied across samples, but was generally high (as high as 100% for Cd). Comparison across methods did not indicate substantial encapsulation in the vitrified slag, which suggests that reduced pollutant release from plasma arc vitrified slag is due to pollutant depletion by volatilization, not encapsulation. This has significant implications for the management of air pollution control residues from waste-to-energy facilities using plasma arc vitrification.
Keyphrases
  • municipal solid waste
  • sewage sludge
  • anaerobic digestion
  • air pollution
  • heavy metals
  • risk assessment
  • particulate matter
  • human health
  • drinking water
  • nk cells