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- W1516370291 abstract "The following conclusions may be drawn from the evaluation of in situ vitrification (ISV) technology: In situ vitrification is a developing technology that may have significant potential for selected hazardous waste disposal. Organic compounds are pyrolyzed during ISV. Subsequent combustion and off-gas treatment hold potential for permanent disposal of selected toxic organic wastes. Process economics for contaminated soil sites at Hanford are in the range of $4 to $6.50/ft/sup 3/ of soil vitrified. Differences in site geometry, electrical power costs, soil moisture and other factors can influence these costs. For a soil moisture 25%, and using a portable power supply, costs would be about $9/ft/sup 3/ of soil vitrified. Far term (10,000 yr) performance analysis for TRU contaminants leads to the belief that ISV may minimize the effects of persistent toxic and/or heavy metal wastes. When viewing the potential for ISV technology transfer from the nuclear to the hazardous waste arena, it is prudent to remember that ISV appears to be an excellent specific remedial action technique - it is not a panacea, but judiciously applied the process holds promise to mitigate the effects of unprocessed buried chemically hazardous wastes." @default.
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- W1516370291 date "1984-05-01" @default.
- W1516370291 modified "2023-09-23" @default.
- W1516370291 title "In situ vitrification: a potential remedial action technique for hazardous waste" @default.
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