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Schwinkendorf, W.E.; Cooley, C.R.
Idaho National Engineering Lab., Idaho Falls, ID (United States). Funding organisation: USDOE Office of Environmental Restoration and Waste Management, Washington, DC (United States)1998
Idaho National Engineering Lab., Idaho Falls, ID (United States). Funding organisation: USDOE Office of Environmental Restoration and Waste Management, Washington, DC (United States)1998
AbstractAbstract
[en] Selection of final waste forms to be used for disposal of DOE's mixed low-level waste (MLLW) depends on the waste form characteristics and total life cycle cost. In this paper the various cost factors associated with production and disposal of the final waste form are discussed and combined to develop life-cycle costs associated with several waste stabilization options. Cost factors used in this paper are based on a series of treatment system studies in which cost and mass balance analyses were performed for several mixed low-level waste treatment systems and various waste stabilization methods including vitrification, grout, phosphate bonded ceramic and polymer. Major cost elements include waste form production, final waste form volume, unit disposal cost, and system availability. Production of grout costs less than the production of a vitrified waste form if each treatment process has equal operating time (availability) each year; however, because of the lower volume of a high temperature slag, certification and handling costs and disposal costs of the final waste form are less. Both the total treatment cost and life cycle costs are higher for a system producing grout than for a system producing high temperature slag, assuming equal system availability. The treatment costs decrease with increasing availability regardless of the waste form produced. If the availability of a system producing grout is sufficiently greater than a system producing slag, then the cost of treatment for the grout system will be less than the cost for the slag system, and the life cycle cost (including disposal) may be less depending on the unit disposal cost. Treatment and disposal costs will determine the return on investment in improved system availability
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1998; 14 p; Waste management '98; Tucson, AZ (United States); 1-5 Mar 1998; CONF-980307--; CONTRACT AC07-94ID13223; ALSO AVAILABLE FROM OSTI AS DE98052250; NTIS; INIS; US GOVT. PRINTING OFFICE DEP
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