Abstract After strontium/transuranics removal by precipitation followed by cesium/technetium removal by ion exchange, the remaining low-activity waste in the Hanford River Protection Project Waste Treatment Plant is to be concentrated by evaporation before being mixed with glass formers and vitrified. To provide a technical basis to permit the waste treatment facility, a relatively organic-rich Hanford Tank 241-AN-107 waste simulant was spiked with 14 target volatile, semi-volatile, and pesticide compounds and evaporated under vacuum in a bench-scale natural circulation evaporator fitted with an industrial stack off-gas sampler at the Savannah River National Laboratory. An evaporator material balance for the target organics was calculated by combining liquid stream mass and analytical data with off-gas emissions estimates obtained using U.S. Environmental Protection Agency (EPA) SW-846 Methods. Volatile and light semi-volatile organic compounds (<220 °C BP, >1 mm Hg vapor pressure) in the waste simulant were found to largely exit through the condenser vent, while heavier semi-volatiles and pesticides generally remain in the evaporator concentrate. An OLI Environmental Simulation Program (licensed by OLI Systems, Inc.) evaporator model successfully predicted operating conditions and the experimental distribution of the fed target organics exiting in the concentrate, condensate, and off-gas streams, with the exception of a few semi-volatile and pesticide compounds. Comparison with Henry's Law predictions suggests the OLI Environmental Simulation Program model is constrained by available literature data.
[1]
G. K. Patello,et al.
TWRS Privatization Phase I waste characterization data evaluation for the request for proposal
,
1996
.
[2]
H. H. Saito.
AN-107 (C) Simulant Bench-Scale LAW Evaporation with Organic Regulatory Analysis
,
2001
.
[3]
John H. Montgomery,et al.
Groundwater Chemicals Desk Reference
,
1989
.
[4]
W. Gujer,et al.
Transfer of volatile substances from water to the atmosphere
,
1981
.
[5]
D. J. Wilson,et al.
Removal of Refractory Organics by Aeration. VIII. Air Stripping of Benzene Derivatives
,
1988
.
[6]
G. M. Mong,et al.
Organic Analysis of AW-101 and AN-107 Tank Waste
,
2000
.
[7]
M. D. Guthrie.
242-A campaign 95-1 post run document
,
1996
.