Engineering Assessment of Inactive Uranium Mill Tailings, Edgement Site, Edgemont, South Dakota

Engineering Assessment of Inactive Uranium Mill Tailings, Edgement Site, Edgemont, South Dakota PDF Author: Bacon & Davis Utah Inc Ford
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Languages : en
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Engineering Assessment of Inactive Uranium Mill Tailings, Edgement Site, Edgemont, South Dakota

Engineering Assessment of Inactive Uranium Mill Tailings, Edgement Site, Edgemont, South Dakota PDF Author: Bacon & Davis Utah Inc Ford
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ISBN:
Category :
Languages : en
Pages :

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Engineering Assessment of Inactive Uranium Mill Tailings

Engineering Assessment of Inactive Uranium Mill Tailings PDF Author: U.S. Nuclear Regulatory Commission
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Category : Radioactive waste disposal
Languages : en
Pages :

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Phase II - Title I Engineering Assessment of Inactive Uranium Mill Tailings, Gunnison Site, Gunnison, Colorado

Phase II - Title I Engineering Assessment of Inactive Uranium Mill Tailings, Gunnison Site, Gunnison, Colorado PDF Author:
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ISBN:
Category : Gunnison (Colo.)
Languages : en
Pages : 256

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Phase II - Title I Engineering Assessment of Inactive Uranium Mill Tailings, Grand Junction Site, Grand Junction, Colorado

Phase II - Title I Engineering Assessment of Inactive Uranium Mill Tailings, Grand Junction Site, Grand Junction, Colorado PDF Author:
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ISBN:
Category : Radioactive waste disposal
Languages : en
Pages : 390

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Inactive Uranium Mill Tailings, Maybell Site, Engineering Assessment Summary

Inactive Uranium Mill Tailings, Maybell Site, Engineering Assessment Summary PDF Author:
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Category :
Languages : en
Pages : 68

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Engineering Assessment of Inactive Uranium Mill Tailings, Belfield Site, Belfield, North Dakota

Engineering Assessment of Inactive Uranium Mill Tailings, Belfield Site, Belfield, North Dakota PDF Author:
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Languages : en
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Ford, Bacon and Davis Utah Inc. has evaluated the Belfield site in order to assess the problems resulting from the existence of radiactive ash at Belfield, South Dakota. This engineering assessment has included drilling of boreholes and radiometric measurements sufficient to determine areas and volumes of ash and radiation exposures of individuals and nearby populations, the investigations of site hydrology and meteorology, and the evaluation and costing of alternative corrective actons. Radon gas released from the 55,600 tons of ash and contaminated material at the Belfield site constitutes a significant environmental impact, although external gamma radiation also is a factor. The four alternative actions presented in this engineering assessment range from millsite and off-site decontamination with the addition of 3 m of stabilization cover material, to removal of the ash and contaminated materials to remote disposal sites, and decontamination of the Belfield site. Cost estimates for the four options range from about $1,500,000 for stabilization in-place, to about $2,500,000 for disposal at a distance of about 17 mi from the Belfield site. Reprocessing the ash for uranium recovery is not feasible because of the extremely small amount of material available at the site and because of its low U3O content.

Inactive Uranium Mill Tailings, Canonsburg Site, Engineering Assessment Summary, EA.

Inactive Uranium Mill Tailings, Canonsburg Site, Engineering Assessment Summary, EA. PDF Author:
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ISBN:
Category :
Languages : en
Pages : 106

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Edgement Uranium Mill, Decommissioning

Edgement Uranium Mill, Decommissioning PDF Author:
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Category :
Languages : en
Pages : 368

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Inactive Uranium Mill Tailings, Phillips-United Nuclear Site, Ambrosia Lake: Engineering Assessment Summary B1; Corrigenda to Engineering Assessment Summary

Inactive Uranium Mill Tailings, Phillips-United Nuclear Site, Ambrosia Lake: Engineering Assessment Summary B1; Corrigenda to Engineering Assessment Summary PDF Author:
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Category :
Languages : en
Pages : 12

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A Summary of the Phase II - Title I Engineering Assessment of Inactive Uranium Mill Tailings

A Summary of the Phase II - Title I Engineering Assessment of Inactive Uranium Mill Tailings PDF Author:
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ISBN:
Category : Gunnison (Colo.)
Languages : en
Pages : 100

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