Environmental monitoring summary for the Paducah Plant for 1967 and 1968 [PDF]
Paducah area (KY). Radiation monitoring in, during 1967 and 1968. SURFACE WATERS. Radiation monitoring of, in vicinity of Paducah plant during 1967 and 1968. ENVIRONMENT. Radiation monitoring of, in vicinity of Paducah plant during 1967 and 1968. PLANTS. Radiation monitoring of, in vicinity of Paducah Plant during 1967 and 1968. ATMOSPHERE.
Davis, K.A., Brown, E.G.
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An interim report to the manager of the Paducah Gaseous Diffusion Plant from the Paducah Environmental Advisory Committee [PDF]
The Paducah Environmental Advisory Committee was formed as: (1) an outgrowth of other Environmental Advisory Committees already in existence at Oak Ridge and other Martin Marietta Energy Systems plants; (2) a result of public concern following significant nuclear incidents at Bhopal and Chernobyl; (3) a result of the new direction and commitment of the
Jackson, G. D.
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Paducah Gaseous Diffusion Plant Environmental report for 1990 [PDF]
This two-part report, Paducah Gaseous Diffusion Plant Site Environmental Report for 1990, is published annually. It reflects the results of a comprehensive, year-round program to monitor the impact of operations at Paducah Gaseous Diffusion Plant (PGDP) on the area's groundwater and surface waters, soil, air quality, vegetation, and wildlife.
Counce-Brown, D.
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Environmental monitoring summary for the Paducah Plant for 1962 and 1963 [PDF]
Outdoor monitoring of air, water and vegetation in the vicinity of the Paducah Plant is summarized for the years of 1962 and 1963.
Baker, R. C.
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Paducah Gaseous Diffusion Plant environmental report for 1992 [PDF]
This two-part report, Paducah Gaseous Diffusion Plant Environmental Report for 1992, is published annually. It reflects the results of an environmental monitoring program designed to quantify potential increases in the concentration of contaminants and potential doses to the resident human population.
Horak, C. M.
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Paducah Gaseous Diffusion Plant environmental report for 1989 [PDF]
This two-part environmental report is published annually. It reflects the results of a comprehensive, year-round program to monitor the impact of operations at Paducah Gaseous Diffusion Plant (PGDP) on the area's groundwater and surface waters, soil, air quality, vegetation, and wildlife.
Turner, J. W.
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Reassessment of liquefaction potential and estimation of earthquake- induced settlements at Paducah Gaseous Diffusion Plant, Paducah, Kentucky. Final report [PDF]
This report documents a reassessment of liquefaction potential and estimation of earthquake-induced settlements for the U.S. Department of Energy (DOE), Paducah Gaseous Diffusion Plant (PGDP), located southwest of Paducah, KY. The U.S. Army Engineer Waterways Experiment Station (WES) was authorized to conduct this study from FY91 to FY94 by the DOE ...
Sykora, D. W., Yule, D. E.
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Paducah Gaseous Diffusion Plant Annual Site Environmental Report for 1993 [PDF]
The purpose of this document is to summarize effluent monitoring and environmental surveillance results and compliance with environmental laws, regulations, and orders at the Paducah Gaseous Diffusion Plant (PGDP). Environmental monitoring at PGDP consists of two major activities: effluent monitoring and environmental surveillance.
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Impact of Secondary Prevention on Mortality in the Building Trades National Medical Screening Program: Effectiveness of Occupational High-Risk Management. [PDF]
ABSTRACT Background Since 1997 the Building Trades National Medical Screening Program (BTMed) has offered medical exams to construction workers employed in US nuclear weapons facilities. The process consists of two steps: (1) a detailed work history interview; and (2) a medical exam.
Ringen K +11 more
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Geochemical modeling of trivalent chromium migration in saline-sodic soil during Lasagna process: impact on soil physicochemical properties. [PDF]
Trivalent Cr is one of the heavy metals that are difficult to be removed from soil using electrokinetic study because of its geochemical properties. High buffering capacity soil is expected to reduce the mobility of the trivalent Cr and subsequently reduce the remedial efficiency thereby complicating the remediation process.
Lukman S +4 more
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