Chemical Analyses of Rocks, Minerals, and Detritus, Yucca Mountain--preliminary Report

Chemical Analyses of Rocks, Minerals, and Detritus, Yucca Mountain--preliminary Report PDF Author: Carol A. Hill
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ISBN:
Category : Geochemistry
Languages : en
Pages : 48

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Chemical Analyses of Rocks, Minerals, and Detritus, Yucca Mountain--preliminary Report

Chemical Analyses of Rocks, Minerals, and Detritus, Yucca Mountain--preliminary Report PDF Author: Carol A. Hill
Publisher:
ISBN:
Category : Geochemistry
Languages : en
Pages : 48

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Chemical Analyses of Rocks, Minerals, and Detritus, Yucca Mountain - Preliminary Report, Special Report

Chemical Analyses of Rocks, Minerals, and Detritus, Yucca Mountain - Preliminary Report, Special Report PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages :

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Radioactive Waste Management

Radioactive Waste Management PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages : 564

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Government Reports Announcements & Index

Government Reports Announcements & Index PDF Author:
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ISBN:
Category : Science
Languages : en
Pages : 564

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Yucca Mountain as a Radioactive-waste Repository

Yucca Mountain as a Radioactive-waste Repository PDF Author: Thomas C. Hanks
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Category : Radioactive waste disposal in the ground
Languages : en
Pages : 32

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New Publications of the U.S. Geological Survey

New Publications of the U.S. Geological Survey PDF Author:
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ISBN:
Category : Geology
Languages : en
Pages : 52

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New Publications of the Geological Survey

New Publications of the Geological Survey PDF Author: Geological Survey (U.S.)
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ISBN:
Category : Geology
Languages : en
Pages : 650

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Results of Chemical Analyses in Support of Yucca Mountain Studies

Results of Chemical Analyses in Support of Yucca Mountain Studies PDF Author:
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Category :
Languages : en
Pages :

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Ground water monitoring for the Nye County Early Warning Drilling Program (NCEWDP) was established to monitor underground water sources of the area and to protect communities surrounding the Nevada Test Site (NTS) from potential radionuclide contamination of these water sources. It provides hydrological information pertaining to groundwater flow patterns and recharge issues in the vicinity of Yucca Mountain. The Harry Reid Center for Environmental Studies (HRC) obtained groundwater samples from select NCEWDP wells shown in Figure 1. These samples were analyzed for major cations, major anions, trace elements, rare earth elements, alkalinity, pH and conductivity. These geochemical results can be used to evaluate the degree of interaction between the aquifers sampled, leading to a thorough mapping of the aquifer system. With increased analysis down gradient of the Yucca Mountain area, evaluations can identify viable groundwater flow paths and establish mixing of the groundwater systems. Tracer tests provide insight into groundwater flow characteristics and transport processes of potential contaminants. These tests are important for contaminant migration issues including safe disposal of hazardous and radioactive materials and remediation of potentially released contaminants. At a minimum, two conservative (non-sorbing) tracers with different diffusion coefficients are used for each tracer test. The tracer test performed under this cooperative agreement utilized fluorinated benzoic acids and halides as conservative tracers. The tracers are of differing size and have differing rates of diffusion into the rock. Larger molecules can not enter the pore spaces that are penetrated by the smaller molecules, therefore larger tracers will travel faster through thegroundwater system. Identical responses of the two tracers indicate no appreciable diffusion into pores of the aquifer system tuff. For the Nye County Tracer Tests, the HRC provided chemical analysis for the tracer test being conducted at site 22. Samples were analyzed for multiple tracers throughout the testing period.

Final Report on Feasibility of Real-time Geochemical Analysis at Yucca Mountain, Nevada, Using LIBS Technology

Final Report on Feasibility of Real-time Geochemical Analysis at Yucca Mountain, Nevada, Using LIBS Technology PDF Author: James D. Blacic
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ISBN:
Category : Analytical geochemistry
Languages : en
Pages : 113

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Laser-induced breakdown spectroscopy (LIBS) is an analytic method whereby an intense laser pulse is used to vaporize and excite a small volume of material into atomic emission. Calibrated spectral analysis of the laser spark light provides detection and quantification of the elemental composition of the target material. We performed laboratory and field tests to assess the feasibility of developing field-portable LIBS-based instruments for real-time analyses of Yucca Mountain rocks in conjunction with Yucca Mountain Project drilling, coring, sampling, and characterization tasks. We developed one prototype instrument designed to analyze air core drilling dust and another prototype instrument designed to analyze rock and fracture surfaces. In realistic field tests at the Exploratory Studies Facility at Yucca Mountain, Nevada, we demonstrated that the LIBS prototypes are capable of measuring major, minor, and some trace elements in real time.

Yucca Mountain Drift Scale Test Progress Report

Yucca Mountain Drift Scale Test Progress Report PDF Author:
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ISBN:
Category :
Languages : en
Pages : 161

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The Drift Scale Test (DST) is part of the Exploratory Studies Facility (ESF) Thermal Test being conducted underground at the potential high-level nuclear waste repository at Yucca Mountain, Nevada. The purpose of the ESF Thermal Test is to acquire a more in-depth understanding of the coupled thermal, mechanical, hydrological, and chemical processes likely to be encountered in the rock mass surrounding the potential geological repository at Yucca Mountain. These processes are monitored by a multitude of sensors to measure the temperature, humidity, gas pressure, and mechanical displacement, of the rock formation in response to the heat generated by the heaters. In addition to collecting passive monitoring data, active hydrological and geophysical testing is also being carried out periodically in the DST. These active tests are intended to monitor changes in the moisture redistribution in the rock mass, to collect water and gas samples for chemical and isotopic analysis, and to detect microfiacturing due to heating. On December 3, 1998, the heaters in the DST were activated. The planned heating phase of the DST is 4 years, and the cooling phase following the power shutoff will be of similar duration. The present report summarizes interpretation and analysis of thermal, hydrological, chemical, and geophysical data for the first 6 months; it is the first of many progress reports to be prepared during the DST.