Multielement geochemistry of solid materials in geothermal systems and its applications. Part 1. Hot-water system at the Roosevelt Hot Springs KGRA, Utah

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Geochemical studies of the geothermal system at Roosevelt Hot Springs, Utah, have led to development of chemical criteria for recognition of major features of the system and to a three-dimensional model for chemical zoning in the system. Based on this improved level of understanding several new or modified geochemical exploration and assessment techniques have been defined and are probably broadly applicable to evaluation of hot-water geothermal systems. The main purpose of this work was the development or adaptation of solids geochemical exploration techniques for use in the geothermal environment. (MHR)

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Medium: P; Size: : 178 pages

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Bamford, R. W.; Christensen, O. D. & Capuano, R. M. February 1, 1980.

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Geochemical studies of the geothermal system at Roosevelt Hot Springs, Utah, have led to development of chemical criteria for recognition of major features of the system and to a three-dimensional model for chemical zoning in the system. Based on this improved level of understanding several new or modified geochemical exploration and assessment techniques have been defined and are probably broadly applicable to evaluation of hot-water geothermal systems. The main purpose of this work was the development or adaptation of solids geochemical exploration techniques for use in the geothermal environment. (MHR)

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Medium: P; Size: : 178 pages

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NTIS, PC A09/MF A01.; OSTI as DE05197458

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  • Other Information: PBD: 1 Feb 1980

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  • February 1, 1980

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  • Jan. 22, 2018, 7:23 a.m.

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Bamford, R. W.; Christensen, O. D. & Capuano, R. M. Multielement geochemistry of solid materials in geothermal systems and its applications. Part 1. Hot-water system at the Roosevelt Hot Springs KGRA, Utah, report, February 1, 1980; Salt Lake City, Utah. (https://digital.library.unt.edu/ark:/67531/metadc1060313/: accessed May 5, 2024), University of North Texas Libraries, UNT Digital Library, https://digital.library.unt.edu; crediting UNT Libraries Government Documents Department.

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