1980Economic GeologyRequires access

Preliminary investigations of U-Th-Pb systematics in uranium-bearing minerals from two granitic rocks from the Granite Mountains, Wyoming

John S. Stuckless, I. T. Nkomo

Open publisher page 13 citations

Abstract

Analyses of mineral separates from granites from the Granite Mountains, Wyoming, suggest that most of the thorium and at least half of the uranium are associated with biotite, epidote, and accessory minerals. Biotite and epidote contain most of the uranium and thorium in a drill core sample of granite that did not incur any appreciable amount of uranium loss during Tertiary time. These two minerals also form the dominant sites for thorium in a surface sample of granite that incurred a large uranium loss during Tertiary time but only account for 35 percent of the whole-rock uranium in this sample. Concentration and isotopic data for biotite and epidote from the surface sample suggest that these minerals lost enough uranium in Tertiary time to account for the uranium loss by the whole-rock system. None of the mineral ages, calculated from the uranium-lead, lead-lead, and thorium-lead systems, seem to be geologically significant.

About this research paper

What this paper is about

Analyses of mineral separates from granites from the Granite Mountains, Wyoming, suggest that most of the thorium and at least half of the uranium are associated with biotite, epidote, and accessory minerals. Biotite and epidote contain most of the uranium and thorium in a drill core sample of granite that did not incur any appreciable amount of uranium loss during Tertiary time. These two minerals also form the dominant sites for thorium in a surface sample of granite that incurred a large uranium loss during Tertiary time but only account for 35 percent of the whole-rock uranium in this sample. Concentration and isotopic data for biotite and epidote from the surface sample suggest that these minerals lost enough uranium in Tertiary time to account for the uranium loss by the whole-rock system. None of the mineral ages, calculated from the uranium-lead, lead-lead, and thorium-lead systems, seem to be geologically significant.

Why it matters

OpenAlex reports 13 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

Analyses of mineral separates from granites from the Granite Mountains, Wyoming, suggest that most of the thorium and at least half of the uranium are associated with biotite, epidote, and accessory minerals. Biotite and epidote contain most of the uranium and thorium in a drill core sample of granite that did not incur any appreciable amount of uranium loss during Tertiary time. These two minerals also form the dominant sites for thorium in a surface sample of granite that incurred a large uranium loss during Tertiary time but only account for 35 percent of the whole-rock uranium in this sample. Concentration and isotopic data for biotite and epidote from the surface sample suggest that these minerals lost enough uranium in Tertiary time to account for the uranium loss by the whole-rock system. None of the mineral ages, calculated from the uranium-lead, lead-lead, and thorium-lead systems, seem to be geologically significant.

Key concepts: Geology, Uranium, Geochemistry, Granitic rock, Systematics, Bearing (navigation), Geography, Nuclear physics

Related papers

Back to paper searchBrowse research topicsOriginal source
Preliminary investigations of U-Th-Pb systematics in uranium-bearing minerals from two granitic rocks from the Granite Mountains, Wyoming — Research Paper | ScholarLens