Stable isotope compositions of quartz pebbles and their fluid inclusions as tracers of sediment provenance: Implications for gold- and uranium-bearing quartz pebble conglomerates
Journal Article
·
· Geology; (United States)
- Univ. of Michigan, Ann Arbor (United States)
Oxygen isotope compositions of pebbles from late Archean to paleo-Proterozoic gold- and/or uranium-bearing oligomictic quartz pebble conglomerates of the Witwatersrand district, South Africa, and Huronian Supergroup, Canada, were determined in an attempt to define the nature of the source terrain. The [delta][sup 18]O values of quartz pebbles within any one sample typically vary by [approximately] 4[per thousand] or more, but occasionally by as much as 8[per thousand], even for adjacent pebbles within the same hand specimen. In addition, adjacent quartz pebbles of widely contrasting [delta][sup 18]O values also preserve distinct isotopic signatures of their fluid inclusions. This overall heterogeneity suggests that the pebbles did not undergo significant oxygen isotope exchange after incorporation in the conglomerates. Therefore, oxygen isotope analyses of such quartz pebbles, in combination with a detailed investigation of their mineral and fluid inclusions, can provide a useful method for characterizing pebble populations and hence dominant sediment source modes. Comparison of values found in this study with [delta][sup 18]O values of quartz from Archean granites, pegmatites, and mesothermal greenstone gold veins, i.e., [delta][sup 18]O values of sources commonly proposed for the conglomerate ores, suggests that uranium is derived from a granitic source, whereas gold has a mesothermal greenstone gold source. Low [delta][sup 18]O values of chert pebbles (9[per thousand] to 11.5[per thousand]) relative to those expected for Archean and Proterozoic marine cherts (commonly [ge] 17[per thousand]) effectively exclude marine cherts, and therefore, auriferous iron formations and exhalatives, as likely sources of gold.
- OSTI ID:
- 6910675
- Journal Information:
- Geology; (United States), Journal Name: Geology; (United States) Vol. 20:9; ISSN 0091-7613; ISSN GLGYBA
- Country of Publication:
- United States
- Language:
- English
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050100* -- Nuclear Fuels-- Reserves
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11 NUCLEAR FUEL CYCLE AND FUEL MATERIALS
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580000 -- Geosciences
ACTINIDES
AFRICA
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CHEMISTRY
CONGLOMERATES
DEVELOPED COUNTRIES
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EVEN-EVEN NUCLEI
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NUCLEI
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OXIDE MINERALS
OXYGEN 18
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STABLE ISOTOPES
TRACER TECHNIQUES
TRANSITION ELEMENTS
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Exploration
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11 NUCLEAR FUEL CYCLE AND FUEL MATERIALS
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580000 -- Geosciences
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AFRICA
CANADA
CHEMICAL COMPOSITION
CHEMISTRY
CONGLOMERATES
DEVELOPED COUNTRIES
ELEMENTS
EVEN-EVEN NUCLEI
GEOCHEMISTRY
GEOLOGIC DEPOSITS
GEOLOGIC MODELS
GOLD
GOLD ORES
INCLUSIONS
ISOTOPE APPLICATIONS
ISOTOPE RATIO
ISOTOPES
LIGHT NUCLEI
METALS
MINERAL RESOURCES
MINERALIZATION
MINERALS
NORTH AMERICA
NUCLEI
ORES
OXIDE MINERALS
OXYGEN 18
OXYGEN ISOTOPES
QUARTZ
RESOURCES
ROCKS
SEDIMENTARY ROCKS
SOUTH AFRICA
STABLE ISOTOPES
TRACER TECHNIQUES
TRANSITION ELEMENTS
URANIUM
URANIUM DEPOSITS
URANIUM ORES