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- W2280221277 abstract "The samples selected for this thesis project are from the Adirondack Mountains in New York State and are part of a larger project involving apatite [Ca5(PO4)3(OH, F, Cl)] trace elements and geochronology currently being undertaken by Dr. John Hanchar and his students. The main objective of this project is to explore the utility of Sr isotopes (87Sr/86Sr) in apatite, which contains Sr as a trace element, as a isotopic tracer of the geochemical processes which led to the production of so-called IOA-type (iron oxide, apatite) mineral deposits in the Adirondacks. A secondary objective is to use Sr isotopes to acquire a better understanding of the temporal and spatial relationship(s) between the respective Kand Na-metasomatically altered host rocks and the IOA ores. Sr isotopes in apatite have successfully been used to “fingerprint” Devonian ash beds in the Appalachians in the United States and to do stratigraphic correlations throughout the Appalachian Basin from New York to Tennessee. The analytical technique used in this thesis is TIMS (thermal ionization mass spectrometry). Measurements will be taken from individual apatite mineral grains from six IOA ore samples and their respective host rocks, and will be analyzed for the isotopic ratios of Sr. The measured Sr isotopic ratios and the interpretation of those results will allow us, along with other apatite trace element and U-Pb data previously acquired in the area and from some of the same samples, to better understand the development of IOA mineralization in the Adirondacks and hopefully provide insights on IOA mineralization in general. The understanding of the Sr isotopes in apatite in this area will allow further understanding of Sr as a tracer element and will progress the understanding of ore mineralization in IOA-type mineral deposits." @default.
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- W2280221277 date "2009-01-01" @default.
- W2280221277 modified "2023-09-26" @default.
- W2280221277 title "Abstract: The use of Sr isotopes in apatite as a tracer of iron ore apatite (IOA) mineralization processes" @default.
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