This thesis presents a 40Ar/39Ar geochronological analyses of biotite from thin ductile shear zones in Paleoproterozoic granulite-facies gneisses from the Ellesmere-Devon crystalline terrane, Nunavut, Canada. The gneisses are part of the Paleoproterozoic Thelon tectonic zone. U-Pb dates of zircon show that the gneisses have magmatic protolith ages ranging from 2007–1958 Ma. The quartzofeldspathic gneisses in southeast Ellesmere Island display centimeter-scale E- to NE-striking sinistral and dextral mylonite zones offsetting pegmatitic dikes that are the last stage of ductile deformation of the basement rocks. Samples were taken from nearshore outcrops at Hayes Fiord, Pim Island, NE of the Leffert Glacier and NW of Cape Isabella. Biotite clusters replace orthopyroxene as the result of post-granulite facies metamorphism in the gneisses. Biotite in mylonitic and ultramylonitic fabrics is found as flattened clusters and also as individual crystals defining shear bands related to mylonitization. Eight samples were dated, including biotite from five mylonites, one deformed pegmatite, one tonalite and muscovite from a pegmatite. Major element X-ray maps demonstrate that the biotite is chemically homogenous. Backscattered electron images and electron dispersive spectroscopy via scanning electron microscopy confirm that biotite lacks intercrystalline layering with other K phases. Step-heating analysis of mica at the University of Vermont yielded Paleoproterozoic 40Ar/39Ar ages. The apparent age spectra form plateau ages in all but one mylonite sample. Biotite from a protomylonite was 2051 ± 26 Ma, older than the protolith ages obtained from U-Pb zircon geochronology, and most likely indicates excess Ar. Pegmatitic muscovite was 1977 ± 35 Ma. Biotite dates range from 1874 ± 13 Ma to 1838 ± 14 Ma for the five mylonites without excess Ar. Biotite dated from ductile shear zones signals the latest deformation in the basement, which was active as early as 1887 Ma.
⁴⁰AR/³⁹AR geochronology of biotite from ductile shear zones of the Ellesmere-Devon crystalline terrane, Nunavut, Canadian Arctic
Abstract
Details
- Title: Subtitle
- ⁴⁰AR/³⁹AR geochronology of biotite from ductile shear zones of the Ellesmere-Devon crystalline terrane, Nunavut, Canadian Arctic
- Creators
- Brandon Christopher Caswell - University of Iowa
- Contributors
- Jane A. Gilotti (Advisor)William C. McClelland (Committee Member)Laura E. Webb (Committee Member)
- Resource Type
- Thesis
- Degree Awarded
- Master of Science (MS), University of Iowa
- Degree in
- Geoscience
- Date degree season
- Spring 2018
- DOI
- 10.17077/etd.lddtj6rz
- Publisher
- University of Iowa
- Number of pages
- ix, 40 pages, 34 unnumbered pages
- Copyright
- Copyright © 2018 Brandon Christopher Caswell
- Language
- English
- Description illustrations
- color illustrations, color maps
- Description bibliographic
- Includes bibliographical references (pages 24-28).
- Public Abstract (ETD)
I present a dating analysis of the mineral biotite from thin ductile shear zones in Precambrian gneisses from Ellesmere Island. Basement rocks in southeastern Ellesmere Island display centimeter-scale E- to NE-oriented, left- and right-lateral shear zones. Biotite clusters replace orthopyroxene as the result of post granulite-facies metamorphism in the gneisses. Biotite in highly deformed and recrystallized planar fabrics (i.e. mylonite) is found as flattened clusters and also as individual crystals in bands and is related to ductile shearing. Eight samples were dated, including biotite from six shear zones, one metamorphosed parent rock and muscovite from a pegmatite. Major element X-ray maps produced via electron microprobe analysis demonstrate all biotite samples are chemically pure in potassium. Scanning electron microscopy confirms biotite grains lack layering with other potassium phases. A recent uranium-lead date shows that the Hayes Fiord gneisses are 1958 ± 2 Ma. Step-heating analysis of mica at the University of Vermont yielded Precambrian argon ages. The argon age data formed plateau ages in all but one mylonitic sample. Biotite dates range from 1874 ± 13 Ma to 1838 ± 14 Ma for five mylonites excluding one protomylonite. Age of the protomylonitic biotite is invalid because it predates the oldest zircon ages and implies excess argon. Protolith emplacement before 2012–1942 Ma as implied by the pegmatitic muscovite is corroborated from the aforementioned uranium-lead date. Biotite dated from these ductile shear zones signals the latest deformation in the basement, which was related to the 2000–1800 Ma Taltson-Thelon orogeny.
- Academic Unit
- Earth and Environmental Sciences
- Record Identifier
- 9983777058502771