U-PB SYSTEMATICS OF THE MCCLURE MOUNTAIN SYENITE: THERMOCHRONOLOGICAL CONSTRAINTS ON THE AGE OF THE 40AR/39AR STANDARD MMHB

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dc.contributor.author Schoene B.
dc.contributor.author Bowring S.A.
dc.date.accessioned 2024-09-28T07:10:29Z
dc.date.available 2024-09-28T07:10:29Z
dc.date.issued 2006
dc.identifier https://www.elibrary.ru/item.asp?id=14468606
dc.identifier.citation Contributions to Mineralogy and Petrology, 2006, 151, 5, 615-630
dc.identifier.issn 0010-7999
dc.identifier.uri https://repository.geologyscience.ru/handle/123456789/45427
dc.description.abstract Recent advances in U-Pb geochronology allow unprecedented levels of precision in the determination of geological ages. However, increased precision has also illuminated the importance of understanding subtle sources of open-system behavior such as Pb-loss, inheritance, intermediate daughter product disequilibria, and the accuracy of the model assumptions for initial Pb. Deconvolution of these effects allows a much richer understanding of the power and limitations of U-Pb geochronology and thermochronology. In this study, we report high-precision ID-TIMS U-Pb data from zircon, baddelleyite, titanite and apatite from the McClure Mountain syenite, from which the 40Ar/39Ar hornblende standard MMhb is derived. We find that excess 206Pb in zircon due to inclusions of high-Th minerals and elevated Th/U in titanite and apatite jeopardize the utility of the 238U-206Pb system in this rock. Strongly air-abraded zircons give dates that are younger than chemical-abraded zircons, which yield a statistically robust 207Pb/235U date of 523.98± 0.12 Ma that is interpreted as the crystallization age. We explore the best method of Pbc correction in titanite and apatite by analyzing the U-Pb isotopes of K-feldspar and using 2-D and 3-D regression methods-the latter of which yields the best results in each case. However, the calculated compositions of Pbc for titanite, apatite and K-feldspar are different, implying that using a single Pbc correction for multiple U-Pb thermochronometers may be inaccurate. The U-Pb thermochronological results are used to predict a closure time for Ar in hornblende of 522.98±1.00 Ma. Widely cited K-Ar and 40Ar/39Ar dates overlap with the U-Pb date, and relatively large errors make it impossible to verify whether U-Pb dates are systematically ≥ 1% older than K-Ar and 40Ar/39Ar dates. © Springer-Verlag 2006.
dc.title U-PB SYSTEMATICS OF THE MCCLURE MOUNTAIN SYENITE: THERMOCHRONOLOGICAL CONSTRAINTS ON THE AGE OF THE 40AR/39AR STANDARD MMHB
dc.type Статья
dc.identifier.doi 10.1007/s00410-006-0077-4


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