U-PB SHRIMP GEOCHRONOLOGY AND TRACE-ELEMENT GEOCHEMISTRY OF COESITE-BEARING ZIRCONS, NORTH-EAST GREENLAND CALEDONIDES

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dc.contributor.author McClelland W.C.
dc.contributor.author Power S.E.
dc.contributor.author Gilotti J.A.
dc.contributor.author Mazdab F.K.
dc.contributor.author Wopenka B.
dc.date.accessioned 2025-03-22T08:33:39Z
dc.date.available 2025-03-22T08:33:39Z
dc.date.issued 2006
dc.identifier https://elibrary.ru/item.asp?id=22200773
dc.identifier.citation Special Paper of the Geological Society of America, 2006, 403, 403. С., 23-43
dc.identifier.issn 0072-1077
dc.identifier.uri https://repository.geologyscience.ru/handle/123456789/48617
dc.description.abstract Obtaining reliable estimates for the timing of eclogite-facies metamorphism is critical to establishing models for the formation and exhumation of high-pressure and ultrahigh-pressure (UHP) metamorphic terranes in collisional orogens. The presence of pressure-dependent phases, such as coesite, included in metamorphic zircon is generally regarded as evidence that zircon growth occurred at UHP conditions and, ifdated, should provide the necessary timing information. We report U-Pb sensitive high-resolution ion microprobe (SHRIMP) ages and trace-element SHRIMP data from coesite-bearing zircon suites formed during UHP metamorphism in the North- East Greenland Caledonides. Kyanite eclogite and quartzofeldspathic host gneiss samples from an island in Jøkelbugt (78°00'N, 18°04'W) contained subspherical zircons with well-defined domains in cathodoluminescence (CL) images. The presence of coesite is confirmed by Raman spectroscopy in six zircons from four samples. Additional components of the eclogite-facies inclusion suite include kyanite, omphacite, garnet, and rutile. The trace-element signatures in core domains reflect modification of igneous protolith zircon. Rim signatures show flat heavy rare earth element (HREE) patterns that are characteristic of eclogite-facies zircon. The kyanite eclogites generally lack a Eu anomaly, whereas a negative Eu anomaly persists in all domains of the host gneiss. The 207Pb- corrected 206Pb/238U ages range from 330 to 390 Ma for the host gneiss and 330-370 Ma for the kyanite eclogite. Weighted mean 206Pb/238U ages for coesite-bearing domains vary from 364 ± 8 Ma for the host gneiss to 350 ± 4 Ma for kyanite eclogite. The combined U-Pb and REE data interpreted in conjunction with observed CL domains and inclusion suites suggest that (1) Caledonian metamorphic zircon formed by both new zircon growth and recrystallization, (2) UHP metamorphism occurred near the end of the Caledonian collision, and (3) the 30-50m.y. span of ages records long residence times at eclogite-facies conditions for the UHProcks of North-East Greenland. This spread in observed ages is interpreted to be characteristic of metamorphic rocks that have experienced relatively long (longer than 10 m.y.) residence times at UHP conditions. © 2006 Geological Society of America.
dc.subject CALEDONIDES
dc.subject COESITE
dc.subject GREENLAND
dc.subject U-PB SHRIMP
dc.subject ULTRAHIGH-PRESSURE
dc.title U-PB SHRIMP GEOCHRONOLOGY AND TRACE-ELEMENT GEOCHEMISTRY OF COESITE-BEARING ZIRCONS, NORTH-EAST GREENLAND CALEDONIDES
dc.type Статья
dc.identifier.doi 10.1130/2006.2403(02)


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