Palaeoproterozoic and Archaean gneiss complexes in northern Greenland: Palaeoproterozoic terrane assembly in the High Arctic

The Precambrian shield of northern Greenland has been investigated by SHRIMP U-Pb zircon dating of 14 orthogneisses and granitoids plus 5 metasediments, integrated with mapping by the Geological Survey of Denmark and Greenland and whole-rock Nd isotopic studies. The Inglefield Mobile Belt is a tract...

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Bibliographic Details
Main Authors: Nutman, Allen, Dawes, Peter R., Kalsbeek, Feiko, Hamilton, Michael A.
Format: Article in Journal/Newspaper
Language:unknown
Published: Elsevier 2015
Subjects:
Online Access:http://hdl.handle.net/1885/81917
id ftanucanberra:oai:digitalcollections.anu.edu.au:1885/81917
record_format openpolar
institution Open Polar
collection Australian National University: ANU Digital Collections
op_collection_id ftanucanberra
language unknown
topic Keywords: amphibolite
magmatism
mapping
metamorphism
metasediment
mica
orthogneiss
plutonic rock
Proterozoic
SHRIMP dating
terrane
uranium-lead dating
Arctic
Arctic Ocean
Baffin Bay [Arctic Ocean]
Canada
Greenland
North America Early Precambrian terranes
Inglefield Mobile Belt
Magmatic arc
Metasediments
Northern Greenland
Plutonic rocks
SHRIMP U-Pb zircon dating
Sm-Nd model ages
spellingShingle Keywords: amphibolite
magmatism
mapping
metamorphism
metasediment
mica
orthogneiss
plutonic rock
Proterozoic
SHRIMP dating
terrane
uranium-lead dating
Arctic
Arctic Ocean
Baffin Bay [Arctic Ocean]
Canada
Greenland
North America Early Precambrian terranes
Inglefield Mobile Belt
Magmatic arc
Metasediments
Northern Greenland
Plutonic rocks
SHRIMP U-Pb zircon dating
Sm-Nd model ages
Nutman, Allen
Dawes, Peter R.
Kalsbeek, Feiko
Hamilton, Michael A.
Palaeoproterozoic and Archaean gneiss complexes in northern Greenland: Palaeoproterozoic terrane assembly in the High Arctic
topic_facet Keywords: amphibolite
magmatism
mapping
metamorphism
metasediment
mica
orthogneiss
plutonic rock
Proterozoic
SHRIMP dating
terrane
uranium-lead dating
Arctic
Arctic Ocean
Baffin Bay [Arctic Ocean]
Canada
Greenland
North America Early Precambrian terranes
Inglefield Mobile Belt
Magmatic arc
Metasediments
Northern Greenland
Plutonic rocks
SHRIMP U-Pb zircon dating
Sm-Nd model ages
description The Precambrian shield of northern Greenland has been investigated by SHRIMP U-Pb zircon dating of 14 orthogneisses and granitoids plus 5 metasediments, integrated with mapping by the Geological Survey of Denmark and Greenland and whole-rock Nd isotopic studies. The Inglefield Mobile Belt is a tract of Palaeoproterozoic sedimentation, plutonism, polyphase deformation and high-grade metamorphism that underlies Inglefield Land and northern Prudhoe Land. In the southern part of the belt at 78°30′N, the E-W-trending Sunrise Pynt Straight Belt is a high-grade, but structurally late, shear zone with contrasts in the geology on either side. South of the Sunrise Pynt Straight Belt, ca. 1980 Ma diorites and tonalites were emplaced into older orthogneisses and metasediments. Detrital zircons from two metaquartzites (deposited on Archaean basement?) yielded complex age spectra from ca. 3250 Ma to 2350 Ma, with 2600-2450 Ma grains dominant. In associated mica schist, low Th/U, 1923 ± 8 Ma zircons date high-grade metamorphism. The most southern orthogneiss investigated (77°45′N) is Neoarchaean (ca. 2600 Ma), in agreement with previously published isotopic data. North of the Sunrise Pynt Straight Belt to 79°10′N an amphibolite-granulite-facies complex with extensive pelitic to psammitic paragneisses are the oldest rocks recognised. Two psammitic paragneisses yielded unrounded zircons with a unimodal detrital age population centred on 2000-1980 Ma. Their source could be ca. 1980 Ma orthogneisses from south of the Sunrise Pynt Straight Belt, or from basement inliers in the North-East Greenland Caledonian fold belt. The metasediments were intruded by tonalites and diorites with dates of 1949 ± 13 Ma and 1943 ± 11 Ma, and then by granitoids (free of zircon inherited from older rocks) with ages of 1924 ± 29 Ma to 1915 ± 19 Ma. The metasediments show development of low Th/U zircon overgrowths at ca. 1920 Ma, coeval with the granitoids. Finally, other granites, some locally transformed into gneisses, have ages of 1783 ± 22 Ma to 1741 ± 15 Ma. Inherited zircons in the latter are up to 2650 Ma old. A granite dyke with a zircon age of 1783 Ma has an TDM age of 2981 Ma and a strongly negative εNd at 1.78 Ga, indicating derivation by melting or reworking of Archaean crust. Thus, by 1800 Ma this juvenile Palaeoproterozoic terrane had probably overridden crust with Archaean components. North of Inglefield Land, Precambrian crystalline rocks are obscured until Victoria Fjord (81°30′N). One reconnaissance orthogneiss sample from there contains ca. 3400 Ma oscillatory-zoned zircons, which probably date the rock, rather than being a xenocrystic component in a younger rock. Thus, from north to south there is an assemblage of Archaean, Palaeoproterozoic and Archaean to early Palaeoproterozoic gneiss terranes. The Inglefield Mobile Belt is dominated by juvenile Palaeoproterozoic arc crust trapped between two unrelated blocks of Archaean crust of contrasting age. The collision, and probably thrusting of a Palaeoproterozoic arc over a southern Archaean foreland, occurred at ca. 1920 Ma-dated by metamorphic zircon. The new isotopic results consolidate the regional mapping of Archaean and Palaeoproterozoic complexes across northern Baffin Bay that show continuity from Canada into Greenland, without displacement across the Nares Strait.
format Article in Journal/Newspaper
author Nutman, Allen
Dawes, Peter R.
Kalsbeek, Feiko
Hamilton, Michael A.
author_facet Nutman, Allen
Dawes, Peter R.
Kalsbeek, Feiko
Hamilton, Michael A.
author_sort Nutman, Allen
title Palaeoproterozoic and Archaean gneiss complexes in northern Greenland: Palaeoproterozoic terrane assembly in the High Arctic
title_short Palaeoproterozoic and Archaean gneiss complexes in northern Greenland: Palaeoproterozoic terrane assembly in the High Arctic
title_full Palaeoproterozoic and Archaean gneiss complexes in northern Greenland: Palaeoproterozoic terrane assembly in the High Arctic
title_fullStr Palaeoproterozoic and Archaean gneiss complexes in northern Greenland: Palaeoproterozoic terrane assembly in the High Arctic
title_full_unstemmed Palaeoproterozoic and Archaean gneiss complexes in northern Greenland: Palaeoproterozoic terrane assembly in the High Arctic
title_sort palaeoproterozoic and archaean gneiss complexes in northern greenland: palaeoproterozoic terrane assembly in the high arctic
publisher Elsevier
publishDate 2015
url http://hdl.handle.net/1885/81917
long_lat ENVELOPE(-69.987,-69.987,78.637,78.637)
ENVELOPE(158.167,158.167,-81.450,-81.450)
ENVELOPE(-67.528,-67.528,77.762,77.762)
ENVELOPE(-72.849,-72.849,78.320,78.320)
ENVELOPE(-46.000,-46.000,82.167,82.167)
geographic Arctic
Arctic Ocean
Baffin Bay
Canada
Greenland
Inglefield Land
Nares
Prudhoe Land
Sunrise Pynt
Victoria Fjord
geographic_facet Arctic
Arctic Ocean
Baffin Bay
Canada
Greenland
Inglefield Land
Nares
Prudhoe Land
Sunrise Pynt
Victoria Fjord
genre Arctic
Arctic Ocean
Baffin Bay
Baffin Bay
Baffin
East Greenland
Greenland
Inglefield land
Nares strait
Prudhoe land
Victoria fjord
genre_facet Arctic
Arctic Ocean
Baffin Bay
Baffin Bay
Baffin
East Greenland
Greenland
Inglefield land
Nares strait
Prudhoe land
Victoria fjord
op_source Precambrian Research
op_relation 0301-9268
http://hdl.handle.net/1885/81917
_version_ 1766331555049897984
spelling ftanucanberra:oai:digitalcollections.anu.edu.au:1885/81917 2023-05-15T14:59:27+02:00 Palaeoproterozoic and Archaean gneiss complexes in northern Greenland: Palaeoproterozoic terrane assembly in the High Arctic Nutman, Allen Dawes, Peter R. Kalsbeek, Feiko Hamilton, Michael A. 2015-12-13T22:53:40Z http://hdl.handle.net/1885/81917 unknown Elsevier 0301-9268 http://hdl.handle.net/1885/81917 Precambrian Research Keywords: amphibolite magmatism mapping metamorphism metasediment mica orthogneiss plutonic rock Proterozoic SHRIMP dating terrane uranium-lead dating Arctic Arctic Ocean Baffin Bay [Arctic Ocean] Canada Greenland North America Early Precambrian terranes Inglefield Mobile Belt Magmatic arc Metasediments Northern Greenland Plutonic rocks SHRIMP U-Pb zircon dating Sm-Nd model ages Journal article 2015 ftanucanberra 2015-12-28T23:37:57Z The Precambrian shield of northern Greenland has been investigated by SHRIMP U-Pb zircon dating of 14 orthogneisses and granitoids plus 5 metasediments, integrated with mapping by the Geological Survey of Denmark and Greenland and whole-rock Nd isotopic studies. The Inglefield Mobile Belt is a tract of Palaeoproterozoic sedimentation, plutonism, polyphase deformation and high-grade metamorphism that underlies Inglefield Land and northern Prudhoe Land. In the southern part of the belt at 78°30′N, the E-W-trending Sunrise Pynt Straight Belt is a high-grade, but structurally late, shear zone with contrasts in the geology on either side. South of the Sunrise Pynt Straight Belt, ca. 1980 Ma diorites and tonalites were emplaced into older orthogneisses and metasediments. Detrital zircons from two metaquartzites (deposited on Archaean basement?) yielded complex age spectra from ca. 3250 Ma to 2350 Ma, with 2600-2450 Ma grains dominant. In associated mica schist, low Th/U, 1923 ± 8 Ma zircons date high-grade metamorphism. The most southern orthogneiss investigated (77°45′N) is Neoarchaean (ca. 2600 Ma), in agreement with previously published isotopic data. North of the Sunrise Pynt Straight Belt to 79°10′N an amphibolite-granulite-facies complex with extensive pelitic to psammitic paragneisses are the oldest rocks recognised. Two psammitic paragneisses yielded unrounded zircons with a unimodal detrital age population centred on 2000-1980 Ma. Their source could be ca. 1980 Ma orthogneisses from south of the Sunrise Pynt Straight Belt, or from basement inliers in the North-East Greenland Caledonian fold belt. The metasediments were intruded by tonalites and diorites with dates of 1949 ± 13 Ma and 1943 ± 11 Ma, and then by granitoids (free of zircon inherited from older rocks) with ages of 1924 ± 29 Ma to 1915 ± 19 Ma. The metasediments show development of low Th/U zircon overgrowths at ca. 1920 Ma, coeval with the granitoids. Finally, other granites, some locally transformed into gneisses, have ages of 1783 ± 22 Ma to 1741 ± 15 Ma. Inherited zircons in the latter are up to 2650 Ma old. A granite dyke with a zircon age of 1783 Ma has an TDM age of 2981 Ma and a strongly negative εNd at 1.78 Ga, indicating derivation by melting or reworking of Archaean crust. Thus, by 1800 Ma this juvenile Palaeoproterozoic terrane had probably overridden crust with Archaean components. North of Inglefield Land, Precambrian crystalline rocks are obscured until Victoria Fjord (81°30′N). One reconnaissance orthogneiss sample from there contains ca. 3400 Ma oscillatory-zoned zircons, which probably date the rock, rather than being a xenocrystic component in a younger rock. Thus, from north to south there is an assemblage of Archaean, Palaeoproterozoic and Archaean to early Palaeoproterozoic gneiss terranes. The Inglefield Mobile Belt is dominated by juvenile Palaeoproterozoic arc crust trapped between two unrelated blocks of Archaean crust of contrasting age. The collision, and probably thrusting of a Palaeoproterozoic arc over a southern Archaean foreland, occurred at ca. 1920 Ma-dated by metamorphic zircon. The new isotopic results consolidate the regional mapping of Archaean and Palaeoproterozoic complexes across northern Baffin Bay that show continuity from Canada into Greenland, without displacement across the Nares Strait. Article in Journal/Newspaper Arctic Arctic Ocean Baffin Bay Baffin Bay Baffin East Greenland Greenland Inglefield land Nares strait Prudhoe land Victoria fjord Australian National University: ANU Digital Collections Arctic Arctic Ocean Baffin Bay Canada Greenland Inglefield Land ENVELOPE(-69.987,-69.987,78.637,78.637) Nares ENVELOPE(158.167,158.167,-81.450,-81.450) Prudhoe Land ENVELOPE(-67.528,-67.528,77.762,77.762) Sunrise Pynt ENVELOPE(-72.849,-72.849,78.320,78.320) Victoria Fjord ENVELOPE(-46.000,-46.000,82.167,82.167)