Testing long-term patterns of basin sedimentation by detrital zircon geochronology, Centralian Superbasin, Australia

The definitive version is available at onlinelibrary.wiley.com Detrital zircon geochronology of Neoproterozoic to Devonian sedimentary rocks from the Georgina and Amadeus basins has been used to track changes in provenance that reflect the development and inversion of the former Australian Superbasi...

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Published in:Basin Research
Main Authors: Maidment, D., Williams, I., Hand, M.
Format: Article in Journal/Newspaper
Language:English
Published: Blackwell Science Ltd 2007
Subjects:
Online Access:http://hdl.handle.net/2440/44413
https://doi.org/10.1111/j.1365-2117.2007.00326.x
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spelling ftunivadelaidedl:oai:digital.library.adelaide.edu.au:2440/44413 2023-12-24T10:10:46+01:00 Testing long-term patterns of basin sedimentation by detrital zircon geochronology, Centralian Superbasin, Australia Maidment, D. Williams, I. Hand, M. 2007 http://hdl.handle.net/2440/44413 https://doi.org/10.1111/j.1365-2117.2007.00326.x en eng Blackwell Science Ltd Basin Research, 2007; 19(3):335-360 0950-091X 1365-2117 http://hdl.handle.net/2440/44413 doi:10.1111/j.1365-2117.2007.00326.x Hand, M. [0000-0003-3743-9706] http://dx.doi.org/10.1111/j.1365-2117.2007.00326.x Journal article 2007 ftunivadelaidedl https://doi.org/10.1111/j.1365-2117.2007.00326.x 2023-11-27T23:18:32Z The definitive version is available at onlinelibrary.wiley.com Detrital zircon geochronology of Neoproterozoic to Devonian sedimentary rocks from the Georgina and Amadeus basins has been used to track changes in provenance that reflect the development and inversion of the former Australian Superbasin. Through much of the Neoproterozoic, sediments appear to have been predominantly derived from local sources in the Arunta and Musgrave inliers. Close similarities between the detrital age signatures of late Neoproterozoic sedimentary rocks in the two basins suggests that they were contiguous at this time. A dominant population of 1.2–1.0 Ga zircon in Early Cambrian sediments of the Amadeus Basin reflects the uplift of the Musgrave Inlier during the Petermann Orogeny between 560 and 520 Ma, which shed a large volume of detritus northwards into the Amadeus Basin. Early Cambrian sedimentary rocks in the Georgina Basin have a much smaller proportion of 1.2–1.0 Ga detritus, possibly due to the formation of sub-basins along the northern margin of the Amadeus Basin which might have acted as a barrier to sediment transfer. An influx of 0.6–0.5 Ga zircon towards the end of the Cambrian coincides with the transgression of the Larapintine Sea across central Australia, possibly as a result of intracratonic rifting. Detrital zircon age spectra of sedimentary rocks deposited within this epicontinental sea are very similar to those of coeval sedimentary rocks from the Pacific Gondwana margin, implying that sediment was transported into central Australia from the eastern continental margin. The remarkably consistent ‘Pacific Gondwana’ signature of Cambro-Ordovician sediments in central and eastern Australia reflects a distal source, possibly from east Antarctica or the East African Orogen. The peak of the marine incursion into central Australia in the early to mid Ordovician coincides with granulite-facies metamorphism at mid-crustal depths between the Amadeus and Georgina basins (the Larapinta Event). The presence of the ... Article in Journal/Newspaper Antarc* Antarctica East Antarctica The University of Adelaide: Digital Library East Antarctica Pacific Basin Research 19 3 335 360
institution Open Polar
collection The University of Adelaide: Digital Library
op_collection_id ftunivadelaidedl
language English
description The definitive version is available at onlinelibrary.wiley.com Detrital zircon geochronology of Neoproterozoic to Devonian sedimentary rocks from the Georgina and Amadeus basins has been used to track changes in provenance that reflect the development and inversion of the former Australian Superbasin. Through much of the Neoproterozoic, sediments appear to have been predominantly derived from local sources in the Arunta and Musgrave inliers. Close similarities between the detrital age signatures of late Neoproterozoic sedimentary rocks in the two basins suggests that they were contiguous at this time. A dominant population of 1.2–1.0 Ga zircon in Early Cambrian sediments of the Amadeus Basin reflects the uplift of the Musgrave Inlier during the Petermann Orogeny between 560 and 520 Ma, which shed a large volume of detritus northwards into the Amadeus Basin. Early Cambrian sedimentary rocks in the Georgina Basin have a much smaller proportion of 1.2–1.0 Ga detritus, possibly due to the formation of sub-basins along the northern margin of the Amadeus Basin which might have acted as a barrier to sediment transfer. An influx of 0.6–0.5 Ga zircon towards the end of the Cambrian coincides with the transgression of the Larapintine Sea across central Australia, possibly as a result of intracratonic rifting. Detrital zircon age spectra of sedimentary rocks deposited within this epicontinental sea are very similar to those of coeval sedimentary rocks from the Pacific Gondwana margin, implying that sediment was transported into central Australia from the eastern continental margin. The remarkably consistent ‘Pacific Gondwana’ signature of Cambro-Ordovician sediments in central and eastern Australia reflects a distal source, possibly from east Antarctica or the East African Orogen. The peak of the marine incursion into central Australia in the early to mid Ordovician coincides with granulite-facies metamorphism at mid-crustal depths between the Amadeus and Georgina basins (the Larapinta Event). The presence of the ...
format Article in Journal/Newspaper
author Maidment, D.
Williams, I.
Hand, M.
spellingShingle Maidment, D.
Williams, I.
Hand, M.
Testing long-term patterns of basin sedimentation by detrital zircon geochronology, Centralian Superbasin, Australia
author_facet Maidment, D.
Williams, I.
Hand, M.
author_sort Maidment, D.
title Testing long-term patterns of basin sedimentation by detrital zircon geochronology, Centralian Superbasin, Australia
title_short Testing long-term patterns of basin sedimentation by detrital zircon geochronology, Centralian Superbasin, Australia
title_full Testing long-term patterns of basin sedimentation by detrital zircon geochronology, Centralian Superbasin, Australia
title_fullStr Testing long-term patterns of basin sedimentation by detrital zircon geochronology, Centralian Superbasin, Australia
title_full_unstemmed Testing long-term patterns of basin sedimentation by detrital zircon geochronology, Centralian Superbasin, Australia
title_sort testing long-term patterns of basin sedimentation by detrital zircon geochronology, centralian superbasin, australia
publisher Blackwell Science Ltd
publishDate 2007
url http://hdl.handle.net/2440/44413
https://doi.org/10.1111/j.1365-2117.2007.00326.x
geographic East Antarctica
Pacific
geographic_facet East Antarctica
Pacific
genre Antarc*
Antarctica
East Antarctica
genre_facet Antarc*
Antarctica
East Antarctica
op_source http://dx.doi.org/10.1111/j.1365-2117.2007.00326.x
op_relation Basin Research, 2007; 19(3):335-360
0950-091X
1365-2117
http://hdl.handle.net/2440/44413
doi:10.1111/j.1365-2117.2007.00326.x
Hand, M. [0000-0003-3743-9706]
op_doi https://doi.org/10.1111/j.1365-2117.2007.00326.x
container_title Basin Research
container_volume 19
container_issue 3
container_start_page 335
op_container_end_page 360
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