Nd and Sr isotopic signatures of metasedimentary rocks around the South Pacific margin and implications for their provenance

An Nd-Sr isotope database, including c. 200 new analyses, is presented for Palaeozoic and Mesozoic metasedimentary successions extending through southeastern Australia, New Zealand, West Antarctica and the Antarctic Peninsula to southern South America. Combining with U-Pb detrital zircon age data, t...

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Bibliographic Details
Main Authors: C. J. Adams, R. J. Pankhurst, R. Maas, I. L. Millar
Format: Dataset
Language:unknown
Published: 2016
Subjects:
NW
Online Access:https://doi.org/10.6084/m9.figshare.3454286.v1
https://figshare.com/articles/Nd_and_Sr_isotopic_signatures_of_metasedimentary_rocks_around_the_South_Pacific_margin_and_implications_for_their_provenance/3454286
id ftgeosoclonfig:oai:figshare.com:article/3454286
record_format openpolar
spelling ftgeosoclonfig:oai:figshare.com:article/3454286 2023-05-15T13:33:01+02:00 Nd and Sr isotopic signatures of metasedimentary rocks around the South Pacific margin and implications for their provenance C. J. Adams R. J. Pankhurst R. Maas I. L. Millar 2016-06-21T12:01:30Z https://doi.org/10.6084/m9.figshare.3454286.v1 https://figshare.com/articles/Nd_and_Sr_isotopic_signatures_of_metasedimentary_rocks_around_the_South_Pacific_margin_and_implications_for_their_provenance/3454286 unknown doi:10.6084/m9.figshare.3454286.v1 https://figshare.com/articles/Nd_and_Sr_isotopic_signatures_of_metasedimentary_rocks_around_the_South_Pacific_margin_and_implications_for_their_provenance/3454286 CC BY 4.0 CC-BY Geology Province source New Zealand South American equivalent West Antarctica provenance Peninsula NW South Pacific margin Mesozoic metasedimentary successions New Zealand terranes Palaeozoic Nd model ages westernmost accretionary terranes Dataset 2016 ftgeosoclonfig https://doi.org/10.6084/m9.figshare.3454286.v1 2020-02-21T07:23:38Z An Nd-Sr isotope database, including c. 200 new analyses, is presented for Palaeozoic and Mesozoic metasedimentary successions extending through southeastern Australia, New Zealand, West Antarctica and the Antarctic Peninsula to southern South America. Combining with U-Pb detrital zircon age data, this enables characterization of New Zealand terranes, especially within the Eastern Province, where there is a progression from westernmost terranes of both volcanic/volcaniclastic and accretionary origin with primitive sediment sources, to easternmost terranes with mature continental sediment inputs. In southern South America, West Antarctica and the Antarctica Peninsula, similar accretionary complexes have Nd model ages principally reflecting mixing of sedimentary material from multiple sources, both mature and juvenile. A mature Gondwana continental provenance dominates in sedimentary basins inboard of the active margin, especially in the Palaeozoic (Western Province, New Zealand, interior West Antarctica and NW Argentina), and contributes significantly to pre-Mesozoic sedimentary rocks of Patagonia east of the Andes. Along the Gondwanaland margin, Nd systematics for younger (late Palaeozoic to early Mesozoic) accretionary complex metasediments reflect younger source inputs, notably in the Scotia metamorphic complex. Many of the accretionary complex deposits must involve significant crustal reworking. There is no apparent South American equivalent of the primitive provenance of the westernmost accretionary terranes of New Zealand. Dataset Antarc* Antarctic Antarctic Peninsula Antarctica West Antarctica Geological Society of London: Figshare Antarctic Antarctic Peninsula Argentina New Zealand Pacific Patagonia The Antarctic West Antarctica
institution Open Polar
collection Geological Society of London: Figshare
op_collection_id ftgeosoclonfig
language unknown
topic Geology
Province
source
New Zealand
South American equivalent
West Antarctica
provenance
Peninsula
NW
South Pacific margin
Mesozoic metasedimentary successions
New Zealand terranes
Palaeozoic
Nd model ages
westernmost accretionary terranes
spellingShingle Geology
Province
source
New Zealand
South American equivalent
West Antarctica
provenance
Peninsula
NW
South Pacific margin
Mesozoic metasedimentary successions
New Zealand terranes
Palaeozoic
Nd model ages
westernmost accretionary terranes
C. J. Adams
R. J. Pankhurst
R. Maas
I. L. Millar
Nd and Sr isotopic signatures of metasedimentary rocks around the South Pacific margin and implications for their provenance
topic_facet Geology
Province
source
New Zealand
South American equivalent
West Antarctica
provenance
Peninsula
NW
South Pacific margin
Mesozoic metasedimentary successions
New Zealand terranes
Palaeozoic
Nd model ages
westernmost accretionary terranes
description An Nd-Sr isotope database, including c. 200 new analyses, is presented for Palaeozoic and Mesozoic metasedimentary successions extending through southeastern Australia, New Zealand, West Antarctica and the Antarctic Peninsula to southern South America. Combining with U-Pb detrital zircon age data, this enables characterization of New Zealand terranes, especially within the Eastern Province, where there is a progression from westernmost terranes of both volcanic/volcaniclastic and accretionary origin with primitive sediment sources, to easternmost terranes with mature continental sediment inputs. In southern South America, West Antarctica and the Antarctica Peninsula, similar accretionary complexes have Nd model ages principally reflecting mixing of sedimentary material from multiple sources, both mature and juvenile. A mature Gondwana continental provenance dominates in sedimentary basins inboard of the active margin, especially in the Palaeozoic (Western Province, New Zealand, interior West Antarctica and NW Argentina), and contributes significantly to pre-Mesozoic sedimentary rocks of Patagonia east of the Andes. Along the Gondwanaland margin, Nd systematics for younger (late Palaeozoic to early Mesozoic) accretionary complex metasediments reflect younger source inputs, notably in the Scotia metamorphic complex. Many of the accretionary complex deposits must involve significant crustal reworking. There is no apparent South American equivalent of the primitive provenance of the westernmost accretionary terranes of New Zealand.
format Dataset
author C. J. Adams
R. J. Pankhurst
R. Maas
I. L. Millar
author_facet C. J. Adams
R. J. Pankhurst
R. Maas
I. L. Millar
author_sort C. J. Adams
title Nd and Sr isotopic signatures of metasedimentary rocks around the South Pacific margin and implications for their provenance
title_short Nd and Sr isotopic signatures of metasedimentary rocks around the South Pacific margin and implications for their provenance
title_full Nd and Sr isotopic signatures of metasedimentary rocks around the South Pacific margin and implications for their provenance
title_fullStr Nd and Sr isotopic signatures of metasedimentary rocks around the South Pacific margin and implications for their provenance
title_full_unstemmed Nd and Sr isotopic signatures of metasedimentary rocks around the South Pacific margin and implications for their provenance
title_sort nd and sr isotopic signatures of metasedimentary rocks around the south pacific margin and implications for their provenance
publishDate 2016
url https://doi.org/10.6084/m9.figshare.3454286.v1
https://figshare.com/articles/Nd_and_Sr_isotopic_signatures_of_metasedimentary_rocks_around_the_South_Pacific_margin_and_implications_for_their_provenance/3454286
geographic Antarctic
Antarctic Peninsula
Argentina
New Zealand
Pacific
Patagonia
The Antarctic
West Antarctica
geographic_facet Antarctic
Antarctic Peninsula
Argentina
New Zealand
Pacific
Patagonia
The Antarctic
West Antarctica
genre Antarc*
Antarctic
Antarctic Peninsula
Antarctica
West Antarctica
genre_facet Antarc*
Antarctic
Antarctic Peninsula
Antarctica
West Antarctica
op_relation doi:10.6084/m9.figshare.3454286.v1
https://figshare.com/articles/Nd_and_Sr_isotopic_signatures_of_metasedimentary_rocks_around_the_South_Pacific_margin_and_implications_for_their_provenance/3454286
op_rights CC BY 4.0
op_rightsnorm CC-BY
op_doi https://doi.org/10.6084/m9.figshare.3454286.v1
_version_ 1766037731394191360