Data

A strontium isoscape of inland southeastern Australia

Geoscience Australia
de Caritat, P. ; Dosseto, A. ; Dux, F.
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ctx_ver=Z39.88-2004&rft_val_fmt=info%3Aofi%2Ffmt%3Akev%3Amtx%3Adc&rfr_id=info%3Asid%2FANDS&rft_id=https://pid.geoscience.gov.au/dataset/ga/146397&rft.title=A strontium isoscape of inland southeastern Australia&rft.identifier=https://pid.geoscience.gov.au/dataset/ga/146397&rft.publisher=Commonwealth of Australia (Geoscience Australia)&rft.description=The values and distribution patterns of the strontium (Sr) isotope ratio 87Sr/86Sr in Earth surface materials is of use in the geological, environmental and social sciences. Ultimately, the 87Sr/86Sr ratio of any mineral or biological material reflects its value in the rock that is the parent material to the local soil and everything that lives in and on it. In Australia, there are few large-scale surveys of 87Sr/86Sr available, and here we report on a new, low-density dataset using 112 catchment outlet (floodplain) sediment samples covering 529,000 km2 of inland southeastern Australia (South Australia, New South Wales, Victoria). The coarse (Maintenance and Update Frequency: asNeededStatement: National Geochemical Survey of Australia (doi: 10.11636/Record.2011.020)&rft.creator=de Caritat, P. &rft.creator=Dosseto, A. &rft.creator=Dux, F. &rft.date=2019&rft.coverage=westlimit=138.00; southlimit=-37.00; eastlimit=146.00; northlimit=-28.00&rft.coverage=westlimit=138.00; southlimit=-37.00; eastlimit=146.00; northlimit=-28.00&rft_rights=&rft_rights=Creative Commons Attribution 4.0 International Licence&rft_rights=CC-BY&rft_rights=4.0&rft_rights=http://creativecommons.org/licenses/&rft_rights=Australian Government Security ClassificationSystem&rft_rights=https://www.protectivesecurity.gov.au/Pages/default.aspx&rft_rights=WWW:LINK-1.0-http--link&rft_rights=Creative Commons Attribution 4.0 International Licence http://creativecommons.org/licenses/by/4.0&rft_subject=geoscientificInformation&rft_subject=Exploration Geochemistry&rft_subject=ENVIRONMENTAL SCIENCE AND MANAGEMENT&rft_subject=Soil Chemistry (excl. Carbon Sequestration Science)&rft_subject=SOIL SCIENCES&rft_subject=Isotope Geochemistry&rft_subject=EARTH SCIENCES&rft_subject=ENVIRONMENTAL SCIENCES&rft_subject=Published_External&rft.type=dataset&rft.language=English Access the data

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Creative Commons Attribution 4.0 International Licence
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Creative Commons Attribution 4.0 International Licence

CC-BY

4.0

http://creativecommons.org/licenses/

Australian Government Security ClassificationSystem

https://www.protectivesecurity.gov.au/Pages/default.aspx

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Brief description

The values and distribution patterns of the strontium (Sr) isotope ratio 87Sr/86Sr in Earth surface materials is of use in the geological, environmental and social sciences. Ultimately, the 87Sr/86Sr ratio of any mineral or biological material reflects its value in the rock that is the parent material to the local soil and everything that lives in and on it. In Australia, there are few large-scale surveys of 87Sr/86Sr available, and here we report on a new, low-density dataset using 112 catchment outlet (floodplain) sediment samples covering 529,000 km2 of inland southeastern Australia (South Australia, New South Wales, Victoria). The coarse (<2 mm) fraction of bottom sediment samples (depth ~0.6-0.8 m) from the National Geochemical Survey of Australia were fully digested before Sr separation by chromatography and 87Sr/86Sr determination by multicollector-inductively coupled plasma-mass spectrometry. The results show a wide range of 87Sr/86Sr values from a minimum of 0.7089 to a maximum of 0.7511 (range 0.0422). The median 87Sr/86Sr (± robust standard deviation) is 0.7199 (± 0.0112), and the mean (± standard deviation) is 0.7220 (± 0.0106). The spatial patterns of the Sr isoscape observed are described and attributed to various geological sources and processes. Of note are the elevated (radiogenic) values (≥~0.7270; top quartile) contributed by (1) the Palaeozoic sedimentary country rock and (mostly felsic) igneous intrusions of the Lachlan geological region to the east of the study area; (2) the Palaeoproterozoic metamorphic rocks of the central Broken Hill region; both these sources contribute fluvial sediments into the study area; and (3) the Proterozoic to Palaeozoic rocks of the Kanmantoo, Adelaide, Gawler and Painter geological regions to the west of the area; these sources contribute radiogenic material to the region mostly by aeolian processes. Regions of low 87Sr/86Sr (≤~0.7130; bottom quartile) belong mainly to (1) a few central Murray Basin catchments; (2) some Darling Basin catchments in the northeast; and (3) a few Eromanga geological region-influenced catchments in the northwest of the study area. The new spatial dataset is publicly available through the Geoscience Australia portal (https://portal.ga.gov.au/restore/cd686f2d-c87b-41b8-8c4b-ca8af531ae7e).

Lineage

Maintenance and Update Frequency: asNeeded
Statement: National Geochemical Survey of Australia (doi: 10.11636/Record.2011.020)

Notes

Purpose
Manuscript for external publication

Issued: 26 04 2022

Data time period: 2020-01-01 to 2021-12-31

This dataset is part of a larger collection

Click to explore relationships graph

146,-28 146,-37 138,-37 138,-28 146,-28

142,-32.5

text: westlimit=138.00; southlimit=-37.00; eastlimit=146.00; northlimit=-28.00

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Identifiers