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New SHRIMP U-Pb zircon and titanite ages from the Cobar Basin and Lachlan Orogen, New South Wales. Mineral Systems Projects, July 2017 to June 2019

<div>This record presents nine new zircon and titanite U–Pb geochronological data, obtained via Sensitive High Resolution Ion Microprobe (SHRIMP) for seven samples of plutonic rocks from the Lachlan Orogen and the Cobar Basin, plus one garnet-bearing skarn vein from the Cobar region. Many of these new ages improve existing constraints on the timing of mineralisation in the Cobar Basin, as part of an ongoing Geochronology Project (Metals in Time), conducted by the Geological Survey of New South Wales (GSNSW) and Geoscience Australia (GA) under a National Collaboration Framework (NCF) agreement. The results herein (summarised in Table 1.1) correspond to zircon and titanite U–Pb SHRIMP analysis undertaken on GSNSW Mineral Systems projects over July 2017–June 2019.</div><div><br></div><div>Our new data establish an episode of c. 427–425 Ma I-type plutonism, coeval with regional S-type granites, which marginally predated opening of the Cobar Basin. Widespread S-type and high-level I-type magmatism accompanied 423–417 Ma basin development. At least two episodes of skarn-related mineralisation are recognised in the southern Cobar Basin: c. 387 Ma (from pre-mineralisation skarn veins) at Kershaws prospect, and c. 403 Ma at the adjacent Hera mine (Fitzherbert et al., 2021).</div><div><br></div><div>Three intrusive rocks were dated at the Norma Vale prospect in the southwestern Cobar Basin, where calcic iron-copper skarn mineralisation is thought to have been caused by I-type but compositionally complex high-level intrusive rocks emplaced along a northeast-oriented fault related to the nearby Rookery Fault (Fitzherbert et al., 2017). A 423 ± 8 Ma I-type quartz diorite potentially constrains the timing of skarn mineralisation, but is indistinguishable in age from a 421.3 ± 3.0 Ma S-type cordierite-biotite granite and a 417.5 ± 3.3 Ma coarse-grained S-type granite, both from deeper in the same drillhole. These results suggest that at least some of the coeval S-type and high-level I-type magmatic activity accompanying opening of the Cobar Basin was associated with early mineralisation, although skarn-forming processes regionally are complex and episodic (Fitzherbert et al., 2021).</div><div><br></div><div>In the Cobar mining belt, our new date of 422.8 ± 2.8 Ma for I-type rhyolitic porphyry at Carissa Shaft (which is one of the southernmost high-level intrusions associated with the Perseverance and Queen Bee orebodies) is coeval with the 423.2 ± 3.5 Ma ‘Peak rhyolite’ (Black, 2007), but marginally older than the 417.6 ± 3.0 Ma Queen Bee Porphyry (Black, 2005). At Gindoono, a 423.0&nbsp;±&nbsp;2.6&nbsp;Ma unnamed dacitic porphyry intruded and hornfelsed the undated I-type Majuba Volcanics, thereby establishing a minimum age for that unit.</div><div><br></div><div>East of Cobar, the I-type Wild Wave Granodiorite intruded the Ordovician Girilambone Group, but was exhumed and eroded to form clasts within pebble conglomerates of the lowermost Cobar Basin. Its new U–Pb SHRIMP zircon age of 424.1 ± 2.8 Ma constrains the timing of I-type plutonism which marginally predated formation of the Cobar Basin. A similar zircon age of 426.7 ± 2.3 Ma was obtained from the concealed Fountaindale Granodiorite north of Condoblin, indicating that this I-type pluton is coeval with the nearby and much larger c. 427 Ma S-type Erimeran Granite. Titanite from the same sample of Fountaindale Granodiorite yielded an age of 421.6 ± 2.7 Ma, which is significantly younger than the zircon age, and is interpreted to constrain the timing of ‘deuteric’ (chlorite-albite-epidote-titanite-sericite-carbonate) alteration during post-magmatic hydrothermal activity (e.g. Blevin, 2003b).</div><div><br></div><div>A garnet-bearing skarn vein at Kershaws prospect, adjacent to the Hera orebody (Fitzherbert et al., 2021), predates the main phase of mineralisation, and yielded a titanite age of 387.2 ±&nbsp;6.2&nbsp;Ma. This indicates that the skarn-forming hydrothermal event at Kershaws prospect is significantly younger than the c. 403 Ma age for the main mineralising event at Hera mine (Fitzherbert et al., 2021).</div>

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Date (Creation)
2022-08-03
Date (Publication)
2022-09-07T06:49:56
Citation identifier
Geoscience Australia Persistent Identifier/https://pid.geoscience.gov.au/dataset/ga/147038

Citation identifier
Digital Object Identifier/http://dx.doi.org/10.11636/Record.2022.034

Cited responsible party
Role Organisation / Individual Name Details
Publisher

Commonwealth of Australia (Geoscience Australia)

Voice
Author

Waltenberg, K.

Internal Contact
Author

Bodorkos, S.

Internal Contact
Author

Fitzherbert, J.A.

External Contact
Author

Blevin, P.L.

External Contact
Name

GA Record

Issue identification

GA Record 2022/34

Purpose

To publish new geochronology data

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Completed
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Minerals, Energy and Groundwater Division

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Commonwealth of Australia (Geoscience Australia)

Voice
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Waltenberg, K.

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  • Geoscientific information

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Product data repository: Various Formats

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Project
  • NCF – National Collaboration Framework

Keywords
  • geochronology

Keywords
  • New South Wales

Keywords
  • zircon

Keywords
  • titanite

Keywords
  • SHRIMP

Keywords
  • Cobar Basin

Keywords
  • Lachlan Orogen

theme.ANZRC Fields of Research.rdf
  • Geochronology

Keywords
  • Published_External

Resource constraints

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Creative Commons Attribution 4.0 International Licence

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CC-BY

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4.0

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https://creativecommons.org/licenses/by/4.0/

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© Commonwealth of Australia (Geoscience Australia) and State of New South Wales (Department of Regional NSW) 2022

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Title

Australian Government Security Classification System

Edition date
2018-11-01T00:00:00
Website

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

Classification
Unclassified
Classification system

Australian Government Security Classification System

Associated resource

Association Type
Larger work citation
Title

Geoscience Australia ISOTOPE Database

Citation identifier
131588

Citation identifier
68b73250-56ae-4b2a-88f9-3957ede60e36

Website

https://pid.geoscience.gov.au/dataset/ga/131588

Link to eCat metadata record landing page

Associated resource

Association Type
Larger work citation
Title

Geoscience Australia's Geochron Delivery system (first release: September 2011)

Citation identifier
72841

Citation identifier
acf759f9-fea2-1f37-e044-00144fdd4fa6

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https://pid.geoscience.gov.au/dataset/ga/72841

Link to eCat metadata record landing page

Language
English
Character encoding
UTF8

Distribution Information

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Commonwealth of Australia (Geoscience Australia)

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OnLine resource

Download the Record (pdf) [18.8 MB]

Download the Record (pdf) [18.8 MB]

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  • pdf

Resource lineage

Statement

<div>This Record published new U-Pb geochronology data collected from Geoscience Australia's SHRIMP instrument. This data has not been published or disseminated elsewhere.</div>

Metadata constraints

Title

Australian Government Security Classification System

Edition date
2018-11-01T00:00:00
Website

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

Classification
Unclassified

Metadata

Metadata identifier
urn:uuid/e4479811-8d72-4597-a310-e1cfd887ff37

Title

GeoNetwork UUID

Language
English
Character encoding
UTF8
Contact
Role Organisation / Individual Name Details
Point of contact

Commonwealth of Australia (Geoscience Australia)

Voice
Point of contact

Waltenberg, K.

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Name

GA Record

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Title

Geoscience Australia - short identifier for metadata record with

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eCatId/147038

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https://ecat.ga.gov.au/geonetwork/srv/eng/catalog.search#/metadata/e4479811-8d72-4597-a310-e1cfd887ff37

Date info (Creation)
2022-09-07T06:47:17
Date info (Revision)
2022-09-07T06:47:17

Metadata standard

Title

AU/NZS ISO 19115-1:2014

Metadata standard

Title

ISO 19115-1:2014

Metadata standard

Title

ISO 19115-3

Title

Geoscience Australia Community Metadata Profile of ISO 19115-1:2014

Edition

Version 2.0, September 2018

Citation identifier
https://pid.geoscience.gov.au/dataset/ga/122551

 
 

Spatial extent

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S
E
W


Keywords

NCF – National Collaboration Framework
theme.ANZRC Fields of Research.rdf
Geochronology

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