K. Grice

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Curtin University
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Australia

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Recent Grants

Grant: Close

Australian Membership of the International Ocean Discovery Program 2023-24

Open Date: 2023-01-01

Close Date: 2024-12-31

Grant: Close

The molecular record in extraordinarily preserved plants and insects

Open Date: 2022-12-14

Close Date: 2025-12-13

Grant: Open

Interpreting the molecular record in extraordinarily preserved fossils

Open Date: 2021-09-01

Close Date: 2026-08-31

Grant: Close

Australian Membership of the International Ocean Discovery Program

Open Date: 2021-08-27

Close Date: 2023-08-26

Grant: Close

A novel ToF-SIMS facility for organic and inorganic analyses in WA

Open Date: 2019-01-01

Close Date: 2019-12-31

Articles (12)

The potential extent of Early Triassic Kockatea Shale equivalent source rocks in the Northern Carnarvon and Perth Basins, Western Australia

In the northern Perth Basin (Western Australia), the Early Triassic Kockatea Shale is the primary petroleum source rock. Possible source rocks in the Northern Carnarvon Basin are more varied and include the Upper Jurassic Dingo Claystone as well as the Early Triassic Locker Shale. Biomarker analyses were conducted on petroleum samples from these basins to understand the nature of the petroleum systems. Many of the analysed petroleum samples contain carotenoids (okenane, chlorobactane and isorenieratane) derived from photosynthetic sulfur bacteria, suggesting that their source rocks were deposited under conditions of photic zone euxinia (PZE) and/or derived from microbialites. In the northern Perth Basin, the major lithofacies contributing to the source rock are dark coloured mudstones deposited under PZE conditions and/or derived from microbialites. In the southern Perth Basin, the potential source rock is either Permian, Jurassic or Cretaceous in age as indicated by the low concentrations or absence of carotenoids and the Triassic biomarker n -C 33 alkylcyclohexane. There is also a possibility that the Lower Triassic Locker Shale is the source rock of petroleum in the Tubridgi field on the Peedamullah Shelf of the Northern Carnarvon Basin, based on the similarity of biomarkers to Perth Basin petroleum sourced from the Kockatea Shale. However, the possibility of charge from the Upper Jurassic Dingo Claystone cannot be entirely excluded. Supplementary material: biomarker dataset is available at https://doi.org/10.6084/m9.figshare.c.6452153

Year:

2023

Collaborators (12)

Steven Rowland

University of Plymouth

UNITED KINGDOM

William Rickard

Associate Professor

Curtin University

AUSTRALIA

Ross Large

Emeritus Distinguished Professor

University of Tasmania

AUSTRALIA

I. Belousov

University of Tasmania

AUSTRALIA

Luke Brosnan

Curtin University

AUSTRALIA

Birger Rasmussen

University of Western Australia

AUSTRALIA

Hendrik Vogel

Senior Lecturer

University of Bern

SWITZERLAND

Jochen Brocks

Australian National University

AUSTRALIA

Paul Olsen

Professor

Columbia University

UNITED STATES

Marco Coolen

Deputy Director WA-OIGC and A/Prof. Geomicrobiology

Curtin University

AUSTRALIA

Elena Lounejeva

University of Tasmania

AUSTRALIA

Francis Spilsbury

Curtin University

AUSTRALIA
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