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Status : Active
Research Topic : Population-based
Australian State/Territory : TAS
Australian State/Territory : SA
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  • Active Funded Activity

    Linkage Projects - Grant ID: LP220200912

    Funder
    Australian Research Council
    Funding Amount
    $612,689.00
    Summary
    Hydrogen generation by subsurface iron mineral transformations. Aim The aim of this project is to elucidate key factors responsible for natural hydrogen generation in Australian subsurface environments. Significance Large amounts of this valuable resource are produced naturally with estimates of production rates of this “gold” hydrogen at least 100 times the annual demand for this critical resource. Expected Outcomes Based on improved understanding of the source of natural hydrogen, predictive .... Hydrogen generation by subsurface iron mineral transformations. Aim The aim of this project is to elucidate key factors responsible for natural hydrogen generation in Australian subsurface environments. Significance Large amounts of this valuable resource are produced naturally with estimates of production rates of this “gold” hydrogen at least 100 times the annual demand for this critical resource. Expected Outcomes Based on improved understanding of the source of natural hydrogen, predictive tools will be developed that will assist in assessing the viability in Australia of hydrogen exploration and engineered retrieval. Benefits Ready access to naturally produced hydrogen could enable Australia to replace hydrogen that is currently generated via the use of unabated hydrocarbons.
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    Active Funded Activity

    Discovery Projects - Grant ID: DP240102019

    Funder
    Australian Research Council
    Funding Amount
    $523,813.00
    Summary
    Detecting and deciphering extinction dynamics under environmental change. This project aims to improve knowledge of extinction processes and impacts. It will use high-performance computing and museum collections to disentangle the ecological mechanisms that were integral in the initial decline and later extinction of Australia's unique mammals. Its significance is that it will establish the historical ranges and past population trajectories of Australian threatened mammals, pinpointing the combi .... Detecting and deciphering extinction dynamics under environmental change. This project aims to improve knowledge of extinction processes and impacts. It will use high-performance computing and museum collections to disentangle the ecological mechanisms that were integral in the initial decline and later extinction of Australia's unique mammals. Its significance is that it will establish the historical ranges and past population trajectories of Australian threatened mammals, pinpointing the combinations of ecological characteristics and threats that most affect risk of extinction from environmental change. Expected outcomes and benefits are new data and verified models to enrich conservation research and inform evidence-based solutions to better protect and recover some of Australia’s most threatened species.
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    Active Funded Activity

    Discovery Early Career Researcher Award - Grant ID: DE210100929

    Funder
    Australian Research Council
    Funding Amount
    $462,948.00
    Summary
    Using ancient DNA to uncover climate change impacts on Antarctica. This project aims to utilise ancient DNA preserved in the seafloor to investigate how past Antarctic marine ecosystems have responded to past climatic changes, with a focus on the Holocene (last ~11,700 years). The study will generate the first-ever picture of marine community changes across the entire marine food web and unravel adaptation mechanisms of key marine organisms to climate shifts. Expected project outcomes will inclu .... Using ancient DNA to uncover climate change impacts on Antarctica. This project aims to utilise ancient DNA preserved in the seafloor to investigate how past Antarctic marine ecosystems have responded to past climatic changes, with a focus on the Holocene (last ~11,700 years). The study will generate the first-ever picture of marine community changes across the entire marine food web and unravel adaptation mechanisms of key marine organisms to climate shifts. Expected project outcomes will include significant knowledge advances into the evolution and resilience of Antarctic ecosystems over geological timescales. This will position Australia at the forefront of marine sedimentary ancient DNA research, and also provide valuable guidance for the conservation of Antarctica during ongoing climate change.
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