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Australian State/Territory : QLD
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Australian State/Territory : NSW
Research Topic : Injecting Drug Use
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  • Active Funded Activity

    Linkage Projects - Grant ID: LP230100171

    Funder
    Australian Research Council
    Funding Amount
    $564,072.00
    Summary
    The Macroderma initiative: conserving ghost bats and informing development. This project aims to improve methods for capturing biological information required for environmental assessments of highly mobile species and enable strategic environmental planning in Northern Australia. Using Australia’s iconic ghost bat as a focus, the project will test and apply emerging technologies to obtain key information on a species’ population status and its critical resources to inform assessments of ecologic .... The Macroderma initiative: conserving ghost bats and informing development. This project aims to improve methods for capturing biological information required for environmental assessments of highly mobile species and enable strategic environmental planning in Northern Australia. Using Australia’s iconic ghost bat as a focus, the project will test and apply emerging technologies to obtain key information on a species’ population status and its critical resources to inform assessments of ecological impacts of industry development. Important benefits of the project include information and tools for streamlining development approvals and accurately assessing risks to threatened species to improve outcomes for both our economy and our natural environment.
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    Active Funded Activity

    Discovery Projects - Grant ID: DP160103371

    Funder
    Australian Research Council
    Funding Amount
    $370,000.00
    Summary
    Managing environmental change through planning for transformative pathways. The project plans to bring together Chinese and Australian researchers to investigate how planning systems in the two countries can be enhanced to avoid tipping points due to urbanisation processes and environmental change. It aims to formulate transformative pathways for two case study areas, situated in peri-urban areas of a rapidly growing region in each country, which seek to link adaptation and sustainability to add .... Managing environmental change through planning for transformative pathways. The project plans to bring together Chinese and Australian researchers to investigate how planning systems in the two countries can be enhanced to avoid tipping points due to urbanisation processes and environmental change. It aims to formulate transformative pathways for two case study areas, situated in peri-urban areas of a rapidly growing region in each country, which seek to link adaptation and sustainability to address and/or avoid land use planning failures. The anticipated outcome of the project is to address environmental and social change resulting from rapid urbanisation and environmental change.
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    Active Funded Activity

    Special Research Initiatives - Grant ID: SR180200015

    Funder
    Australian Research Council
    Funding Amount
    $589,007.00
    Summary
    Combination of electrochemistry with sono to destroy and detoxify PFAS. Previously the major means of dealing with per- and poly-fluoroalkyl substances (PFAS) is by adsorption, to collect and remove PFAS from contaminated sites. However, PFAS still exist, non-degraded and waiting for destruction. Targeting slurry waste from current remediation / adsorption plants, this project aims to efficiently degrade PFAS by combining electrochemical oxidation with sono-chemistry to enhance degradation capac .... Combination of electrochemistry with sono to destroy and detoxify PFAS. Previously the major means of dealing with per- and poly-fluoroalkyl substances (PFAS) is by adsorption, to collect and remove PFAS from contaminated sites. However, PFAS still exist, non-degraded and waiting for destruction. Targeting slurry waste from current remediation / adsorption plants, this project aims to efficiently degrade PFAS by combining electrochemical oxidation with sono-chemistry to enhance degradation capacity, to accelerate PFAS desorption / transportation from slurry waste, to avoid electrode fouling and to detoxify PFAS. The expected outcome of this project is to clean up contaminated sites, including PFAS / precursors and other persistent organic pollutants, leading to significant environmental benefits.
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    Showing 1-3 of 3 Funded Activites

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