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Current Selection
Status : Active
Research Topic : SURFACE FORCES
Field of Research : Ecosystem Function
Australian State/Territory : ACT
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Ecosystem Function (3)
Ecological Applications (2)
Climate Change Processes (1)
Conservation and Biodiversity (1)
Environmental Science and Management (1)
Freshwater Ecology (1)
Inorganic Geochemistry (1)
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Surfacewater Hydrology (1)
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Ecosystem Assessment and Management of Fresh, Ground and Surface Water Environments (3)
Ecosystem Assessment and Management at Regional or Larger Scales (1)
Effects of Climate Change and Variability on Australia (excl. Social Impacts) (1)
Fresh, Ground and Surface Water Flora, Fauna and Biodiversity (1)
Physical and Chemical Conditions of Water in Fresh, Ground and Surface Water Environments (excl. Urban and Industrial Use) (1)
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  • Researchers (5)
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  • Active Funded Activity

    Discovery Early Career Researcher Award - Grant ID: DE210100032

    Funder
    Australian Research Council
    Funding Amount
    $456,645.00
    Summary
    Unravelling how ecosystems function through time and space. This project aims to build a whole-of-ecosystem model to trace the biological capture of energy and cycling of matter as it moves through entire river catchments. It is expected to generate new knowledge about ecological responses to environmental streamflow through the novel integration of all major food-web compartments – from dissolved molecules to predatory fish – in a single framework. The expected outcome of this project is an enh .... Unravelling how ecosystems function through time and space. This project aims to build a whole-of-ecosystem model to trace the biological capture of energy and cycling of matter as it moves through entire river catchments. It is expected to generate new knowledge about ecological responses to environmental streamflow through the novel integration of all major food-web compartments – from dissolved molecules to predatory fish – in a single framework. The expected outcome of this project is an enhanced capacity to predict the ecological consequences of future water management scenarios, facilitating more precise management of river systems. This should provide considerable benefits to the health of Australia’s rivers and the contributions these ecosystems make to society, environment, and agriculture.
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    Active Funded Activity

    Discovery Projects - Grant ID: DP220100823

    Funder
    Australian Research Council
    Funding Amount
    $508,976.00
    Summary
    Linking terrestrial–aquatic fluxes to rectify the Australian carbon balance. This project aims to rectify the Australian carbon balance by determining the amount of terrestrial carbon that is lost to streams and rivers across the country. Through a novel integration of high-resolution hydrochemical and gas measurements, remote sensing and machine learning algorithms, the project intends to generate new knowledge about the links between terrestrial carbon sequestration and aquatic carbon export. .... Linking terrestrial–aquatic fluxes to rectify the Australian carbon balance. This project aims to rectify the Australian carbon balance by determining the amount of terrestrial carbon that is lost to streams and rivers across the country. Through a novel integration of high-resolution hydrochemical and gas measurements, remote sensing and machine learning algorithms, the project intends to generate new knowledge about the links between terrestrial carbon sequestration and aquatic carbon export. Expected outcomes include a refined estimate of the net carbon sequestration potential across Australian biomes and seasons. This should provide significant benefits such as avoiding misalignment of greenhouse gas abatement policies and advancing carbon cycling models and predictions.
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    Active Funded Activity

    Discovery Projects - Grant ID: DP220100918

    Funder
    Australian Research Council
    Funding Amount
    $456,000.00
    Summary
    Resolving the role of dryland flooding in the global carbon cycle. Aquatic sources of carbon dioxide and methane are globally significant, but unknown for flooded drylands. The aim of this project is to use an innovative combination of well-integrated methodologies to determine if flooded drylands release large amounts of carbon dioxide and methane. This project is significant because this release of carbon dioxide and methane has not previously been accounted for and may change the magnitude of .... Resolving the role of dryland flooding in the global carbon cycle. Aquatic sources of carbon dioxide and methane are globally significant, but unknown for flooded drylands. The aim of this project is to use an innovative combination of well-integrated methodologies to determine if flooded drylands release large amounts of carbon dioxide and methane. This project is significant because this release of carbon dioxide and methane has not previously been accounted for and may change the magnitude of the global terrestrial carbon dioxide sink and account of some of the planet’s missing sources of methane. The outcomes of this project will make a significant contribution to our understanding of the global carbon cycle and earth climate system, and inform future management of these systems.
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    Showing 1-3 of 3 Funded Activites

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