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Scheme : Discovery Projects
Australian State/Territory : TAS
Research Topic : Other Technology
Australian State/Territory : ACT
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  • Funded Activity

    Discovery Projects - Grant ID: DP0342704

    Funder
    Australian Research Council
    Funding Amount
    $530,000.00
    Summary
    Looking back to see the future: Change in the Lambert Glacier and the East Antarctic Ice Sheet. To develop a comprehensive understanding of the Lambert Glacier of East Antarctica, from the time of the last maximum glaciation to the present, through an integrated and interdisciplinary study combining new field evidence - ice retreat history, geodetic measurements of crustal rebound, satellite measurements of present ice heights and changes therein - with other geological and glaciological data an .... Looking back to see the future: Change in the Lambert Glacier and the East Antarctic Ice Sheet. To develop a comprehensive understanding of the Lambert Glacier of East Antarctica, from the time of the last maximum glaciation to the present, through an integrated and interdisciplinary study combining new field evidence - ice retreat history, geodetic measurements of crustal rebound, satellite measurements of present ice heights and changes therein - with other geological and glaciological data and numerical geophysical modelling advances. The project contributes to the quantitative characterisation of the complex interactions between ice-sheets, oceans and solid earth within the climate system. Outcomes have implications for geophysics, glaciology, geomorphology, climate, and past and future sea-level change.
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    Funded Activity

    Discovery Projects - Grant ID: DP1096427

    Funder
    Australian Research Council
    Funding Amount
    $390,000.00
    Summary
    Range dynamics and demographics of spatially structured populations under global change. Why are particular species present in some locations, but not others? This is a simple, fundamental ecological question, yet surprisingly, our answers on this point remain far from complete. Using an integrated, systems-based approach, we will determine the interplay between: (i) birth, death and movement rates, (ii) species interactions, and (iii) the constraints of the physical environment (temperature, ra .... Range dynamics and demographics of spatially structured populations under global change. Why are particular species present in some locations, but not others? This is a simple, fundamental ecological question, yet surprisingly, our answers on this point remain far from complete. Using an integrated, systems-based approach, we will determine the interplay between: (i) birth, death and movement rates, (ii) species interactions, and (iii) the constraints of the physical environment (temperature, rainfall, soil type), which determine the limits of species' ranges. Our models will provide Australian conservation managers with a novel, validated toolbox to explore the trade-offs, and synergies, inherent in trying to adapt to climate change and other stressors on biodiversity.
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    Funded Activity

    Discovery Projects - Grant ID: DP0557608

    Funder
    Australian Research Council
    Funding Amount
    $331,586.00
    Summary
    Co-operative intellectual property management and technology transfer for the Australian biotechnology industry. The Australian biotechnology industry rests on a framework of internationally competitive research and should be well placed to capture a significant share of expanding global markets. However, existing intellectual property (IP) management strategies do not make the most of this potential because they raise barriers to much-needed co-operation among industry players. By developing an .... Co-operative intellectual property management and technology transfer for the Australian biotechnology industry. The Australian biotechnology industry rests on a framework of internationally competitive research and should be well placed to capture a significant share of expanding global markets. However, existing intellectual property (IP) management strategies do not make the most of this potential because they raise barriers to much-needed co-operation among industry players. By developing and refining new co-operative IP management models in an Australian context, this project offers direct economic benefits (more efficient industry structures), improved social and economic benefits (better and cheaper biotechnology products and services), and an opportunity for Australia to take the lead in developing innovative approaches to IP management.
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    Funded Activity

    Discovery Projects - Grant ID: DP120101558

    Funder
    Australian Research Council
    Funding Amount
    $315,000.00
    Summary
    A new route to linear alpha olefins - catalytic isomerisation of internal olefins. Linear alpha olefins are an extremely important class of chemical building blocks used for everyday consumer products, such as plastics, detergents and lubricants. This research aims to develop a new platform technology for the production of these materials from low cost precursors.
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    Funded Activity

    Discovery Projects - Grant ID: DP140100018

    Funder
    Australian Research Council
    Funding Amount
    $408,567.00
    Summary
    When Sinks Become Sources; Understanding Persistent Organic Pollutant Behaviour in Dynamic Polar Environments. Polar regions are environmental ‘sinks’ for man-made, Persistent Organic Pollutants (POPs). The unique biogeochemical processes governing POP behaviour in the Polar landscape are not understood, yet are necessary to predict their impact in polar ecosystems. The Antarctic seasonal-ice zone provides an archetype for multi-compartment, temporal observations of POP partitioning in respons .... When Sinks Become Sources; Understanding Persistent Organic Pollutant Behaviour in Dynamic Polar Environments. Polar regions are environmental ‘sinks’ for man-made, Persistent Organic Pollutants (POPs). The unique biogeochemical processes governing POP behaviour in the Polar landscape are not understood, yet are necessary to predict their impact in polar ecosystems. The Antarctic seasonal-ice zone provides an archetype for multi-compartment, temporal observations of POP partitioning in response to the major drivers of ice cover and primary productivity. In addition, the major Antarctic POP reservoirs of seawater and ice will be characterised. Empirical data will be used to parameterise a regional fugacity model. Model application to varying climate scenarios will extend our understanding of POP behaviour and threat in polar regions.
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