Accelerating zero-emission vehicle adoption in Australian cities . This project aims to devise effective policy mixes and sequences to inform policymakers on the process of zero-emission vehicle adoption policy development, adjustment, and implementation in Australian cities. Taking Canberra as a case study, it intends to understand and integrate diverse stakeholder perspectives into policy processes, and explore the synergies and trade-offs among multiple goals and measures, to inform and enhan ....Accelerating zero-emission vehicle adoption in Australian cities . This project aims to devise effective policy mixes and sequences to inform policymakers on the process of zero-emission vehicle adoption policy development, adjustment, and implementation in Australian cities. Taking Canberra as a case study, it intends to understand and integrate diverse stakeholder perspectives into policy processes, and explore the synergies and trade-offs among multiple goals and measures, to inform and enhance the policy goals and interventions occurring across time scales and sectors. Expected outcomes include a framework to co-design policy measures and incentive structures for shared learning in Australia and globally. This should contribute to both urban mitigation and the incubation of new business ecosystems.Read moreRead less
A socio-ecological comparison of nations making a transition to renewable energy. This project aims to use ethnography to investigate how legitimacy for renewable energy can be won or lost. The project will focus on Germany, India and Australia, regions that are undergoing ‘energy transition.’ It, conducts in-depth studies of changing socio-ecological relations, theorising through comparative analysis, and creating new data on the socio-cultural forces for emission reduction. The project will an ....A socio-ecological comparison of nations making a transition to renewable energy. This project aims to use ethnography to investigate how legitimacy for renewable energy can be won or lost. The project will focus on Germany, India and Australia, regions that are undergoing ‘energy transition.’ It, conducts in-depth studies of changing socio-ecological relations, theorising through comparative analysis, and creating new data on the socio-cultural forces for emission reduction. The project will analyse what can be done to enhance the transition to renewable energy. The expected outcomes are grounded in the comparative study of regions that are making a transition to renewable power.Read moreRead less
Long range toxic metal pollution in Australia and the Southern Ocean. This project aims to investigate how environmental change and human activities since industrialisation have impacted toxic metal transport and deposition on the south coast of Australia, Tasmania and Southern Ocean islands. This project expects to fill gaps in understanding of the global mercury cycle using a state-of-the-art multidisciplinary methodology including the role of sea salt aerosols and hemispheric-scale wind patte ....Long range toxic metal pollution in Australia and the Southern Ocean. This project aims to investigate how environmental change and human activities since industrialisation have impacted toxic metal transport and deposition on the south coast of Australia, Tasmania and Southern Ocean islands. This project expects to fill gaps in understanding of the global mercury cycle using a state-of-the-art multidisciplinary methodology including the role of sea salt aerosols and hemispheric-scale wind patterns . Anticipated outcomes involve a novel palaeo-atmospheric model that can be applied in other parts of the world. This should provide significant benefits, such as science-based evidence to ratify the Minamata Convention on Mercury and guide new regulations to reduce environmental/health risks from metal pollution.
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Australian Laureate Fellowships - Grant ID: FL230100021
Funder
Australian Research Council
Funding Amount
$3,141,020.00
Summary
Cities as transformative agents for a climate-safe future. This project aims to address how cities can transform towards a climate-safe future- achieving net-zero emissions by 2050 while also enhancing resilience to climate impacts. By reconceptualising cities as transformative agents, this project aims to generate ground-breaking theoretical and empirical knowledge on how cities evolve and transform, how they can network to enhance resilience to climate impacts, and what governance innovations ....Cities as transformative agents for a climate-safe future. This project aims to address how cities can transform towards a climate-safe future- achieving net-zero emissions by 2050 while also enhancing resilience to climate impacts. By reconceptualising cities as transformative agents, this project aims to generate ground-breaking theoretical and empirical knowledge on how cities evolve and transform, how they can network to enhance resilience to climate impacts, and what governance innovations can set them onto accelerated pathways towards a climate-safe future. Aspired outcomes include advanced knowledge, new urban climate policy and practice, and a diverse pool of globally connected, next generation researchers, placing Australia at the forefront of integrative urban science and practice. Read moreRead less
Formation and stabilisation of coastal blue carbon. Blue carbon is organic carbon stored within coastal vegetated ecosystems. This project will examine the composition, formation and dynamics of blue carbon in a range of coastal ecosystems. Combining advanced analytical chemistry with environmental microbiology, we will discover how blue carbon is stabilised and destabilised, a critical factor in nature-based climate change mitigation strategies. Further, we will gain a quantitative understandin ....Formation and stabilisation of coastal blue carbon. Blue carbon is organic carbon stored within coastal vegetated ecosystems. This project will examine the composition, formation and dynamics of blue carbon in a range of coastal ecosystems. Combining advanced analytical chemistry with environmental microbiology, we will discover how blue carbon is stabilised and destabilised, a critical factor in nature-based climate change mitigation strategies. Further, we will gain a quantitative understanding of blue carbon contributions to carbon cycling, providing enhanced modeling and prediction of climate-cycle feedbacks in response to biotic and environmental change. This research will significantly benefit Australia’s effective management of coastal vegetated ecosystems for maximum carbon offsets.Read moreRead less
Multiscale geomechanical modelling of basin-scale CO2 storage. This project aims to develop innovative geomechanical models that will provide rapid assessments of the potential for reservoir deformation, including induced seismicity, during geological storage of CO2. The main expected outcome is a multiscale modelling approach that will help to identify storage locations at low risk for deformation and CO2 leakage in regions of little existing geomechanical data. The project will elucidate the .... Multiscale geomechanical modelling of basin-scale CO2 storage. This project aims to develop innovative geomechanical models that will provide rapid assessments of the potential for reservoir deformation, including induced seismicity, during geological storage of CO2. The main expected outcome is a multiscale modelling approach that will help to identify storage locations at low risk for deformation and CO2 leakage in regions of little existing geomechanical data. The project will elucidate the technical and commercial viability of CO2 storage in Australia’s Cooper-Eromanga basins and provide broad economic and environmental benefits by reducing the geomechanical uncertainties that provide a barrier to the global need to upscale carbon capture and storage.Read moreRead less
Building insights of our largest terrestrial carbon sink: rangelands soils. Rangelands soils represent Australia’s largest carbon sink. Yet, little is known about their potential for carbon sequestration or their vulnerability to climate and environmental change. This project leverages investments in national terrestrial observation platforms and integrates previous research outputs to develop new methods to measure and build understanding of soil carbon composition and dynamics in rangeland eco ....Building insights of our largest terrestrial carbon sink: rangelands soils. Rangelands soils represent Australia’s largest carbon sink. Yet, little is known about their potential for carbon sequestration or their vulnerability to climate and environmental change. This project leverages investments in national terrestrial observation platforms and integrates previous research outputs to develop new methods to measure and build understanding of soil carbon composition and dynamics in rangeland ecosystems. Under a framework that connects detailed measurements and small-scale processes, with machine-learning, data-model assimilation and large-scale next-generation biogeochemical modelling, it’ll allow more accurate predictions of soil carbon change and better decision-making to guide sustainable rangelands management.Read moreRead less
Regulating the Climate Finance Revolution. This project aims to identify how financial market regulators might best incentivise financial institutions to shift from high to low carbon investments, thereby mitigating climate change. It expects to generate new knowledge identifying regulatory excellence in previously uncharted territory and to enable best practice policymaking. Its expected outcomes will be to identify the central roles that the design and implementation of regulation can play in ....Regulating the Climate Finance Revolution. This project aims to identify how financial market regulators might best incentivise financial institutions to shift from high to low carbon investments, thereby mitigating climate change. It expects to generate new knowledge identifying regulatory excellence in previously uncharted territory and to enable best practice policymaking. Its expected outcomes will be to identify the central roles that the design and implementation of regulation can play in fast tracking finance for climate action. Its benefits should include advancing climate change mitigation, facilitating the development of Australia as a competitive sustainable finance market and contributing to Australia’s research on achieving a desirable energy future. Read moreRead less
Smart materials for atmospheric water management and water harvesting. Fresh water is a scarce resource in many parts of the globe but uncomfortably over-supplied in other regions. Dehumidifying machines, such as air conditioners, are extensively used in humid climates to enhance human comfort, but with great energy costs. Likewise, the production of potable water in remote dry regions is energy intensive. We propose novel hyper-absorbent desiccating polymers combined into sorption-powered engin ....Smart materials for atmospheric water management and water harvesting. Fresh water is a scarce resource in many parts of the globe but uncomfortably over-supplied in other regions. Dehumidifying machines, such as air conditioners, are extensively used in humid climates to enhance human comfort, but with great energy costs. Likewise, the production of potable water in remote dry regions is energy intensive. We propose novel hyper-absorbent desiccating polymers combined into sorption-powered engines inspired by nastic movements in plants to develop extremely efficient dehumidifiers and water harvesting machines. These polymer actuators can help address the auto-acceleration of climate change caused by the increasing use of air conditioners and provide cheap, clean water for remote communities.Read moreRead less
The WRL industry needs to adopt new digital technology to benefit from the digital economy and ensure industry is efficient, highly productive and world-leading in all its management practices and policies. This is fundamental to achieving the WRL Strategic Plan objectives and aims to develop the western rock lobster industry’s competitiveness in digital technologies and ensure that the industry can draw the full benefits from digital innovation.
Discussions on 2017/18 research prioriti ....The WRL industry needs to adopt new digital technology to benefit from the digital economy and ensure industry is efficient, highly productive and world-leading in all its management practices and policies. This is fundamental to achieving the WRL Strategic Plan objectives and aims to develop the western rock lobster industry’s competitiveness in digital technologies and ensure that the industry can draw the full benefits from digital innovation.
Discussions on 2017/18 research priorities and potential areas for collaboration were discussed extensively at the FRDC Annual Stakeholder Workshop in August 2017 with digital technology a commonality across all groups, including scoping data collecting and analysis innovations for policy, management and operations; New apps for commercial recreational catch, management, markets and effort; and Monitoring and sensor (environment to consumers).
There is a need for the WRL to seek expertise to create a new digital platform that will be capable of adding new modules and applications in to the future as required as well as interoperability with other systems. Industry wants to generate and manage its own data (noting that it will make every effort to be compatible with a national industry data management project) and supply the requested data to government when it is required and in the appropriate form. This will require trust but industry needs to accept this responsibility if it wants to act fast and make the most of opportunities in the digital economy. Industry can't rely on government to achieve this.
The WRL needs to identify and implement new digital applications that will improve process efficiency and assist fishers, managers, scientists, regulators and key stakeholders to make more informed and better decisions.
The WRL needs to scope what other fisheries and non-fishing industries are doing nationally and internationally with collecting data and using it in new and innovative ways to improve operations, management, policy, science and decision making.
This program needs to make provision for extension areas such as a new on-line OH&S standards and automatic reporting, digitised traceability from catch to plate, new auto entry catch application, and new monitoring and sensor technologies. Objectives: 1. Scope national and international data collection and analysis innovation to assist policy development and fisheries management 2. Develop and extend a fully digitised database to achieve at least three management objectives 3. Expand database to meet non-managment objectives. Read moreRead less