Adapt Or Fail: Risk Management And Business Resilience In Queensland Commercial Fisheries
Funder
Fisheries Research and Development Corporation
Funding Amount
$350,000.00
Summary
Change is inevitable, whether it be management, environmental, or economic change. Improving how industries cope with and adapt to change becomes increasingly important as rates and cumulative impacts of change escalate. Some commercial fishing operators are better able to cope with, and adapt to change than others. In part this is due to the inherent capabilities of some individuals to cope with change, learn, plan, and manage risk – elements we can measure through resilience frameworks (Marsha ....Change is inevitable, whether it be management, environmental, or economic change. Improving how industries cope with and adapt to change becomes increasingly important as rates and cumulative impacts of change escalate. Some commercial fishing operators are better able to cope with, and adapt to change than others. In part this is due to the inherent capabilities of some individuals to cope with change, learn, plan, and manage risk – elements we can measure through resilience frameworks (Marshall and Marshall, 2007). Other differences relate to access to adaptation options, which may rely on factors such as business structure, diversity of operation, access to information and financial capacity. We do not yet know the specific role such factors play in improving adaption options and hence resilience.
What we do know is that more resilient operators are better able to cope with change and adapt to it, and that these operators are less likely to seek compensation when change occurs (Sutton and Tobin 2012). Given these findings, it is vital that we identify factors that improve access to and uptake of adaption options, and that factors constraining uptake of these options are identified. We need to develop appropriate communication tools that relate to the nature of risks faced by fishing operations depending on their current behaviour and business structure, options for change, and access to / uptake of information. We also need to assess possible management options which could reduce some constraints on adaptation and hence increase resilience.
This proposal meets QFRAB priority #2 (business models in relation to resilience), and FRDC’s “Resilient and supportive communities” Strategic Challenge.
Objectives: 1. Document the current diversity and develop typologies of business models and operation types employed across all commercial fisheries on Queensland's east coast 2. Explore the current adaptation options for different business model types regarding risks associated with economic, management and environmental changes 3. Document the common constraints affecting uptake of adaptation options between and across business model types 4. Provide information tools regarding adaptation options for different business model types to fishers and managers, to enable the improvement of adaptive capacity and hence resilience Read moreRead less
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Modelling policy interventions to protect Australia's food security in the face of environmental sustainability challenges . This project will use an innovative scenario modelling approach to quantify the potential impacts of population growth and emerging climate and environmental challenges on Australia’s future food security. In collaboration with an advisory committee it will specify and prioritise policy solutions in terms of their social and economic credentials.
Discovery Early Career Researcher Award - Grant ID: DE120101263
Funder
Australian Research Council
Funding Amount
$375,000.00
Summary
Assessing the impact of global environmental change on the nutritional ecology of marsupial and insect folivores of Eucalyptus. Higher atmospheric carbon dioxide concentrations are predicted to alter plant nutrient and toxin content, while higher ambient temperatures may compromise the abilities of animals to metabolise plant toxins. This project will assess how climate change scenarios are likely to impact native marsupials and insects that rely on eucalypt leaves for food.
Bubble, Bubble CO2 is the trouble: A Natural Ocean Acidification Experiment in a coral reef setting. Carbon dioxide seep sites expose shallow coral reefs in Papua New Guinea to volcanic carbon dioxide resulting in gradients of seawater ranging from pH 8.0 (normal) to a more acidic pH of 7.5. Some areas of these reefs experience carbon dioxide exposure equivalent to IPCC predictions for 2050 and 2100. This project will reconstruct seawater pH using radiocarbon as a novel tracer of carbon dioxide ....Bubble, Bubble CO2 is the trouble: A Natural Ocean Acidification Experiment in a coral reef setting. Carbon dioxide seep sites expose shallow coral reefs in Papua New Guinea to volcanic carbon dioxide resulting in gradients of seawater ranging from pH 8.0 (normal) to a more acidic pH of 7.5. Some areas of these reefs experience carbon dioxide exposure equivalent to IPCC predictions for 2050 and 2100. This project will reconstruct seawater pH using radiocarbon as a novel tracer of carbon dioxide input at a coral reef site that has been exposed to high carbon dioxide due to volcanic seeps (seep carbon dioxide has no carbon-14) for an unknown period of time (at least many decades, but possibly centuries). These results will help to understand the time it takes to change calcifying organisms into “winners” or “losers” as an analog for Ocean Acidification due to increased atmospheric carbon dioxide input.Read moreRead less