Zeroing in on food waste: Measuring, understanding and reducing food waste. By developing a socio-culturally aware public education and social marketing programme to reduce food waste behaviours, the proposal addresses the national research priority area of an environmentally sustainable Australia. Reducing food waste by just 10% would save ~$530 million worth of wasted expenditure on food and reduce food waste in landfill by ~300,000 tonnes per annum, thereby reducing the costs associated with ....Zeroing in on food waste: Measuring, understanding and reducing food waste. By developing a socio-culturally aware public education and social marketing programme to reduce food waste behaviours, the proposal addresses the national research priority area of an environmentally sustainable Australia. Reducing food waste by just 10% would save ~$530 million worth of wasted expenditure on food and reduce food waste in landfill by ~300,000 tonnes per annum, thereby reducing the costs associated with disposal and the release of harmful methane gases. The methodology refined by this project to understand food waste will provide the basis for efficient and sustainable food waste reduction strategies and provide an approach that can be generalised to other waste streams with strong socio-cultural determinants.Read moreRead less
Optimising the Strategy for Breeding Micronutrient-Dense Staple Foods that Improve Human health and Nutrition. The project is part of a new paradigm for agriculture in which staple crops are bred with greater micronutrient density to improve human health. It generates strategic basic information on how nutrients interact in the body of animal models in absorption, transport and utilisation that will allow plant breeders to optimise the breeding strategy for maximum outcomes in health and minimum ....Optimising the Strategy for Breeding Micronutrient-Dense Staple Foods that Improve Human health and Nutrition. The project is part of a new paradigm for agriculture in which staple crops are bred with greater micronutrient density to improve human health. It generates strategic basic information on how nutrients interact in the body of animal models in absorption, transport and utilisation that will allow plant breeders to optimise the breeding strategy for maximum outcomes in health and minimum breeding cost. Animals deficient in the nutrients of most concern (iron, zinc, vitamin A - and inulin) will be fed new varieties with enhanced levels of these factors, and from the responses, a superior strategy will be developed.Read moreRead less