Partnering With Patients To Transform Practice And Policy For Improved Patient-centred Outcomes In Chronic Kidney Disease
Funder
National Health and Medical Research Council
Funding Amount
$3,292,932.00
Summary
Chronic kidney disease (CKD) is a major cause of death and imposes a substantial burden on individuals and the healthcare system worldwide. In partnership with patients, this project will establish and implement core outcomes and measures. Patient-centred trials will address the research priorities of patients across all stages of CKD including: preventing the progression of CKD, improving fatigue in patients on dialysis, and optimising life participation in kidney transplant recipients.
Catalytic production of health food additives from crustacean wastes. Cost-effective production of new synthetic amino acids as value-added food additives from crustacean wastes is vital for waste recycling and a sustainable economy. This project will develop a unique catalytic system for the selective conversion of waste-derived compounds into tailor-made products. Advanced in situ spectroscopic techniques will be employed to establish the structure-reactivity relationship of working catalysts ....Catalytic production of health food additives from crustacean wastes. Cost-effective production of new synthetic amino acids as value-added food additives from crustacean wastes is vital for waste recycling and a sustainable economy. This project will develop a unique catalytic system for the selective conversion of waste-derived compounds into tailor-made products. Advanced in situ spectroscopic techniques will be employed to establish the structure-reactivity relationship of working catalysts and thereby manipulate the key factors governing the activity/selectivity. Such cutting-edge knowledge gained is crucial for optimising process effciency and resource utilisation, which is essential for the success of the biorefining industry and a more environmentally-friendly chemical and food economy in Australia.Read moreRead less
Early Career Industry Fellowships - Grant ID: IE230100365
Funder
Australian Research Council
Funding Amount
$462,237.00
Summary
Solar-driven catalytic production of high-value product from waste glycerol. Sustainable bio-refining requires an efficient and economical way of utilising the surplus amount of glycerol generated as a by-product in biodiesel industries. This project aims to construct an industry-scale solar-driven catalytic system to generate high-value-added chemicals and green hydrogen fuel from biomass wastes simultaneously. The structure-reactivity relationship of working catalysts will be established to fi ....Solar-driven catalytic production of high-value product from waste glycerol. Sustainable bio-refining requires an efficient and economical way of utilising the surplus amount of glycerol generated as a by-product in biodiesel industries. This project aims to construct an industry-scale solar-driven catalytic system to generate high-value-added chemicals and green hydrogen fuel from biomass wastes simultaneously. The structure-reactivity relationship of working catalysts will be established to fit the up-scale applications. The gained cutting-edge knowledge and technology will significantly contribute to biomass waste utilisation and sustainable fabrication, further bringing significant economic and social benefits by creating a new competitive business for Australian chemical and fuel areas. Read moreRead less
Thermoelectric devices for high-performing localised coolers. This project aims to develop a lightweight, low-energy-consumption, and high-durability wearable thermoelectric cooler for localised cooling using a novel industry-led approach, coupled with device design and materials engineering strategies. The key breakthrough expected is to design wearable thermoelectric coolers by using flexible substrates and thermoelectric materials with engineered chemistry and unique structures for achieving ....Thermoelectric devices for high-performing localised coolers. This project aims to develop a lightweight, low-energy-consumption, and high-durability wearable thermoelectric cooler for localised cooling using a novel industry-led approach, coupled with device design and materials engineering strategies. The key breakthrough expected is to design wearable thermoelectric coolers by using flexible substrates and thermoelectric materials with engineered chemistry and unique structures for achieving localised, instant, and controllable cooling with super low power input for personal usage in building and mining industry. Expected outcomes include innovative technologies for achieving high-efficiency cooling, which will provide significant economic and commercial benefits for Australia.Read moreRead less
Health insurance design: choices, consumer behavior and policy challenges . Rising health costs is a global challenge. Creating an efficient health insurance system is a key policy concern in all developed countries. This project aims to study choices, consumer behaviors, and policy challenges in two health insurance markets: Australian private health insurance (PHI) and US Medicare prescription drug insurance.
Expected outcomes include new evidence needed to develop a new framework for PHI, ne ....Health insurance design: choices, consumer behavior and policy challenges . Rising health costs is a global challenge. Creating an efficient health insurance system is a key policy concern in all developed countries. This project aims to study choices, consumer behaviors, and policy challenges in two health insurance markets: Australian private health insurance (PHI) and US Medicare prescription drug insurance.
Expected outcomes include new evidence needed to develop a new framework for PHI, new knowledge on how consumers respond to complex pricing structures, and new policy proposals to improve the overall efficiency of the health system. The research will benefit the re-design of PHI and the health system to improve Australians’ health while saving health costs.
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