ARDC Research Link Australia Research Link Australia   BETA Research
Link
Australia
  • ARDC Newsletter Subscribe
  • Contact Us
  • Home
  • About
  • Feedback
  • Explore Collaborations
  • Researcher
  • Funded Activity
  • Organisation
  • Researcher
  • Funded Activity
  • Organisation
  • Researcher
  • Funded Activity
  • Organisation

Need help searching? View our Search Guide.

Advanced Search

Current Selection
Field of Research : Chemical Engineering Design
Research Topic : Particle morphology
Status : Closed
Clear All
Filter by Field of Research
Chemical Engineering Design (6)
Powder and Particle Technology (6)
Chemical Engineering (5)
Food Engineering (1)
Functional Materials (1)
Mineral Processing/Beneficiation (1)
Nanomaterials (1)
Resources Engineering and Extractive Metallurgy (1)
Turbulent Flows (1)
Water Treatment Processes (1)
Filter by Socio-Economic Objective
Expanding Knowledge in Engineering (3)
Concentrating Processes of Base Metal Ores (excl. Aluminium and Iron Ores) (1)
Expanding Knowledge in Technology (1)
Health not elsewhere classified (1)
Human Pharmaceutical Products not elsewhere classified (1)
Inorganic Industrial Chemicals (1)
Land and Water Management of environments not elsewhere classified (1)
Management of Water Consumption by Mineral Resource Activities (1)
Mining and Extraction of Precious (Noble) Metal Ores (1)
Nutraceuticals and Functional foods (1)
Processed Food Products and Beverages (excl. Dairy Products) not elsewhere classified (1)
Filter by Funding Provider
Australian Research Council (6)
Filter by Status
Closed (6)
Filter by Scheme
Linkage Projects (4)
Discovery Projects (2)
Filter by Country
Australia (6)
Filter by Australian State/Territory
NSW (4)
QLD (3)
SA (2)
VIC (1)
  • Researchers (21)
  • Funded Activities (6)
  • Organisations (22)
  • Funded Activity

    Linkage Projects - Grant ID: LP120200585

    Funder
    Australian Research Council
    Funding Amount
    $105,000.00
    Summary
    Improving the scale-up of spray drying for bioactive extracts and fibres. The project will develop new processing techniques that will contribute to better functional foods and bioactive products from fruit and vegetable wastes. The total national crop of fruit and vegetables produces over 3 million tonnes of wastes, where the bioactive materials in the wastes have a potential value of $3 billion/year.
    More information
    Funded Activity

    Linkage Projects - Grant ID: LP140100424

    Funder
    Australian Research Council
    Funding Amount
    $300,000.00
    Summary
    Engineering improved technology for nanoparticle-based adjuvant manufacture. Over the next decade nanotechnology will redefine vaccines for animal and human health. Nanoparticle adjuvants will boost engineered vaccines that use minimal antigens such as recombinant proteins and synthetic peptides. This project aims to develop a platform technology for making and controlling the properties of inulin nanoparticles by optimising the engineering and manufacturing aspects of inulin nanoparticles to fu .... Engineering improved technology for nanoparticle-based adjuvant manufacture. Over the next decade nanotechnology will redefine vaccines for animal and human health. Nanoparticle adjuvants will boost engineered vaccines that use minimal antigens such as recombinant proteins and synthetic peptides. This project aims to develop a platform technology for making and controlling the properties of inulin nanoparticles by optimising the engineering and manufacturing aspects of inulin nanoparticles to fundamentally understand the relationship between physical-chemical properties and efficacy. Completion of this project aims to produce potent nanoparticle-based adjuvants underpinned by novel manufacturing technology, to ultimately facilitate the development of more effective and protective vaccines for animals and humans.
    Read more Read less
    More information
    Funded Activity

    Discovery Projects - Grant ID: DP110100394

    Funder
    Australian Research Council
    Funding Amount
    $315,000.00
    Summary
    Engineered nanoporous materials and composites having hierarchical structures by emulsion templating. The project aims to develop new and flexible emulsion-templated processes capable of constructing novel nanoporous materials with hierarchical structures. The project has the potential to revolutionise current approaches for making porous materials, and the outcomes will enhance Australia's ability in frontier technologies and advanced materials.
    More information
    Funded Activity

    Linkage Projects - Grant ID: LP110100459

    Funder
    Australian Research Council
    Funding Amount
    $660,000.00
    Summary
    Multi-scale strategy to manage chloramine decay and nitrification in water distribution systems. The generation of knowledge and technologies in preventing chloramine decay would greatly benefit the Australian water industry. The success of the project would provide the highest possible quality of water, both economically and reliably, giving public assurances of microbiological compliance and safe drinking water.
    More information
    Funded Activity

    Discovery Projects - Grant ID: DP130103742

    Funder
    Australian Research Council
    Funding Amount
    $300,000.00
    Summary
    Dynamic input adjustment to improve the stability of transient swirling flows in spray dryers. This project will use leading-edge numerical techniques to advance the science of flow stabilisation using dynamic flow modulation techniques. Improved sustainable processing will be enabled using this flow modulation in spray dryers to reduce processing problems due to the depositon of particles on dryer walls.
    More information
    Funded Activity

    Linkage Projects - Grant ID: LP160101313

    Funder
    Australian Research Council
    Funding Amount
    $555,000.00
    Summary
    Depressing pyrite in selective flotation of complex polymetallic ores . This project aims to understand the reactions taking place on the major gangue (waste) mineral during the recovery of base-metal and precious minerals. The mining industry is processing low grade complex ores and experiencing difficulties in rejecting gangue minerals in mineral separation and metal extraction plants. The project will develop new technologies that manipulate these reactions to achieve mineral separation and .... Depressing pyrite in selective flotation of complex polymetallic ores . This project aims to understand the reactions taking place on the major gangue (waste) mineral during the recovery of base-metal and precious minerals. The mining industry is processing low grade complex ores and experiencing difficulties in rejecting gangue minerals in mineral separation and metal extraction plants. The project will develop new technologies that manipulate these reactions to achieve mineral separation and metal extraction efficiently and economically. These technologies may provide value in processing low quality complex polymetallic resources using low quality water, whilst halving the operating costs of mineral concentrators and providing corresponding reductions in harmful emissions.
    Read more Read less
    More information

    Showing 1-6 of 6 Funded Activites

    Advanced Search

    Advanced search on the Researcher index.

    Advanced search on the Funded Activity index.

    Advanced search on the Organisation index.

    National Collaborative Research Infrastructure Strategy

    The Australian Research Data Commons is enabled by NCRIS.

    ARDC CONNECT NEWSLETTER

    Subscribe to the ARDC Connect Newsletter to keep up-to-date with the latest digital research news, events, resources, career opportunities and more.

    Subscribe

    Quick Links

    • Home
    • About Research Link Australia
    • Product Roadmap
    • Documentation
    • Disclaimer
    • Contact ARDC

    We acknowledge and celebrate the First Australians on whose traditional lands we live and work, and we pay our respects to Elders past, present and emerging.

    Copyright © ARDC. ACN 633 798 857 Terms and Conditions Privacy Policy Accessibility Statement
    Top
    Quick Feedback