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Research Topic : Waste
Field of Research : Mineral Processing/Beneficiation
Australian State/Territory : SA
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Mineral Processing/Beneficiation (5)
Resources Engineering and Extractive Metallurgy (3)
Colloid and Surface Chemistry (2)
Environmental Chemistry (incl. Atmospheric Chemistry) (2)
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Other Chemical Sciences (2)
Powder and Particle Technology (2)
Membrane and Separation Technologies (1)
Resources Engineering and Extractive Metallurgy not elsewhere classified (1)
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Management of Solid Waste from Mineral Resource Activities (4)
Concentrating Processes of Base Metal Ores (excl. Aluminium and Iron Ores) (3)
Beneficiation or Dressing of Iron Ores (1)
Beneficiation or Dressing of Non-Metallic Minerals (incl. Diamonds) (1)
First Stage Treatment of Ores and Minerals not elsewhere classified (1)
Industrial Energy Conservation and Efficiency (1)
Management of Liquid Waste from Mineral Resource Activities (excl. Water) (1)
Mining and Extraction of Precious (Noble) Metal Ores (1)
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  • Researchers (3)
  • Funded Activities (5)
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  • Funded Activity

    Linkage Projects - Grant ID: LP140100399

    Funder
    Australian Research Council
    Funding Amount
    $330,000.00
    Summary
    Short- and long-term mitigation strategies for acid and metalliferous drainage control from iron ore mine wastes. Acid and metalliferous drainage from mine wastes, caused by oxidation of sulfide minerals, particularly pyrite, are a critical environmental issue worldwide. Although options to retard sulfide oxidation exist, including encapsulation methods, chemical additives and inhibition of iron-oxidising bacteria, these suffer from long-term instability. The project aims to investigate mechanis .... Short- and long-term mitigation strategies for acid and metalliferous drainage control from iron ore mine wastes. Acid and metalliferous drainage from mine wastes, caused by oxidation of sulfide minerals, particularly pyrite, are a critical environmental issue worldwide. Although options to retard sulfide oxidation exist, including encapsulation methods, chemical additives and inhibition of iron-oxidising bacteria, these suffer from long-term instability. The project aims to investigate mechanistic approaches, using readily available mineralogical materials, to provide passivating conditions resulting in slowed oxidation rates. The project’s focus is on treatments for wastes from iron ore deposits which are of high economic significance to Australia. The outcome aims to be a treatment ‘pathway’ enabling practical waste rock treatment over the acid forming time-profile.
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    Funded Activity

    Linkage Projects - Grant ID: LP130100568

    Funder
    Australian Research Council
    Funding Amount
    $270,000.00
    Summary
    Long-term acid rock and tailings drainage mitigation through source control. Effective long-term management of acid rock drainage (ARD) from sulfidic mine wastes in current, exhausted and legacy mine sites is of critical importance to communities and for sustainable mining. An optimised geochemical and microbial multi-barrier approach to long-term reduction of ARD to environmentally acceptable rates will be developed by this project.
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    Funded Activity

    Linkage Projects - Grant ID: LP160100619

    Funder
    Australian Research Council
    Funding Amount
    $330,000.00
    Summary
    Engineering the sulphidising reactions for flotation of low quality ores. Engineering the sulphidising reactions for flotation of low quality ores. This project aims to engineer sulphidisation reactions to enhance the flotation of low quality ores for the minerals industry. Sulphidisation uses flotation to enrich base metal and precious minerals from low quality ores containing oxides and oxidised sulphides before expensive leaching or smelting. However, the current sulphidisation method is neit .... Engineering the sulphidising reactions for flotation of low quality ores. Engineering the sulphidising reactions for flotation of low quality ores. This project aims to engineer sulphidisation reactions to enhance the flotation of low quality ores for the minerals industry. Sulphidisation uses flotation to enrich base metal and precious minerals from low quality ores containing oxides and oxidised sulphides before expensive leaching or smelting. However, the current sulphidisation method is neither efficient nor widely used. This project will tailor sulphidisation reactions to generate desirable surface products that are not sensitive to flotation conditions. The intended outcome of this project is to provide a step change value in processing low quality resources while minimising the environmental effects of stockpiles.
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    Funded Activity

    Linkage Projects - Grant ID: LP110100132

    Funder
    Australian Research Council
    Funding Amount
    $105,000.00
    Summary
    Regrinding chemistry and particle breakage mechanisms in increased surface hydrophobicity on fine and ultra-fine particles in mineral flotation. This project will study the effect of regrinding chemistry and particle breakage mechanisms on the redistribution of flotation collectors and the evolution of the metal oxidation species on mineral surfaces. New technologies will be developed to increase mineral surface hydrophobicity and therefore increase fine and ultra-fine particle flotation.
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    Funded Activity

    Linkage Infrastructure, Equipment And Facilities - Grant ID: LE120100209

    Funder
    Australian Research Council
    Funding Amount
    $150,000.00
    Summary
    Multi-purpose facility for enhanced complex ore beneficiation and waste material recycling. This facility will provide new separation equipment that exploits differences in physical-chemical characteristics and behaviour of multi-component minerals and industrial waste. The facility will be used to develop new methods to beneficiate or upgrade low grade mineral ores and materials. Research to be conducted at this facility will lead to improved and sustainable methods which will assist in process .... Multi-purpose facility for enhanced complex ore beneficiation and waste material recycling. This facility will provide new separation equipment that exploits differences in physical-chemical characteristics and behaviour of multi-component minerals and industrial waste. The facility will be used to develop new methods to beneficiate or upgrade low grade mineral ores and materials. Research to be conducted at this facility will lead to improved and sustainable methods which will assist in processing, recycling and reusing most of the non-metal and metal waste materials.
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