Iron oxide-copper-gold (IOCG) systems, in a broad geophysical sense, include a spectrum of mineralisation styles ranging from reduced, pyrrhotite-dominant examples, sometimes referred to as iron sulphide copper gold (ISCG) systems, to magnetite-pyrite dominant, and more oxidised, hematite dominant Cu and Au deposits. Importantly, the geophysical signatures in and around (IOCG) deposits are frequently associated with mappable changes in redox. Moreover, redox gradients have predictable geophysical signatures, and thus they can be targeted by mineral explorers using integrated petrophysical and geophysical methods. Systematic and scale-integrated petrophysical data ( >1300 samples form 23 deposits and prospects) such as density, magnetic susc...
Iron-oxide copper gold (IOCG) mineralisation is defined by an abundance of hematite and/or magnetite...
Transported regolith has the capacity to mask underlying mineralisation by restricting the migration...
Empirical thesis.Bibliography: pages 49-52.Chapter 1. Introduction -- Chapter 2. Geological setting ...
Iron oxide-copper-gold (IOCG) systems, in a broad geophysical sense, include a spectrum of mineralis...
Iron oxide copper-gold (IOCG) systems form in a range of lithologies, including variably metamorphos...
Iron Oxide-Copper-Gold (IOCG) deposits are hydrothermal ore deposits that occur worldwide and global...
Iron Oxide-Copper-Gold (IOCG) deposits are hydrothermal ore deposits that occur worldwide and global...
Iron Oxide-Copper-Gold (IOCG) deposits are hydrothermal ore deposits that occur worldwide and global...
In the last decades Fe-Oxide Cu-Au deposits have been discovered and developed in Australia, South A...
In 2019, Rio Tinto Exploration (RTX) identified an IOCG prospect hosted within the Wimberu Granite b...
In the last decades Fe-Oxide Cu-Au deposits have been discovered and developed in Australia, South A...
In the last decades Fe-Oxide Cu-Au deposits have been discovered and developed in Australia, South A...
This item is only available electronically.Iron oxide copper gold (IOCG) systems display well-develo...
A mineral systems approach was used to interpret precompetitive airborne mineral mapping geoscience ...
A mineral systems approach was used to interpret precompetitive airborne mineral mapping geoscience ...
Iron-oxide copper gold (IOCG) mineralisation is defined by an abundance of hematite and/or magnetite...
Transported regolith has the capacity to mask underlying mineralisation by restricting the migration...
Empirical thesis.Bibliography: pages 49-52.Chapter 1. Introduction -- Chapter 2. Geological setting ...
Iron oxide-copper-gold (IOCG) systems, in a broad geophysical sense, include a spectrum of mineralis...
Iron oxide copper-gold (IOCG) systems form in a range of lithologies, including variably metamorphos...
Iron Oxide-Copper-Gold (IOCG) deposits are hydrothermal ore deposits that occur worldwide and global...
Iron Oxide-Copper-Gold (IOCG) deposits are hydrothermal ore deposits that occur worldwide and global...
Iron Oxide-Copper-Gold (IOCG) deposits are hydrothermal ore deposits that occur worldwide and global...
In the last decades Fe-Oxide Cu-Au deposits have been discovered and developed in Australia, South A...
In 2019, Rio Tinto Exploration (RTX) identified an IOCG prospect hosted within the Wimberu Granite b...
In the last decades Fe-Oxide Cu-Au deposits have been discovered and developed in Australia, South A...
In the last decades Fe-Oxide Cu-Au deposits have been discovered and developed in Australia, South A...
This item is only available electronically.Iron oxide copper gold (IOCG) systems display well-develo...
A mineral systems approach was used to interpret precompetitive airborne mineral mapping geoscience ...
A mineral systems approach was used to interpret precompetitive airborne mineral mapping geoscience ...
Iron-oxide copper gold (IOCG) mineralisation is defined by an abundance of hematite and/or magnetite...
Transported regolith has the capacity to mask underlying mineralisation by restricting the migration...
Empirical thesis.Bibliography: pages 49-52.Chapter 1. Introduction -- Chapter 2. Geological setting ...