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Relating Textural Attributes to Mineral Processing -Developing a More Effective Approach for the Cadia East Cu-Au Porphyry Deposit

机译:将教学属性与矿物加工相关 - 开发更有效的Cadia East Cu-Au斑岩矿床方法

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The texture of an ore type is fundamental in understanding the metallurgical behaviour of an ore. This study will show examples of how quantified textural attributes (mineral shape, grain size and mineral association) can be obtained from automated and scanning electron microscope (SEM)-based microscopy and utilised using advanced image processing techniques. Examples will be shown of integrating quantified and semi-quantified meso- and macro-scale textural attributes as well as how they relate to texture-based visual logging systems. The implications of texture for processing behaviours such as comminution, liberation and recovery will be discussed. This research is part of a major collaborative geometallurgical project undertaken at the Centre of Excellence in Ore Deposits (CODES, University of Tasmania) and the Julius Kruttschnitt Mineral Research Centre (JKMRC, University of Queensland). The authors wish to acknowledge financial support and permission to publish from the sponsors of the AMIRA P843 GEM~(III) project.
机译:矿石类型的纹理是理解矿石的冶金行为的基础。该研究将显示如何从自动化和扫描电子显微镜(SEM)的显微镜和使用先进的图像处理技术来获得量化的纹理属性(矿物形状,粒度和矿物结合)的示例。将显示对数量和半量化的中间和宏观尺寸的纹理属性以及它们如何与基于纹理的视觉测井系统的集成的例子。将讨论纹理对处理行为的影响,例如粉碎,解放和恢复等行为。该研究是在俄亥俄州矿床(塔斯马尼亚大学)和朱利叶斯卡特·矿物研究中心(昆士兰大学Julmrc)的卓越中心开展的主要协同几何冶金项目的一部分。作者希望承认从Amira P843 Gem〜(III)项目的提案国发布的财务支持和许可。

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