首页> 外文会议>International mineral processing congress >CHARACTERISATION, ANALYSIS AND SIMULATION OF MULTIPHASE PARTICULATE SYSTEMS USING HIGH RESOLUTION X-RAY MICRO TOMOGRAPHY (HRXMT)
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CHARACTERISATION, ANALYSIS AND SIMULATION OF MULTIPHASE PARTICULATE SYSTEMS USING HIGH RESOLUTION X-RAY MICRO TOMOGRAPHY (HRXMT)

机译:高分辨率X射线微层面(HRXMT)的多相颗粒系统的表征,分析和仿真

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Understanding multiphase particulate systems is essential for the further advancement of mineral processing technology. Characterisation, analysis, and simulation of these complex systems provide a fundamental basis for the development of improved mineral processing technology. One of the more recent tools that can be used to help provide a foundation for improved mineral processing technology is high resolution cone beam X-ray micro computed tomography (CT). During the past ten years point-projection X-ray micro CT systems have been used for 3D visualisation and quantitative analysis of multiphase particulate systems. Analysis of packed particle beds containing as many as 30 000 particles can be accomplished in less than three hours with special software to establish the 3D characteristics of each particle in the population and the spatial organisation of the packed particle bed. Now, due to advances in X-ray optics, the resolution afforded with point-projection micro CT systems has been improved by at least an order of magnitude using a lens-based X-ray micro CT system. The development of software tools for the 3D characterisation, analysis, and simulation of packed particle beds using high resolution X-ray micro tomography (HRXMT) is discussed including examples of application in the areas of comminution (particle damage and preferential grain boundary fracture), exposure/liberation analysis (liberation-limited separation efficiency, including coal washability), and filtration/heap leaching (pore network structure of packed particle beds and simulated flow using the LB method of computational fluid dynamics).
机译:了解多相颗粒系统对于矿物加工技术的进一步推进至关重要。这些复杂系统的表征,分析和仿真为改进的矿物加工技术的发展提供了基础。最近可用于帮助改进的矿物加工技术的基础的最新工具之一是高分辨率锥梁X射线微计算机断层扫描(CT)。在过去的十年中,投影点投影X射线微型CT系统已被用于多相颗粒系统的3D可视化和定量分析。含有多达30 000个颗粒的填充粒子床的分析可以在不到三小时的时间内完成特殊软件,以建立群体中每种粒子的3D特征和填充颗粒床的空间组织。现在,由于X射线光学器件的进展,使用基于透镜的X射线微型CT系统至少增加了与点投影微型CT系统提供的分辨率。的软件工具用于3D表征,分析,和使用高分辨率X射线显微断层显像(HRXMT)进行了讨论,包括在粉碎的区域应用(颗粒损坏和优惠的晶界破坏)的例子压缩的粒子床的仿真的发展,暴露/解放分析(解放有限的分离效率,包括煤炭可洗涤性)和过滤/堆浸出(使用填充粒子的孔网络结构和使用计算流体动力学的LB方法的模拟流动)。

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