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Direct mineral tracer activation in positron emission particle tracking of a flotation cell

机译:直接矿物示踪剂激活正电子发射粒子跟踪浮选槽

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摘要

Understanding the complex interplay of physics and chemistry inside a flotation cell is the ultimate goal of most flotation research. Key to the development of a model of flotation is the ability to validate it from measurements of a real flotation system. This work uses positron emission particle tracking (PEPT) to track directly activated mineral particles, hydrophobic and hydrophilic, in a lab-scale flotation cell. In contrast to other particle activation methods the direct activation technique allows mineral particles with their original surface characteristics to be used in PEPT experiments. In this work the flotation separation investigated was the separation of hematite from quartz from a synthetic ore using a combination of an oleic acid collector and sodium silicate depressant. This work represents the first time in which particles of typical flotation size (−106 + 90 μm diameter) with real bulk mineral properties and surface chemistry have been tracked in a flotation cell. The results illustrate small particles flow behaviour in the cell for a hydrophilic particle. The trajectory and velocities of the tracer particle are shown as it is transported inside the flotation cell.
机译:了解浮选池内部物理和化学的复杂相互作用是大多数浮选研究的最终目标。浮选模型开发的关键是能够通过对实际浮选系统进行测量来对其进行验证。这项工作使用正电子发射粒子跟踪(PEPT)来跟踪实验室规模浮选池中直接活化的疏水性和亲水性矿物粒子。与其他颗粒活化方法相比,直接活化技术允许将具有原始表面特征的矿物颗粒用于PEPT实验。在这项工作中,所研究的浮选分离是使用油酸收集剂和硅酸钠抑制剂将赤铁矿与石英从合成矿石中分离出来。这项工作代表了首次在浮选槽中跟踪了具有实际浮选矿物特征和表面化学性质的典型浮选尺寸(-106 + 90μm直径)的颗粒。结果说明了亲水性颗粒在电池中的小颗粒流动行为。显示了示踪剂颗粒在浮选池内部运输时的轨迹和速度。

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