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SEPARATION OF MINERALS USING ELECTRICAL FIELDS

机译:使用电场分离矿物质

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The mineral processing industry requires alternative separation techniques to help deal with rising energy costs and decreasing ore grades. Dielectrophoresis is one possible technology. It uses nonuniform electrical fields to separate particles on the basis of their permittivity. In order to determine its viability, the dielectrophoretic force was measured for individual chalcopyrite particles in ethanol. The measurements were made by attaching the individual particles to glass fibres and measuring how far they were deflected by a non-uniform electrical field. Six sizes of chalcopyrite particles were tested and the force was found to increase as a function of particle radius cubed. The particles were also positioned at different points in the field in order to determine the effect of the electrical field gradient. The force was found to increase with the inverse cube of the distance from the centre of the particle to the pin electrode. With the effect of these parameters fully characterised, the single particle test cell can be used to determine the permittivity of single particles of various composition.
机译:矿产加工行业需要替代分离技术,以帮助能源成本上升和降低矿石等级。介电泳是一种可能的技术。它使用非均匀的电场基于它们的介电常数来分离粒子。为了确定其活力,测量乙醇中单个黄铜矿颗粒的介电泳力。通过将各个颗粒附着到玻璃纤维并测量它们被非均匀电场偏转的偏转来进行测量。测试六种尺寸的黄铜矿颗粒,发现力随着颗粒半径的函数而增加。颗粒也定位在场中的不同点,以便确定电场梯度的效果。发现力随着距离颗粒中心的距离与销电极的距离的逆立方增加而增加。随着这些参数的效果完全表征,单颗粒测试电池可用于确定各种组合物的单个颗粒的介电常数。

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