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首页> 外文期刊>International Journal of Mineral Processing >Copper ore density separations by float/sink in a dry sand fluidised bed dense medium
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Copper ore density separations by float/sink in a dry sand fluidised bed dense medium

机译:在干砂流化床致密介质中通过浮选/沉没进行铜矿石密度分离

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摘要

Two types of copper ore have been separated based on density by float/sink in a dry sand fluidised bed dense medium. This is the first report of dry separation of lump copper ores using a dry sand fluidised bed dense medium. The separation point density and the separation efficiency, characterised by the probable error, can be controlled by changing the amount of different density sand particles in the medium mixture and the fluidisation air velocity. It has been shown that separation point densities between about 2200 and 3700 kg/m3 with probable errors typically in the range of 0.01 to 0.06 can be obtained. Ores with particles in the size range of between about 10 and 25 mm can be treated. Depending on the ore mass-density distribution and copper-density distribution, between about 20 to more than 40% of the low density ore could potentially be rejected prior to wet grinding with little loss of valuable copper. This would significantly reduce the amount of energy and water required for wet grinding and down stream processing such as flotation.
机译:根据密度,通过在干砂流化床密集介质中通过浮选/沉没法分离出两种类型的铜矿石。这是使用干砂流化床致密介质干法分离块状铜矿石的第一份报告。可以通过改变介质混合物中不同密度砂粒的数量和流化空气速度来控制以可能的误差为特征的分离点密度和分离效率。已经表明,可以获得大约2200至3700kg / m 3的分离点密度,可能的误差通常在0.01至0.06的范围内。可以处理粒径范围在10到25毫米之间的矿石。根据矿石的质量密度分布和铜密度分布,在湿法研磨之前,可能会拒绝约20%至40%以上的低密度矿石,而有价值的铜损失很少。这将大大减少湿磨和下游加工(如浮选)所需的能量和水量。

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