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Improving the recovery of low grade coarse composite particles in porphyry copper ores

机译:改善斑岩铜矿中低品位粗复合颗粒的回收率

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摘要

The flotation behaviour of low grade, coarse composite particles for two porphyry copper ores was studied. Different grinding times were employed to obtain size distributions for the flotation feed (d_(80)) ranging from 150 to 320 um. Copper containing particles in the fine to intermediate size ranges were recovered in the rougher flotation stage. The rougher tailing was then screened through a 75μmlaboratory sieve. The +75μmfraction was conditioned with a longer chain collector and floated in either normal viscosity (water) or high viscosity (glycerol-water mixture) medium. The recovery of copper was analysed on an un-sized and size-by-size basis. The recovery of coarse composite copper bearing particles was found to increase in high viscosity medium, even when the liberation of copper bearing minerals was only as low as 10%. The ability to recover these types of particles may result in a reduction in energy consumption in grinding due to the ability to achieve higher overall recovery of valuable mineral at coarse particle size distribution.
机译:研究了两种斑岩型铜矿的低品位粗大复合颗粒的浮选行为。采用不同的研磨时间以获得浮选进料(d_(80))的粒度分布范围为150至320 um。在较粗的浮选阶段中,可以回收细到中等尺寸范围的含铜颗粒。然后通过75μmlaboratory筛网筛选出较粗的尾矿。 +75μmfraction用更长的链收集器调节,并漂浮在正常粘度(水)或高粘度(甘油-水混合物)的介质中。铜的回收率是按未按尺寸和按尺寸进行分析的。发现即使在含铜矿物的释放仅低至10%的情况下,在高粘度介质中,粗大的含铜复合颗粒的回收率也会提高。回收这些类型的颗粒的能力可能会减少磨削中的能源消耗,这是因为能够在粗粒度分布下实现有价值矿物的更高总体回收。

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