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How gangue particle size can affect the recovery of ultrafine and fine particles during froth flotation

机译:如何在泡沫浮选期间影响膨胀粒度的粒度会影响超细和细颗粒的回收

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In general, the poor flotation behavior of ultrafine (<10 mu m) particles is mainly associated with a low particle/bubble collision efficiency within the flotation process due to an unfavorable particle/bubble size ratio. In those considerations the size of the gangue particles is usually not considered. This study investigates the effect of gangue particle size on the recovery of ultrafine and fine (10-50 mu m) particles. Artificial, binary model particle systems, with magnetite as the target mineral and quartz as the gangue mineral, are used in this study in order to minimize reported issues associated with ultrafine gangue particles. Results indicate that ultrafine magnetite can be recovered similar to fine magnetite when the gangue particles are fine as well. In contrast, fine magnetite recovery drops significantly when ultrafine quartz is used as the gangue mineral system. This should thus open a discussion of a reconsideration of the collision efficiency models to incorporate the effect of the gangue particles. (C) 2017 Elsevier Ltd. All rights reserved.
机译:通常,超细(<10μm)颗粒的较差的浮选行为主要与浮选过程中的低粒子/气泡碰撞效率相关,由于不利的颗粒/气泡尺寸比。在那些考虑因素中,通常不考虑兆瓦颗粒的大小。本研究研究了膨胀粒度对超细和细(10-50μm)颗粒的回收的影响。用磁铁矿作为靶矿物和石英作为膨胀物矿物的人工,二元模型粒子系统用于本研究中,以最大限度地减少与超细煤矸石颗粒相关的报告问题。结果表明,当煤矸石颗粒也正常时,超细磁铁矿可以类似于细磁铁矿。相比之下,当超细石英用作膨胀矿物系统时,细磁铁矿回收显着下降。因此,这应该开立对碰撞效率模型的重新考虑来掺入甘蓝颗粒的效果。 (c)2017 Elsevier Ltd.保留所有权利。

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