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Effect of collection zone height and operating variables on recovery of overload flotation columns

机译:收集区高度和操作变量对超载浮选柱回收的影响

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This paper presents results of column flotation of silica sand (d_(80) = 190 mu m) that show typical column heights may adversely affect the performance of the flotation, when relatively dense flotation slurries of floatable mineral are processed. For slurry densities above 20 percent of solids (w/w), floated under typical conditions (J_g = 1.46 cm/s, J_t = 1 cm/s, J_(ww) = 0.16 cm/s, h_f = 0.3 m), the bubble-particle aggregate reaches density values close to one losing their buoyancy. Under these conditions, mineralized bubbles accumulate, coalesce (losing a fraction of the particles that transport) and may even be carried out to the tailings discharge, affecting both the recovery and the processing capacity of the column. By reducing the height of the collection zone of the column (h_c) this abnormal operation maybe substantially mitigated. In this work, recovery increased from 55 percent to 78 percent by decreasing h_c from 4 to 1.5 m when processing a pulp with 30 percent of floatable minerals. The paper also discusses the effect of column height upon other important variables.
机译:本文介绍了硅砂柱浮选(d_(80)= 190μm)的结果,该结果表明,当处理相对密度较大的浮选矿浆时,典型的柱高可能会对浮选性能产生不利影响。对于高于固体含量20%(w / w)的浆液密度,在典型条件下漂浮(J_g = 1.46 cm / s,J_t = 1 cm / s,J_(ww)= 0.16 cm / s,h_f = 0.3 m),气泡颗粒聚集体的密度值接近于失去浮力的密度值。在这些条件下,矿化的气泡会积聚,聚结(损失一部分运输颗粒),甚至可能被带到尾矿排放口,从而影响色谱柱的回收率和处理能力。通过降低塔的收集区的高度(h_c),可以大大减轻这种异常操作。在这项工作中,当处理含30%的可漂浮矿物的纸浆时,通过将h_c从4降低到1.5 m,回收率从55%提高到78%。本文还讨论了柱高对其他重要变量的影响。

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