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Effect of Operating Pressure on the Application of Multiple Cyclones in Dense Medium Separation (DMS) Plant

机译:操作压力对重介质分离装置中多个旋风分离器应用的影响

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摘要

In order to meet the market demands for minerals, it is necessary that large volumes of ores be treated at a rapid rate, and this has led to the use of multiple cyclones (in parallel) in the dense medium separation (DMS) plant since the single largest efficiently used cyclone (710 mm in diameter) can only process approximately 400 m~3 /h of material. However, the use of multiple cyclones came with a few problems that are all centered on the split of the ore feed and transport medium amongst the number of cyclones used. Poor splits often lead to poor separations, especially when treating ores with a high quantity of near-gravity material. This study therefore, focuses on the effects of operating pressure on the stability and efficiency of the cyclones. The effects of pressure on the stability and distribution of the ore in the cyclones were also investigated in this study. The analyses of the results obtained indicate that the circulating medium was stable with percentage stability in the range of 3 to 12%, with average medium stability of 8.3%. The results also show that changes in the circulating medium density and mixing box operating level had little effect on the cyclone pressure. The simulated results indicate that changes larger than 5% may adversely affect cyclone pressures. Tracer analysis was used to determine the efficiency, and its results show that the cyclones were cutting at a very high density cut point, which was due to the high operating head of the cyclones at 16 D. It was discovered that operating the cyclone at maximum head of 12D to bring down the cut point reduce the wear rate on the cyclones. The tromp curves obtained from operating the cyclones at a lower pressure gave an average mean probable error of 0.048 (0.05 approximately) andan average cut point of 3.13. This indicates that the cyclones operate fairly similarly with very good separation efficiencies.
机译:为了满足市场对矿物的需求,有必要对大量矿石进行快速处理,这导致自密闭介质分离(DMS)厂开始使用多个旋风分离器(并行)。一个最大的有效使用的旋风分离器(直径710毫米)只能处理大约400 m〜3 / h的材料。但是,使用多个旋风分离器会带来一些问题,这些问题都集中在所使用的旋风分离器中矿石进料和运输介质的分配上。开裂不良通常会导致分离效果差,特别是在使用大量近重力物料处理矿石时。因此,本研究着重于操作压力对旋风分离器稳定性和效率的影响。在这项研究中,还研究了压力对旋风分离器中矿石稳定性和分布的影响。对所得结果的分析表明,循环介质是稳定的,百分比稳定性在3%至12%的范围内,平均介质稳定性为8.3%。结果还表明,循环介质密度和混合箱操作水平的变化对旋风分离器的压力影响很小。模拟结果表明,大于5%的变化可能会对旋风分离器压力产生不利影响。示踪分析用于确定效率,其结果表明,旋风分离器在很高的密度切割点进行切割,这是由于旋风分离器在16 D时有很高的扬程造成的。降低切割点的12D头部可降低旋风分离器的磨损率。通过在较低压力下操作旋风分离器获得的加速曲线给出了0.048(约0.05)的平均平均可能误差和3.13的平均切点。这表明旋风分离器的运行非常相似,分离效率非常好。

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