Diameter and height design of a countercurrent flotation column
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摘要: 論述了柱徑與柱高對逆流浮選柱浮選過程的影響,提出了氣阻、面積負荷的概念.通過研究礦化氣泡的受力及運動,建立了表征礦漿運動的理論模型,并對模型的參數做了經驗處理.給出了用礦漿流速確定柱徑、用柱徑和浮選柱容積來確定柱高的設計方法.通過對細粒鉬鉍礦物的回收實驗表明,在同等實驗條件下,無論是精礦品位還是回收率,按該方法設計的柱體浮選效果明顯好于其他尺寸的柱體.Abstract: The influences of column diameter and height on the countercurrent flotation process were discussed, and the new concepts of choked air bubbles and area load were put forward. By studying the force and movement of mineralized bubbles, a theoretical model expressing pulp movement was set up and model parameters were treated by experience. The column diameter was designed based on the pump velocity, and the column height was designed based on the column diameter and the column. Experiments were carried out to process molybdenum bismuth fine ores. The experimental results show that under the same test conditions, both the concentrate grade and the concentrate recovery of the flotation column whose size is designed based on this method are higher than those of other size flotation columns.
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Key words:
- countercurrent flotation column /
- column diameter /
- column height /
- design
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