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Investigation of bubble-particle interactions in a mechanical flotation cell, part 1: Collision frequencies and efficiencies

机译:机械浮选细胞中泡沫颗粒相互作用的研究,第1部分:碰撞频率和效率

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In this study the influence of impeller speed and superficial gas velocity on hydrodynamic parameters, bubble-particle collision frequency and efficiency using pure quartz particles of different sizes in an aerated Denver flotation cell was investigated. Collision frequency in different parts of cell was calculated by local turbulent energy dissipation rate measurements. Collision efficiency due to gravitational, inertial, interceptional and turbulence mechanism was determined. The overall collision efficiency (E-c) was also investigated. The results showed that the bubble-particle frequencies for different particle sizes in the turbulent zone were 10-12 times higher than in the quiescent zone. Under various hydrodynamic conditions, minimum and maximum values of E-c were observed for - 38 gm and - 300 + 212 mu m particles, respectively. The turbulence mechanism was the main collision mechanism for fine particles. The collision efficiency of coarse particles was mainly influenced by gravitational, inertial and interceptional mechanisms.
机译:在该研究中,研究了叶轮速度和浅表气体速度对水动力学参数的影响,在燃气丹佛浮选细胞中使用纯石英颗粒的纯石英颗粒的纯石英颗粒。通过局部湍流能量耗散速率测量计算不同部分的不同部分的碰撞频率。确定引起的引力,惯性,截取和湍流机构引起的碰撞效率。还调查了整体碰撞效率(E-C)。结果表明,湍流区中不同颗粒尺寸的气泡粒子频率比静态区高10-12倍。在各种流体动力学条件下,分别观察到 - 38克 - 300 +212μm颗粒的最小和最大值。湍流机构是用于细颗粒的主要碰撞机构。粗颗粒的碰撞效率主要受重力,惯性和拦截机制的影响。

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