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Suspension of apatite particles in a self-aerated Denver laboratory flotation cell

机译:暂停self-aerated磷灰石颗粒丹佛实验室浮选池

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摘要

Effective solids suspension is a necessary precondition for particle collection, and solids suspension is largely dependent on the hydrodynamics of the flotation cell. This study attempted to correlate the status of the suspension of apatite particles of different sizes in a Denver laboratory flotation cell versus the impeller rotational speed (N) adopted to operate the machine. The latter variable (N) influences the impeller capacity to lift the particles from the bottom of the tank and also to disperse them throughout the volume of the vessel. Such an impeller capacity can be characterized by the critical impeller speed for the accomplishment of solids off-bottom suspension (N ) and also by the velocity of the radial water flow discharged by the impeller (U) divided by the particle terminal settling velocity (U_S). This way, the status of the suspension of apatite particles inside the flotation cell can be characterized by one of three categories: "segregation " (N/N_2 0.08); "suspension " (0.60 ≤ N/N_2 1,300 rpm), which is adequate to suspend the coarsest particles, may promote the entrainment of the finest particles to the froth layer.
机译:有效的固体悬浮是必要的粒子集合的先决条件和固体悬挂在很大程度上是依赖于流体动力学的浮选池。试图关联的状态暂停磷灰石颗粒的不同丹佛实验室浮选池大小与叶轮转速(N)操作这台机器。影响叶轮提升的能力粒子的底部坦克以及驱散他们的体积船。特点是关键的叶轮速度固体海床上的成就暂停(N)的速度叶轮的径向水流出院(U)除以粒子终端沉降速度(u_)。暂停磷灰石颗粒内部浮选池可以的特征之一三类:“隔离”(N /甲烷、 0.08);和0.06 < u_ / U < 0.10);1、u_ / U≤0.03)。转速(N),暂停最好的粒子(妈妈D_p = 90),是不能暂停粗颗粒(D_P = 254锅)。rpm)暂停粗来说是足够的粒子,可能促进的夹带最好的粒子泡沫层。

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