首页> 外文会议>International mineral processing congress >FINE GRAVITY SEPARATION IN THE REFLUX CLASSIFIER, EXPLOITING A HIGH SHEAR RATE, LAMINAR FLOW MECHANISM
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FINE GRAVITY SEPARATION IN THE REFLUX CLASSIFIER, EXPLOITING A HIGH SHEAR RATE, LAMINAR FLOW MECHANISM

机译:热重力分离在回流分级器中,利用高剪切速率,层流机构

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The Reflux Classifier is used in the gravity separation of particles over a broad range of particle sizes. The device consists of a fluidised bed zone, with a system of parallel inclined channels above. The inclined channels provide a significant hydraulic advantage over conventional fluidised beds via the so-called Boycott Effect (Boycott, 1920). This paper describes a new advance in fine gravity separation based on the high shear rate and laminar flow profile that arises when closely spaced inclined channels are deployed. As reported recently (Galvin et al, 2009a), a powerful density based separation mechanism develops from this arrangement, suppressing the effects of particle size. In this paper we focus on two areas, firstly the application of the separator in the laboratory for batch fractionation of particles of varying size and density to determine the grade recovery curve and hence the liberation, and secondly the step change in separation performance achieved on a continuous steady state basis when closely spaced inclined channels are used. The variation in the separation density with particle size decreases significantly, and the Ecarte Probable Error (Ep) remains at low levels over a broad size range.
机译:回流分级器用于颗粒的重力分离在宽范围的颗粒尺寸上。该装置由流化床区组成,具有上述平行倾斜通道的系统。倾斜通道通过所谓的抵制效果(抵制,1920),在传统的流化床上提供了显着的液压优势。本文介绍了基于展开紧密间隔的倾斜通道时产生的高剪切速率和层流曲线的细重分离中的新进步。如最近(Galvin等,2009a)所报道,一种强大的密度的分离机制从这种布置产生,抑制粒径的影响。在本文中,我们集中在两个方面,首先,在上一个实现的实验室为不同大小和密度,以确定等级恢复曲线,因此解放,其次在分离性能的阶跃变化的颗粒的批次分馏分离器的应用连续稳定状态基础当使用紧密间隔的倾斜通道。具有粒度的分离密度的变化显着降低,并且ECARTE可能误差(EP)在宽尺寸范围内保持低位。

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