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A dynamic model of fluidized-bed flotation

机译:流化床浮选动态模型

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摘要

The concept of fluidized-bed flotation (FBF) (e. G. HydroFloatTM) was recently introduced to improve the recovery of coarse particles (425 to 1180 μm). In spite of encouraging results from the first industrial applications dating back more than a decade, FBF still remains an emerging technology in the global mining industry. This paper presents a dynamic model of a FBF cell based on first principles describing volume conservation balances and macro hydrodynamic conditions. It was specifically developed to address process design, monitoring, and control problems. The model relies on the drift-flux theory to predict the flow of three populations (free particles, attached particles and bubbles) throughout the proposed vertical mixer-in-series framework. A calibration of empirical parameters on literature data demonstrates the ability to reproduce the effect of operating parameters (airflow rate, fluidization water flow rate and bed height) on steady-state recovery as long as the equipment operates at low turbulence.
机译:最近引入流化床浮选(FBF)(例如G. hydrofloattm)的概念以改善粗颗粒的回收率(425至1180μm)。尽管令人愉快的令人愉快的第一个工业应用的结果超过十多年,但FBF仍然是全球矿业的新兴技术。本文介绍了基于第一个原则的FBF单元的动态模型,所述第一原理描述音量储能余额和宏流体动力学条件。它被专门用于解决过程设计,监测和控制问题。该模型依赖于漂移通量理论,以预测整个提出的垂直混合器内框架中的三种群体(自由颗粒,附着颗粒和气泡)的流动。只要设备在低湍流下运行,因此在文献数据上校准了在文献数据上的经验参数在稳态恢复上再现了操作参数(气流速率,流化水流量和床高)的能力。

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