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Experimental and numerical study on the stirred pulp-mixing process with addition accessory

机译:搅拌纸浆混合过程的实验性和数值研究

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Flotation column is a novel type of new effective separation equipment for fine particle ore. Stirred pulp-mixing is a core component of a cyclonic-static micro-bubble flotation column. The quality of stirred pulp-mixing performance directly influences the separation effect of the flotation column. In this paper, stirred pulp-mixing performance with the effect of addition accessory (baffles and guide cylinder) was experimentally and numerically studied. The analysis show that without the addition accessory, the impeller mainly form circulation in stirred pulp-mixing and can't generate mixing flow with high shear rate and high turbulent kinetic energy in whole tank. With a guide cylinder, the axial flow is enhanced which speed up the interaction of flotation reagent with mineral as well as shorten mixing time. With the baffles, flow resistances increased, velocity decreased, as a result, prolonging mixing time. But, shearing rate is increased and the lower turbulent kinetic energy region is smallest, which makes it easy to break through the potential barrier of interfaces of solid and liquid phase in pulp-mixing process and also strengthen the interaction of flotation reagent with mineral surface.
机译:浮选柱是一种新型新型有效分离设备,用于细颗粒矿石。搅拌纸浆混合是旋风静态微泡浮选塔的核心组分。搅拌纸浆混合性能的质量直接影响浮选塔的分离效果。在本文中,搅拌纸浆混合性能随着加成附件(挡板和引导圆筒)的效果进行了实验和数值研究。分析表明,在没有加成附件的情况下,叶轮主要在搅拌纸浆混合中形成循环,并且在整个罐中不能产生高剪切速率和高湍流动能的混合流动。采用引导缸,轴向流量增强,加速浮选试剂与矿物的相互作用以及缩短混合时间。通过挡板,流动电阻增加,速度降低,延长混合时间。但是,剪切速率增加,下湍流动能区最小,这使得纸浆混合过程中固体和液相界面的潜在屏障易于破裂,并且还强化浮选试剂与矿物表面的相互作用。

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