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Agglomeration of Ni-Rich Hydroxide in Reaction Crystallization: Effect of Taylor Vortex Dimension and Intensity

机译:富镍氢氧化物在反应结晶中的团聚:泰勒涡旋尺寸和强度的影响

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摘要

The effect of a Taylor vortex flow on the agglomeration of Ni-rich hydroxide (Ni0.90Co0.05Mn0.05)(OH)(2) was investigated in a CouetteTaylor (CT) crystallizer. The agglomeration process was found to be significantly affected by the rotation speed of the inner cylinder (hydrodynamic intensity) and gap size between the inner and outer cylinders of the CT crystallizer (vortex dimension), as these parameters affected the fluid shear and stability of the Taylor vortex flow. Thus, the agglomerate size was reduced when increasing the rotation speed and decreasing the gap size due to the increased fluid shear. A high rotation speed also improved the agglomerate size distribution and tap density. However, the agglomerate size distribution became broader and the tap density lower when decreasing the gap size, despite the increased fluid shear. This was due to an increase in the axial dispersion effect in the CT crystallizer when decreasing the gap size. As a result, the effective fluid motion of the Taylor vortex produced narrowly distributed and spherical agglomerates with a coefficient of variation of 0.22 and tap density of 2.15 g/cm(3) when using a high rotation speed (1500 rpm), wide gap size (0.89 of radius ratio), and only 1-h mean residence time in the continuous CT crystallizer. This confirmed that a Taylor vortex would be highly applicable for the practical production process of agglomerates of Ni-rich hydroxide.
机译:在CouetteTaylor(CT)结晶器中研究了泰勒涡流对富镍氢氧化物(Ni0.90Co0.05Mn0.05)(OH)(2)附聚的影响。发现团聚过程受内圆柱体的旋转速度(流体动力强度)和CT结晶器内外圆柱体之间的间隙尺寸(涡流尺寸)的显着影响,因为这些参数影响了流体的剪切和稳定性。泰勒涡流。因此,当增加旋转速度并由于增加的流体剪切力而减小间隙尺寸时,附聚物尺寸减小。较高的转速也改善了附聚物的尺寸分布和堆积密度。然而,尽管减小了流体剪切力,但是当减小间隙尺寸时,附聚物尺寸分布变得更宽,振实密度更低。这是由于减小间隙尺寸时,CT结晶器中轴向弥散效应的增加。结果,当使用高转速(1500 rpm),间隙尺寸大时,泰勒涡流的有效流体运动产生了狭窄分布的球形团聚体,其变异系数为0.22,振实密度为2.15 g / cm(3)。 (半径比为0.89),在连续CT结晶器中的平均停留时间仅为1小时。这证实了泰勒涡旋将非常适用于富镍氢氧化物附聚物的实际生产过程。

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