首页> 外文期刊>Advanced Powder Technology: The internation Journal of the Society of Powder Technology, Japan >Effect of fin type baffle on the particle hydrodynamics, separation and misplacement in a liquid solid fluidized bed separator
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Effect of fin type baffle on the particle hydrodynamics, separation and misplacement in a liquid solid fluidized bed separator

机译:翅片型挡板对液体固体流化床分离器颗粒流体动力学,分离和错位的影响

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摘要

Use of fluidization phenomenon is increasing day by day in the mineral beneficiation. Owing to the physical properties of the mineral particles, misplacement happens during the segregation. The present study aims at understanding the effect of fin type vertical baffle along with parameters such as superficial velocity, overflow height, feed composition and Mean Particle Size Ratio (MPSR) on the particle misplacement and separation in a liquid solid fluidized bed separator. The particle misplacement was evaluated quantitatively using "Misplacement Index". It was found that the fin type vertical baffles have negligible or no effect on the particle misplacement. Moreover, change in the superficial velocity, overflow height, feed composition and MPSR substantially affects the particle misplacement. Further, there exists a critical feed composition where the misplacement is low. In addition to this, there also exists a critical MPSR where the fluidized bed operates in a completely mixed state and the point could be considered as the starting of the layer inversion. (C) 2018 The Society of Powder Technology Japan. Published by Elsevier B.V. and The Society of Powder Technology Japan. All rights reserved.
机译:在矿物质酵母中,使用流化现象的使用日益增加。由于矿物颗粒的物理性质,在偏析期间发生错位。本研究旨在了解翅片型垂直挡板的效果以及诸如浅速度,溢流高度,饲料组合物和平均粒度比(MPSR)等参数的效果,在颗粒错位和在液体固体流化床分离器中分离。使用“错位指数”定量评估颗粒错位。发现翅片型垂直挡板对颗粒错位具有可忽略的或没有影响。此外,表面速度,溢流高度,饲料组合物和MPSR的变化基本上影响粒子错位。此外,存在误缩口低的关键饲料组合物。除此之外,还存在一个关键的MPSR,其中流化床以完全混合状态操作,并且该点可以被认为是层反转的开始。 (c)2018年日本粉末科技学会。由elsevier b.v发表。和日本粉末科技会。版权所有。

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