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Prediction of Liquid Holdup and Solid Holdup in Three-phase Fluidized Bed: Air/Newtonian and non-Newtonian Liquid Systems

机译:三相流化床中液体滞留率和固体滞留率的预测:空气/牛顿和非牛顿液体系统

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摘要

Three-phase fluidizing beds have emerged in recent years as one of the most promising devices for three-phase operations. Such a device is of considerable industrial importance in chemical and biochemical industries, wastewater treatment and other biochemical processes. For the design and development of three-phase fluidized bed reactors, knowledge of hydrodynamic parameters viz., liquid holdup and solid holdup is essential. Hence, in this paper, an attempt has been made to study the effect of fundamental and operating variables on liquid holdup and solid holdup. Besides, on the basis of the experimental results, the correlations were developed to predict these holdups in a three-phase fluidized bed using Newtonian and non-Newtonian systems covering a wide range of operating and fundamental variables. The statistical analysis showed that the predictive ability of the present proposed correlations is found to be a good fit with present experimental data and literature data.
机译:近年来,三相流化床已经成为三相操作中最有希望的设备之一。这种设备在化学和生化工业,废水处理和其他生化过程中具有重要的工业重要性。对于三相流化床反应器的设计和开发,必须了解流体力学参数,即液体滞留率和固体滞留率。因此,在本文中,已经尝试研究基本和操作变量对液体滞留量和固体滞留量的影响。此外,根据实验结果,利用牛顿和非牛顿系统涵盖了广泛的操作和基本变量,建立了相关性以预测三相流化床中的滞留量。统计分析表明,目前提出的相关性的预测能力与当前的实验数据和文献数据非常吻合。

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