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Study of holdup and slip velocity in an L-shaped pulsed sieve-plate extraction column

机译:L型脉冲筛板萃取塔的滞留率和滑移速度研究

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High-end applications require a very tall vertical extraction column in some cases which deteriorates protection against radiation and cannot be employed for indoor applications. On the other hand, horizontal extraction columns offer higher efficiency and pretension, but lower maximum throughput. In order to address this issue, the L-shaped pulsed extraction column is a new type of extractors which were recently introduced for such applications with area constraints. The objective of this study is to evaluate the effects of operating parameters and physical properties on the variation of holdup and slip velocity in this type of extractors for three liquid systems including toluene–water, butyl acetate–water and n butanol–water without and under mass transfer condition. A comprehensive investigation on the determination of predictive ability of available correlations for the holdup and slip velocity in pulsed plate columns has been conducted. Finally, new correlations are proposed for prediction of these parameters regarding operational conditions and physical properties.
机译:高端应用在某些情况下需要非常高的垂直萃取塔,这会降低其对辐射的防护能力,因此不能用于室内应用。另一方面,水平萃取塔可提供更高的效率和预张力,但最大通量较低。为了解决这个问题,L形脉冲萃取塔是一种新型萃取器,最近针对此类应用引入了面积限制。这项研究的目的是评估三种液体系统(包括甲苯-水,乙酸丁酯-水和正丁醇-水)在不使用和不足的情况下,操作参数和物理性质对此类萃取器中滞留率和滑移速度变化的影响。传质条件。对确定脉冲板塔中滞留率和滑移速度的可用相关性的预测能力进行了全面研究。最后,提出了用于预测这些参数的有关运行条件和物理特性的新的相关性。

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