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Mass Transfer Coefficients for a Bingham Fluid and Water With and Without Anti-foam Agents

机译:有和没有消泡剂的宾厄姆流体和水的传质系数

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The equations describing mass transfer coefficients are rather concise, but experimental data is required to determine the coefficients. Here, mass transfer rates were measured in a large scale system, which consisted of an 8.4 meter tall by 0.76 meter diameter column containing one of three fluids: water with an anti-foam agent, water without an anti-foam agent, and a Bingham plastic fluid, referred to as AZ101 simulant. The Bingham fluid differed from water since it required an applied yield stress to initiate flow. Newtonian fluids, like water, have a zero yield stress. Each of the fluids was saturated with oxygen, and the oxygen was removed from solution as air bubbled up, or sparged, through the solution from the bottom of the column. Air sparging was supplied by a single pipe which was co-axial to the column. The decrease in oxygen concentration was recorded, and the oxygen measurements were then used to determine the mass transfer coefficients to describe the rate of oxygen transfer from solution. Mass transfer data for 24 different test conditions were determined. Superficial sparging velocities of 2, 5, and 10 mm/second were applied to each of the simulants at three different column fill levels, where the superficial velocity is defined as the average volumetric flow rate divided by the liquid surface area in the column. Mass transfer coefficient test results are presented herein for each test combination of superficial velocity and fluid level.
机译:描述传质系数的方程式非常简洁,但是需要实验数据来确定这些系数。在此,传质速率是在一个大型系统中测量的,该系统由一个高8.4米x 0.76米的色谱柱组成,该色谱柱包含以下三种流体之一:含消泡剂的水,不含消泡剂的水和宾厄姆可塑性液体,称为AZ101模拟物。宾厄姆流体不同于水,因为它需要施加屈服应力才能启动流动。牛顿流体像水一样,屈服应力为零。每种流体都充满了氧气,并且当空气从塔底鼓泡或鼓泡通过溶液时,从溶液中除去了氧气。空气喷射是通过与塔同轴的单个管道进行的。记录氧气浓度的降低,然后使用氧气测量值确定传质系数,以描述氧气从溶液中的传输速率。确定了24种不同测试条件的传质数据。在三种不同的色谱柱填充水平下,对每种模拟物施加2、5和10 mm /秒的表面喷射速度,其中表面速度定义为平均体积流量除以色谱柱中的液体表面积。本文介绍了表观速度和液位的每个测试组合的传质系数测试结果。

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