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Effects of Surfactant on Bubble Size Distribution and Gas Hold-up in a Bubble Column

机译:表面活性剂对气泡塔内气泡尺寸分布和气体滞留的影响

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This study investigates the influence of two surfactants –a non-ionic (Tween20) and a zwitterionic (Cocoamidopropyl Betaine) – upon the gas-liquid hydrodynamics in a bubble column. These kinds of substances can have an important influence upon the gas-liquid hydrodynamics, specifically on the bubble size and gas hold-up. Bubble diameters were measured photographically in a bubble column, which was operating in the homogeneous regime with air and aqueous surfactant solutions. The bubble size and gas hold-up data were determined for several values of the superficial gas velocity (0.13, 0.26 and 0.5 cm/s). On the other hand, bubble diameter was determined for different values of surfactant concentration (0.02, 0.05 and 0.1 %vol). At superficial gas velocity below 0.26 cm/s, addition of surfactant in air-water has low influence on bubble size, whereas higher gas velocity addition of surfactant increases the number of bubble. In surfactant solutions (in comparison with pour water), resulted in an increase in number of bubble and a rough decrease in Sauter mean bubble diameter. Bubbles tend to become smaller with decreasing surface tension of water. Therefore, surfactant existence increases the gas hold-up. Further, gas holdup increased when gas bubbles movement increased.
机译:这项研究研究了两种表面活性剂–非离子表面活性剂(Tween20)和两性离子表面活性剂(椰油酰胺基丙基甜菜碱)–对鼓泡塔中气液流体动力学的影响。这类物质可能会对气液流体动力学产生重要影响,尤其是对气泡大小和气体滞留率有重要影响。在鼓泡塔中照相测量气泡直径,该鼓泡塔在空气和表面活性剂水溶液的均质条件下操作。对于表观气体速度的几个值(0.13、0.26和0.5 cm / s),确定气泡大小和气体滞留数据。另一方面,对于不同的表面活性剂浓度值(0.02、0.05和0.1%vol)确定气泡直径。在低于0.26 cm / s的表观气体速度下,在空气-水中添加表面活性剂对气泡尺寸的影响较小,而以较高的气体速度添加表面活性剂则增加气泡的数量。在表面活性剂溶液中(与倒水相比),气泡数量增加,Sauter平均气泡直径大幅度降低。随着水的表面张力降低,气泡趋于变小。因此,表面活性剂的存在会增加气体滞留率。此外,当气泡运动增加时,气体滞留率增加。

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