Effect of alcohol, organic acid and potassium chloride concentration on bubble size, bubble rise velocity and gas hold-up in bubble columns

M. Jamialahmadi, H. Müller-Steinhagen
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引用次数: 86

Abstract

The effect of alcohol, organic acid and potassium chloride concentration on bubble size, bubble stability, terminal bubble rise velocity and gas hold-up in bubble columns was investigated. The addition of alcohols and organic acids to the water reduced the bubble size and the bubble rise velocity significantly. These organic solutes also changed the coalescence behaviour of aqueous solutions drastically, from high coalescence behaviour of pure water to coalescence restrain of the various solutions.

The mechanism of the coalescence suppression behaviour of electrolytic solutions of potassium chloride is discussed on the basis of ionic forces between ions and water molecules. The gas hold-up for low potassium chloride concentration increased owing to the ions reinforcing the liquid film between bubbles against bubble coalescence. For high potassium chloride concentration and low superficial gas velocity, large but unstable bubbles formed at the gas distributor plate. Increasing the gas velocity causes these bubbles to break into many smaller bubbles, thus increasing the gas hold-up.

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酒精、有机酸和氯化钾浓度对气泡柱中气泡大小、气泡上升速度和气含率的影响
考察了乙醇、有机酸和氯化钾浓度对气泡大小、气泡稳定性、末端气泡上升速度和气泡柱气含率的影响。醇类和有机酸的加入显著降低了气泡的大小和气泡的上升速度。这些有机溶质也极大地改变了水溶液的聚结行为,从纯水的高聚结行为到各种溶液的聚结抑制。基于离子与水分子之间的离子力,讨论了氯化钾电解溶液聚结抑制行为的机理。当氯化钾浓度较低时,由于离子加强气泡之间的液膜而阻碍气泡聚并,气含率增加。当氯化钾浓度高、表面气速低时,在配气板处形成大而不稳定的气泡。增加气体流速会使这些气泡破裂成许多更小的气泡,从而增加气体的含气率。
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