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首页> 外文期刊>Journal of Chemical Engineering of Japan >Flow Characteristics of Bubble Column with Perforated Draft Tube—Effects of Equipment Dimensions and Gas Dispersion—
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Flow Characteristics of Bubble Column with Perforated Draft Tube—Effects of Equipment Dimensions and Gas Dispersion—

机译:带穿孔导流管的鼓泡塔的流动特性—设备尺寸和气体扩散的影响—

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摘要

References(12) Cited-By(10) The effects of equipment dimensions and gas dispersion on the flow characteristics of a bubble column with perforated draft tube were experimentally examined. Gas was dispersed into the inner section of the draft tube or into the annular section between the column and the draft tube. Under various combinations of column diameter and diameter and length of the draft tube, the flow pattern was observed and the liquid mixing time, gas holdup and specific gas-liquid interfacial area were measured.In either gas dispersion, gas and liquid radially flowed through holes in the draft tube, and large bubbles were subdivided into small ones. Gas dispersion into the inner section was more effective in shortening the liquid mixing time. The liquid mixing time was shortened by increasing the ratio of height/column diameter, and was most shortened at a diameter ratio of draft tube/column of about 0.6. Gas dispersion into the annular section was effective in increasing the gas holdup and the interfacial area. The interfacial area was also increased by decreasing the characteristic length of the gas dispersion section.
机译:参考文献(12)引用(10)考察了设备尺寸和气体扩散对带有穿孔导流管的鼓泡塔流动特性的影响。气体散布到引流管的内部或塔和引流管之间的环形部分。在色谱柱直径,引流管直径和长度的各种组合下,观察流型,并测量液体混合时间,气体滞留率和特定的气液界面面积。在气体分散体中,气体和液体径向流过孔在引流管中,大气泡被细分为小气泡。气体散布到内部区域更有效地缩短了液体混合时间。通过增加高度/柱直径的比可以缩短液体混合时间,并且在引流管/柱的直径比约为0.6时可以最短地缩短液体混合时间。气体散布到环形部分可有效增加气体滞留量和界面面积。通过减小气体分散部分的特征长度也增加了界面面积。

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