粒径和十二烷基硫酸钠对非圆形玻璃微通道液-液两相流传质的影响

A. Svensson, Zan Wu, B. Sundén
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引用次数: 1

摘要

本文研究了液-液两相段塞流中两个主要变量对流体力学和传质的影响。研究了方形微通道和矩形微通道的尺寸以及十二烷基硫酸钠(SDS)的存在对反应的影响。采用尺寸分别为600×600 (MC600)、400×400 (MC400)和600×300 (MC300) μm的微通道,液压直径分别为600、400和400 μm。结果表明,减小水力直径会增大段塞长度,从而增大两相的界面面积。此外,由于内部循环的增强,传质阻力降低,导致整体传质系数KL显著提高。研究还发现,与MC600相比,方形MC400微通道的KL增强要大于矩形MC300。当水流量增大时,矩形微通道中有机段塞的内循环增强效应减小,这是由于有机段塞与微通道壁面之间的滞流液膜流动增大。SDS的存在通过减小两相的段塞长度而略微增加了界面面积。然而,由于更大的传质阻力,KL有显著的下降。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effects of Size and Sodium Dodecyl Sulfate on Mass Transfer for Liquid-Liquid Two-Phase Flow in Non-Circular Glass Microchannels
This study concerns effects of two main variables on hydrodynamics and mass transfer in the liquid-liquid two-phase slug flow regime. The influence of size of square and rectangular microchannels and presence of sodium dodecyl sulfate (SDS) are investigated. Three microchannels with dimensions 600×600 (MC600), 400×400 (MC400) and 600×300 (MC300) μm were used with hydraulic diameters of 600, 400 and 400 μm respectively. The results revealed that decreasing the hydraulic diameter improved the interfacial area due to slug length enlargement in both phases. Furthermore, mass transfer resistance was reduced because of enhanced internal circulations, leading to considerable enhancement of the overall mass transfer coefficient KL. It was also found that the enhancement of KL was greater in the square MC400 microchannel than in the rectangular MC300, as compared to the MC600. The enhancing benefit from internal circulations in organic slugs in rectangular microchannels decreased at higher aqueous flow rates due to enlarged stagnant liquid film flow between the organic slug and the microchannel wall. The presence of SDS slightly increased the interfacial area by reducing the slug length in both phases. However, there was a significant decrement in KL, due to a greater mass transfer resistance.
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