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Exploring bubble oscillation and mass transfer enhancement in acoustic-assisted liquid-liquid extraction with a microfluidic device

机译:探索微流体装置在声辅助液-液萃取中的气泡振荡和传质增强

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摘要

We investigated bubble oscillation and its induced enhancement of mass transfer in a liquid-liquid extraction process with an acoustically-driven, bubble-based microfluidic device. The oscillation of individually trapped bubbles, of known sizes, in microchannels was studied at both a fixed frequency, and over a range of frequencies. Resonant frequencies were analytically identified and were found to be in agreement with the experimental observations. The acoustic streaming induced by the bubble oscillation was identified as the cause of this enhanced extraction. Experiments extracting Rhodanmine B from an aqueous phase (DI water) to an organic phase (1-octanol) were performed to determine the relationship between extraction efficiency and applied acoustic power. The enhanced efficiency in mass transport via these acoustic-energy-assisted processes was confirmed by comparisons against a pure diffusion-based process.
机译:我们研究了声波驱动的基于气泡​​的微流体装置在液-液萃取过程中气泡振荡及其引起的传质增强。在固定频率和一定频率范围内研究了微通道中单个捕获的已知大小气泡的振荡。通过分析确定共振频率,发现与实验观察结果一致。气泡振荡引起的声流被确定为这种增强提取的原因。进行了从水相(去离子水)到有机相(1-辛醇)中提取若丹明B的实验,以确定提取效率与施加的声功率之间的关系。通过与基于纯扩散的过程进行比较,证实了通过这些声能辅助过程的传质效率得到了提高。

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