微型反应器
空化
混合(物理)
超声波传感器
气泡
无量纲量
声化学
水溶液
材料科学
声学
化学工程
机械
化学
工程类
物理
有机化学
量子力学
催化作用
作者
Lixue Liu,Shuainan Zhao,Chaoqun Yao,Guangwen Chen
摘要
Abstract Generation and oscillation of cavitation bubbles are key factors to intensify fluid mixing in ultrasonic microreactors (USMRs). This work proposed a strategy of introducing a “pre‐cavitation” stage in a novel USMR (I‐USMR), which facilitates accelerating the cavitation and fluid mixing in the mixing zone. The cavitation phenomenon and mixing characteristics in the I‐USMR were investigated. Two distinct cavitation bubble patterns, bubble array and bubble cluster, were identified and mapped using dimensionless parameters. Due to the accelerated development of cavitation, very rapid mixing was achieved in both solvent‐antisolvent processes and common aqueous–aqueous mixing, under small Reynolds number ( Re < 200). The mixing rate can be improved by several fold compared to previous studies. Finally, this method was applied to synthesize mini‐emulsions and PEG‐PLGA nanoparticles, both of which were very sensitive to the mixing efficiency, demonstrating excellent mixing performance and great potential in these applications.
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