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一种高功率超声微反应器及其在气液传质强化中的应用。

A high-power ultrasonic microreactor and its application in gas-liquid mass transfer intensification.

作者信息

Dong Zhengya, Yao Chaoqun, Zhang Xiaoli, Xu Jie, Chen Guangwen, Zhao Yuchao, Yuan Quan

机构信息

Dalian National Laboratory for Clean Energy, Dalian Institute of Chemical Physics, Chinese Academy of Sciences, Dalian 116023, China.

出版信息

Lab Chip. 2015 Feb 21;15(4):1145-52. doi: 10.1039/c4lc01431f.

Abstract

The combination of ultrasound and microreactor is an emerging and promising area, but the report of designing high-power ultrasonic microreactor (USMR) is still limited. This work presents a robust, high-power and highly efficient USMR by directly coupling a microreactor plate with a Langevin-type transducer. The USMR is designed as a longitudinal half wavelength resonator, for which the antinode plane of the highest sound intensity is located at the microreactor. According to one dimension design theory, numerical simulation and impedance analysis, a USMR with a maximum power of 100 W and a resonance frequency of 20 kHz was built. The strong and uniform sound field in the USMR was then applied to intensify gas-liquid mass transfer of slug flow in a microfluidic channel. Non-inertial cavitation with multiple surface wave oscillation was excited on the slug bubbles, enhancing the overall mass transfer coefficient by 3.3-5.7 times.

摘要

超声与微反应器的结合是一个新兴且前景广阔的领域,但关于设计高功率超声微反应器(USMR)的报道仍然有限。这项工作通过将微反应器板与兰姆波型换能器直接耦合,提出了一种坚固、高功率且高效的USMR。该USMR被设计为纵向半波长谐振器,其最高声强的波腹平面位于微反应器处。根据一维设计理论、数值模拟和阻抗分析,构建了一个最大功率为100 W、共振频率为20 kHz的USMR。然后将USMR中强烈且均匀的声场应用于强化微流道中弹状流的气液传质。在弹状气泡上激发了具有多表面波振荡的非惯性空化,使整体传质系数提高了3.3至5.7倍。

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