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首页> 外文期刊>Chemical engineering journal >Acoustic cavitation and ultrasound-assisted nitration process in ultrasonic microreactors: The effects of channel dimension, solvent properties and temperature
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Acoustic cavitation and ultrasound-assisted nitration process in ultrasonic microreactors: The effects of channel dimension, solvent properties and temperature

机译:超声波微反应器中的声学空化和超声辅助硝化过程:通道尺寸,溶剂性能和温度的影响

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摘要

Experimental studies on acoustic cavitation and ultrasound-assisted nitration reaction were systematically investigated in two laboratory-built ultrasonic microreactors by tuning the microchannel dimension, solvent properties and temperature. Under ultrasound irradiation, acoustic cavitation microbubbles were generated and underwent violent oscillation in microchannel. With the decrease of channel size, acoustic cavitation was largely confined, and channel size 1 x 1 mm(2) was recognized as the critical size to eliminate the confinement effect. Acoustic cavitation was also highly dependent on the properties of sonicated liquids. The onset of surface wave oscillation on gas bubble was obviously promoted with decreasing solvent viscosity and surface tension. Additionally, ultrasound-assisted nitration process of toluene was studied in a temperature-controlled ultrasonic microreactor. The effects of channel size as well as liquid properties on ultrasound intensification agreed well with the finding in cavitation research. Under ultrasound power 50 W, toluene conversion was enhanced by 9.9%-36.3% utilizing 50 vol.% ethylene glycol aqueous solution as ultrasound propagation medium, exhibiting ultrasound applicability on intensifying fast reaction processes in microreactors.
机译:通过调整微通道尺寸,溶剂性能和温度,系统地研究了关于声学空化和超声辅助硝化反应的实验研究。在超声辐射下,在微通道中产生声学空化微泡并在微通道中进行剧烈振荡。随着通道尺寸的降低,声学空化在很大程度上被限制,并且通道尺寸为1×1mm(2)被认为是消除限制效果的临界尺寸。声学气相也高度依赖于超声液体的性质。通过降低溶剂粘度和表面张力,显然促进了气泡对气泡的表面波振荡发作。另外,在温度控制的超声波微反应器中研究了甲苯的超声辅助硝化过程。通道尺寸的影响以及液体性质对超声波强化的影响很好,在空化研究中很好地商定。在超声波功率50W下,利用50体积%的乙二醇水溶液为超声波繁殖介质,增强甲苯转化率为9.9%-36.3%,在将超声适用性加强微反应器中的快速反应过程。

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