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新型超声空化强化袋式反应器中的乳化作用

Emulsification in novel ultrasonic cavitation intensifying bag reactors.

作者信息

van Zwieten Ralph, Verhaagen Bram, Schroën Karin, Fernández Rivas David

机构信息

Food Process Engineering Group, Wageningen University, 6700AA Wageningen, The Netherlands.

BuBclean, 7622PH Borne, The Netherlands.

出版信息

Ultrason Sonochem. 2017 May;36:446-453. doi: 10.1016/j.ultsonch.2016.12.004. Epub 2016 Dec 19.

Abstract

Cavitation Intensifying Bags (CIBs), a novel reactor type for use with ultrasound, have been recently proposed as a scaled-up microreactor with increased energy efficiencies. We now report on the use of the CIBs for the preparation of emulsions out of hexadecane and an SDS aqueous solution. The CIBs have been designed in such a way that cavitation effects created by the ultrasound are increased. It was found that the CIBs were 60 times more effective in breaking up droplets than conventional bags, therewith showing a proof of principle for the CIBs for the preparation of emulsions. Droplets of 0.2μm could easily be obtained. To our knowledge, no other technology results in the same droplet size more easily in terms of energy usage. Without depending on the wettability changes of the membrane, the CIBs score similarly as membrane emulsification, which is the most energy friendly emulsification method known in literature. Out of the frequencies used, 37kHz was found to require the lowest treatment time. The treatment time decreased at higher temperatures. While the energy usage in the current non-optimised experiments was on the order of 10-10J/m, which is comparable to that of a high-pressure homogenizer, we expect that the use of CIBs for the preparation of fine emulsions can still be improved considerably. The process presented can be applied for other uses such as water treatment, synthesis of nanomaterials and food processing.

摘要

空化强化袋(CIBs)是一种新型的超声反应器,最近被提议作为一种能量效率更高的放大微反应器。我们现在报告使用CIBs由十六烷和十二烷基硫酸钠水溶液制备乳液的情况。CIBs的设计方式使得超声产生的空化效应增强。结果发现,CIBs破碎液滴的效率比传统袋子高60倍,从而证明了CIBs用于制备乳液的原理。可以轻松获得0.2μm的液滴。据我们所知,就能源使用而言,没有其他技术能更轻松地产生相同尺寸的液滴。不依赖于膜的润湿性变化,CIBs的得分与膜乳化类似,而膜乳化是文献中已知的最节能的乳化方法。在所使用的频率中,发现37kHz所需的处理时间最短。处理时间在较高温度下会减少。虽然当前未优化实验中的能源使用量约为10 - 10J/m,与高压均质机相当,但我们预计CIBs用于制备精细乳液的性能仍可大幅提高。所展示的工艺可应用于其他用途,如水处理、纳米材料合成和食品加工。

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