Department of Chemical and Biomolecular Engineering, University of Melbourne, Victoria 3010, Australia; email:
Annu Rev Food Sci Technol. 2014;5:263-84. doi: 10.1146/annurev-food-030212-182537. Epub 2014 Jan 9.
Acoustic energy as a form of physical energy has drawn the interests of both industry and scientific communities for its potential use as a food processing and preservation tool. Currently, most such applications deal with ultrasonic waves with relatively high intensities and acoustic power densities and are performed mostly in liquids. In this review, we briefly discuss the fundamentals of power ultrasound. We then summarize the physical and chemical effects of power ultrasound treatments based on the actions of acoustic cavitation and by looking into several ultrasound-assisted unit operations. Finally, we examine the biological effects of ultrasonication by focusing on its interactions with the miniature biological systems present in foods, i.e., microorganisms and food enzymes, as well as with selected macrobiological components.
声能作为一种物理能量,因其在食品加工和保藏方面的潜在应用而引起了工业界和科学界的兴趣。目前,大多数此类应用涉及具有相对较高强度和声功率密度的超声波,并且主要在液体中进行。在本综述中,我们简要讨论了功率超声的基本原理。然后,我们根据空化作用的作用,并通过研究几种超声辅助单元操作,总结了功率超声处理的物理和化学效应。最后,我们通过关注超声处理与食品中存在的微型生物系统(即微生物和食品酶)以及选定的宏观生物成分的相互作用,研究了超声处理的生物学效应。