Teagasc Food Research Centre, Dublin, Ireland.
Food Refrigeration and Computerised Food Technology (FRCFT), School of Biosystems and Food Engineering, University College Dublin, National University of Ireland, Dublin 4, Ireland.
Crit Rev Food Sci Nutr. 2024;64(24):8587-8608. doi: 10.1080/10408398.2023.2201834. Epub 2023 May 17.
Compared with traditional methods, cavitation-based processing technology has received extensive attention for its low energy consumption and high processing efficiency. The cavitation phenomenon releases high energy due to the generation and collapse of bubbles, which improves the efficiency of various food processing. This review details the cavitation mechanism of ultrasonic cavitation (UC) and hydrodynamic cavitation (HC), factors affecting cavitation, the application of cavitation technology in food processing, and the application of cavitation technology in the extraction of various natural ingredients. The safety and nutrition of food processed by cavitation technology and future research directions are also discussed. The mechanism of UC refers to longitudinal displacement of the particles of the medium induced by ultrasonic waves causing a series of alternating compression and rarefaction of particles, whereas HC occurs when liquid enters a narrow section and undergoes large pressure differentials, both of which can trigger the generation, growth, and collapse of microbubbles. Cavitation could be applied in microbial inactivation, and drying and freezing processing. In addition, cavitation bubbles can have mechanical and thermal effects on plant cells. In general, cavitation technology is a new sustainable, green, and innovative technology with broad application prospects and capabilities.
与传统方法相比,空化处理技术由于其能耗低、处理效率高而受到广泛关注。空化现象由于气泡的产生和崩溃而释放出高能量,从而提高了各种食品加工的效率。本文详细介绍了超声空化(UC)和空化(HC)的空化机制、影响空化的因素、空化技术在食品加工中的应用以及空化技术在各种天然成分提取中的应用。还讨论了空化技术处理的食品的安全性和营养价值以及未来的研究方向。UC 的机制是指由超声波引起的介质颗粒的纵向位移导致颗粒的一系列交替压缩和稀疏,而 HC 则发生在液体进入狭窄部分并经历大的压力差时,这两种情况都可以触发微泡的产生、生长和崩溃。空化可应用于微生物失活、干燥和冷冻处理。此外,空化气泡对植物细胞具有机械和热效应。总的来说,空化技术是一种具有广阔应用前景和潜力的新型可持续、绿色、创新技术。