College of Food Science, Northeast Agricultural University, Harbin, Heilongjiang, China.
College of Forestry, Northeast Forestry University, Harbin, Heilongjiang, China.
Crit Rev Food Sci Nutr. 2024;64(16):5220-5241. doi: 10.1080/10408398.2022.2153239. Epub 2022 Dec 5.
Traditional processing methods can no longer meet the demands of consumers for high-quality muscle food. As a green and non-thermal processing technology, ultrasound has the advantage of improving processing efficiency and reducing processing costs. Of these, the positive effect of power ultrasound in the processing of muscle foods is noticeable. Based on the action mechanism of ultrasound, the factors affecting the action of ultrasound are analyzed. On this basis, the effect of ultrasound technology on muscle food quality and its action mechanism and application status in processing operations (freezing-thawing, tenderization, marination, sterilization, drying, and extraction) is discussed. The transient and steady-state effects, mechanical effects, thermal effects, and chemical effects can have an impact on processing operations through complex correlations, such as improving the efficiency of mass and heat transfer. Ultrasound technology has been proven to be valuable in muscle food processing, but inappropriate ultrasound treatment can also have adverse effects on muscle foods. In the future, kinetic models are expected to be an effective tool for investigating the application effects of ultrasound in food processing. Additionally, the combination with other processing technologies can facilitate their intensive application on an industrial level to overcome the disadvantages of using ultrasound technology alone.
传统的加工方法已经不能满足消费者对高质量肌肉食品的需求。超声作为一种绿色、非热加工技术,具有提高加工效率、降低加工成本的优点。其中,功率超声在肌肉食品加工中的积极作用尤为明显。本文基于超声的作用机制,分析了影响超声作用的因素。在此基础上,探讨了超声技术对肌肉食品品质的影响及其在加工操作(冷冻-解冻、嫩化、腌制、杀菌、干燥、提取)中的作用机制和应用现状。瞬态和稳态效应、机械效应、热效应和化学效应对加工操作的影响可以通过复杂的相关性来实现,例如提高质量和热传递的效率。超声技术已被证明在肌肉食品加工中具有价值,但不当的超声处理也会对肌肉食品产生不利影响。未来,动力学模型有望成为研究超声在食品加工中应用效果的有效工具。此外,与其他加工技术相结合,可以促进其在工业水平上的集约化应用,以克服单独使用超声技术的缺点。