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超声在食品科学与技术中的应用:一种视角。

Application of Ultrasound in Food Science and Technology: A Perspective.

作者信息

Gallo Monica, Ferrara Lydia, Naviglio Daniele

机构信息

Department of Molecular Medicine and Medical Biotechnology, University of Naples Federico II, Via Pansini, 5, 80131 Naples, Italy.

Department of Pharmacy, University of Naples Federico II, Via Domenico Montesano 49, 80131 Naples, Italy.

出版信息

Foods. 2018 Oct 4;7(10):164. doi: 10.3390/foods7100164.

Abstract

Ultrasound is composed of mechanical sound waves that originate from molecular movements that oscillate in a propagation medium. The waves have a very high frequency, equal to approximately 20 kHz, are divided into two categories (i.e., low-intensity and high-intensity waves) and cannot be perceived by the human ear. Nature has created the first ultrasound applications. Bats use ultrasound to navigate in the dark, and many cetaceans use echolocation to detect prey or obstacles using ultrasound produced by their vocal system. Ultrasound is commonly associated with the biomedical field. Today, ultrasound-based methods and equipment are available to detect organs, motion, tumour masses, and pre/post-natal handicaps, and for kidney stone removal, physiotherapy, and aesthetic cures. However, ultrasound has found multiple applications in many other fields as well. In particular, ultrasound has recently been used in the food industry to develop various effective and reliable food processing applications. Therefore, this review summarizes the major applications of ultrasound in the food industry. The most common applications in the food industry include cell destruction and extraction of intracellular material. Depending on its intensity, ultrasound is used for the activation or deactivation of enzymes, mixing and homogenization, emulsification, dispersion, preservation, stabilization, dissolution and crystallization, hydrogenation, tenderization of meat, ripening, ageing and oxidation, and as an adjuvant for solid-liquid extraction for maceration to accelerate and to improve the extraction of active ingredients from different matrices, as well as the degassing and atomization of food preparations.

摘要

超声波由机械声波组成,这些声波源自传播介质中振荡的分子运动。这些波具有非常高的频率,约等于20千赫兹,分为两类(即低强度波和高强度波),人类耳朵无法感知。自然界创造了最初的超声应用。蝙蝠利用超声波在黑暗中导航,许多鲸类动物利用回声定位,通过其发声系统产生的超声波来探测猎物或障碍物。超声波通常与生物医学领域相关联。如今,基于超声的方法和设备可用于检测器官、运动、肿瘤块以及产前/产后缺陷,还可用于去除肾结石、物理治疗和美容治疗。然而,超声波在许多其他领域也有多种应用。特别是,超声波最近已被用于食品工业,以开发各种有效且可靠的食品加工应用。因此,本综述总结了超声波在食品工业中的主要应用。食品工业中最常见的应用包括细胞破坏和细胞内物质的提取。根据其强度,超声波可用于酶的激活或失活、混合与均质化、乳化、分散、保存、稳定化、溶解与结晶、氢化、肉类嫩化、成熟、陈化和氧化,还可作为固液萃取浸软的辅助手段,以加速和改善从不同基质中提取活性成分,以及食品制剂的脱气和雾化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/61bf/6210518/a54494c36938/foods-07-00164-g002.jpg

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