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超声强化传质:在吸附剂再生及食品干燥/脱水方面的应用

Enhancement of mass transfer by ultrasound: Application to adsorbent regeneration and food drying/dehydration.

作者信息

Yao Ye

机构信息

Institute of Refrigeration and Cryogenics, Shanghai Jiao Tong University, Shanghai 200240, China.

出版信息

Ultrason Sonochem. 2016 Jul;31:512-31. doi: 10.1016/j.ultsonch.2016.01.039. Epub 2016 Feb 2.

Abstract

The physical mechanisms of heat and mass transfer enhancement by ultrasound have been identified by people. Basically, the effect of 'cavitation' induced by ultrasound is the main reason for the enhancement of heat and mass transfer in a liquid environment, and the acoustic streaming and vibration are the main reasons for that in a gaseous environment. The adsorbent regeneration and food drying/dehydration are typical heat and mass transfer process, and the intensification of the two processes by ultrasound is of complete feasibility. This paper makes an overview on recent studies regarding applications of power ultrasound to adsorbent regeneration and food drying/dehydration. The concerned adsorbents include desiccant materials (typically like silica gel) for air dehumidification and other ones (typically active carbon and polymeric resin) for water treatment. The applications of ultrasound in the regeneration of these adsorbents have been proved to be energy saving. The concerned foods are mostly fruits and vegetables. Although the ultrasonic treatment may cause food degradation or nutrient loss, it can greatly reduce the food processing time and decrease drying temperature. From the literature, it can be seen that the ultrasonic conditions (i.e., acoustic frequency and power levels) are always focused on during the study of ultrasonic applications. The increasing number of relevant studies argues that ultrasound is a very promising technology applied to the adsorbent regeneration and food drying/dehydration.

摘要

人们已经确定了超声强化传热传质的物理机制。基本上,超声诱导的“空化”效应是液体环境中传热传质强化的主要原因,而声流和振动是气体环境中传热传质强化的主要原因。吸附剂再生和食品干燥/脱水是典型的传热传质过程,超声强化这两个过程具有完全的可行性。本文综述了功率超声在吸附剂再生和食品干燥/脱水方面应用的最新研究。涉及的吸附剂包括用于空气除湿的干燥剂材料(通常如硅胶)以及用于水处理的其他吸附剂(通常为活性炭和聚合物树脂)。超声在这些吸附剂再生中的应用已被证明具有节能效果。涉及的食品主要是水果和蔬菜。尽管超声处理可能会导致食品降解或营养成分损失,但它可以大大缩短食品加工时间并降低干燥温度。从文献中可以看出,在超声应用研究中,超声条件(即声频和功率水平)一直是关注的焦点。越来越多的相关研究表明,超声是一种应用于吸附剂再生和食品干燥/脱水的非常有前景的技术。

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