Effect of blanching and ultrasound pretreatment on moisture migration, uniformity, and quality attributes of dried cantaloupe.

Tiejian Yuan, Xiaoyan Zhao, Chao Zhang, Peng Xu, Xiaoqiong Li, Zhentao Zhang, Junling Yang, Yaoyang Liu, Yan He
Author Information
  1. Tiejian Yuan: College of Electromechanical Engineering Qingdao University of Science and Technology Qingdao China.
  2. Xiaoyan Zhao: Key Laboratory of Vegetable Postharvest Processing Ministry of Agriculture and rural affairs Beijing China.
  3. Chao Zhang: Key Laboratory of Vegetable Postharvest Processing Ministry of Agriculture and rural affairs Beijing China.
  4. Peng Xu: Technical Institute of Physics and Chemistry Chinese Academy of Sciences Beijing China.
  5. Xiaoqiong Li: Technical Institute of Physics and Chemistry Chinese Academy of Sciences Beijing China.
  6. Zhentao Zhang: Technical Institute of Physics and Chemistry Chinese Academy of Sciences Beijing China. ORCID
  7. Junling Yang: Technical Institute of Physics and Chemistry Chinese Academy of Sciences Beijing China.
  8. Yaoyang Liu: Jiangxi CAS Pharmaceutical Engineering Technology Co., Ltd. Nanchang China.
  9. Yan He: College of Electromechanical Engineering Qingdao University of Science and Technology Qingdao China. ORCID

Abstract

To overcome problems of browning and crusting during the pretreatment process and provide theoretical guidance for cantaloupe convection drying at 80��C, the effects of blanching (BL) and ultrasonic (US) treatments were examined. The effects of various BL (5, 10, and 15���s) and US (10, 20, 30, and 40���min) durations on convection drying were tested. The moisture ratio, drying rate, moisture effective diffusivity, color, browning, nuclear magnetic resonance characteristics, and texture were assessed. Compared with the control group, the maximal decreases in the drying time of BL and US pretreatment groups were 40% and 33.3%, respectively. BL and US pretreatments significantly increased the effective diffusion coefficient and shortened the drying time because of the destruction of the cell structure. Low-field nuclear magnetic resonance analysis showed that free water is mainly lost during the initial drying stage, while solidified water is mainly lost during middle and late stages. According to the results of magnetic resonance imaging, the moisture distribution shows that cavitation from US acts on internal tissue, while BL disrupts the structure of external tissue. Texture data define the area enclosed by S as uniform. After BL and US pretreatment, the hardness of dried cantaloupe decreased and the uniformity increased significantly. The best pretreatment process for cantaloupe at 80��C was 10���min of US. These findings provide a reference for testing in the industrial production of dried cantaloupe and are deeply relevant for practice.

Keywords

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Word Cloud

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