Process Parameters as Tools to Intensify the Freeze-Drying Process and Modify the Sorption Properties of the Obtained Freeze-Dried Products

IF 2.8 4区 工程技术 Q2 ENGINEERING, CHEMICAL Processes Pub Date : 2024-09-09 DOI:10.3390/pr12091932
Ewa Jakubczyk, Dorota Nowak
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Abstract

This study aimed to investigate the effect of the application of different freeze-drying conditions on the process’s kinetics and the sorption properties of dried apples. Slices of apples were frozen and subjected to a freezing-drying process with different combinations of shelf temperature (−20, 10, 20, and 30 °C) and pressure (37, 63, 103, and 165 Pa). During the freeze-drying, the temperature in the centre of the material was recorded. The moisture content in the dried material and changes in the water content in dried apples stored at a humidity of 75.3% were obtained. The Midilli et al. model was used to describe the drying kinetics of the freeze-drying with a good fit. Drying time increased from 660 (variant with a constant shelf temperature of 30 °C, pressure 63 Pa) to 1305 min (variants with temperatures −20:10:20:30 °C, pressure 63 Pa). For this reason, the most favourable experimental parameters were a temperature of 30 °C and a pressure of 63 Pa. However, applying these parameters caused higher absorption of water vapour during storage. Therefore, the selection of freeze-drying parameters should also be related to the expected properties of the final product.
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工艺参数是强化冷冻干燥工艺和改变冷冻干燥产品吸附特性的工具
本研究旨在探讨不同冷冻干燥条件的应用对该过程的动力学和苹果干的吸附特性的影响。对苹果切片进行冷冻,并在不同的保存温度(-20、10、20 和 30 °C)和压力(37、63、103 和 165 Pa)组合下进行冷冻干燥。在冷冻干燥过程中,记录材料中心的温度。得出了干燥材料中的含水量以及在湿度为 75.3% 的条件下储存的干苹果中含水量的变化。Midilli 等人的模型被用来描述冷冻干燥的干燥动力学,拟合效果良好。干燥时间从 660 分钟(货架温度恒定为 30 °C,压力为 63 Pa 的变量)增加到 1305 分钟(温度为 -20:10:20:30 °C,压力为 63 Pa 的变量)。因此,最有利的实验参数是温度 30 °C 和压力 63 Pa。因此,冷冻干燥参数的选择也应与最终产品的预期特性有关。
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来源期刊
Processes
Processes Chemical Engineering-Bioengineering
CiteScore
5.10
自引率
11.40%
发文量
2239
审稿时长
14.11 days
期刊介绍: Processes (ISSN 2227-9717) provides an advanced forum for process related research in chemistry, biology and allied engineering fields. The journal publishes regular research papers, communications, letters, short notes and reviews. Our aim is to encourage researchers to publish their experimental, theoretical and computational results in as much detail as necessary. There is no restriction on paper length or number of figures and tables.
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