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Pulsed vacuum drying of fruits, vegetables, and herbs: Principles, applications and future trends.

Authors :
Zhang, Wei‐Peng
Chen, Chang
Ju, Hao‐Yu
Okaiyeto, Samuel Ariyo
Sutar, Parag Prakash
Yang, Li‐Yi
Li, Suo‐Bin
Xiao, Hong‐Wei
Source :
Comprehensive Reviews in Food Science & Food Safety; Sep2024, Vol. 23 Issue 5, p1-41, 41p
Publication Year :
2024

Abstract

Pulsed vacuum drying (PVD) is a novel vacuum drying method that has demonstrated significant potential in improving energy efficiency and product quality in the drying of foods and agricultural products. The current work provides a comprehensive analysis of the latest advancements in PVD technology, including its historical development, fundamental principles, and mechanistic aspects. The impact of periodic pulsed pressure changes between vacuum and atmospheric pressure on heat and moisture transfer, as well as structural changes in foods at micro‐ and macro‐scales, is thoroughly discussed. The article also highlights the influential drying parameters, the integration of novel auxiliary heaters, and the applications of PVD across various fruits, vegetables, and herbs. Furthermore, the review examines the current status and needs for mathematical modeling of PVD processes, identifying key challenges, research opportunities, and future trends for industrial application. The findings suggest that PVD not only enhances drying efficiency and reduces energy consumption but also preserves the nutritional value, color, and texture of dried products better than traditional methods. Future research should focus on optimizing process parameters and integrating advanced control systems to further improve the scalability and applicability of PVD technology in the food industry. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
15414337
Volume :
23
Issue :
5
Database :
Complementary Index
Journal :
Comprehensive Reviews in Food Science & Food Safety
Publication Type :
Academic Journal
Accession number :
179945216
Full Text :
https://doi.org/10.1111/1541-4337.13430