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水果采后保鲜用可食性包衣材料的选择挑战及可食性包衣技术的最新进展:综述

Challenges in selecting edible coating materials for fruit postharvest preservation and recent advances in edible coating techniques: a review.

作者信息

Gidado M J, Gunny Ahmad Anas Nagoor, Gopinath Subash C B, Devi Monisha, Jayavalli Rajappa, Ilyas R A

机构信息

Faculty of Chemical Engineering & Technology, Universiti Malaysia Perlis, Kawasan Perindustrian Jejawi, Kompleks Pusat Pengajian Jejawi 3, 02600 Arau, Perlis, 08544 Malaysia.

Centre of Excellence for Biomass Utilisation, Universiti Malaysia Perlis, Kawasan Perindustrian Jejawi, Kompleks Pusat Pengajian Jejawi 3, Arau, Perlis, 02600 Malaysia.

出版信息

J Food Sci Technol. 2025 Apr;62(4):612-622. doi: 10.1007/s13197-025-06214-1. Epub 2025 Feb 24.

Abstract

Fruits are a vital component of a healthy diet, offering essential nutrients and appealing sensory attributes. However, their high perishability leads to significant postharvest losses, which are influenced by factors such as physiological changes, microbial spoilage, and inadequate handling practices. These losses not only reduce fruit quality and marketability but also contribute to increased food waste. Edible coatings have emerged as a promising solution to extend shelf life by forming a protective barrier that reduces moisture loss and prevents microbial spoilage. Despite considerable research into edible coatings, there remains a notable gap in understanding the challenges related to material selection, safety, and scalability. This study critically reviews these challenges and highlights recent advancements in coating technologies. By examining material compatibility, safety concerns, and commercial scalability, the study aims to optimize edible coatings for more sustainable and efficient postharvest fruit preservation.

摘要

水果是健康饮食的重要组成部分,提供必需的营养成分并具有诱人的感官特性。然而,它们的高易腐性导致了大量的采后损失,这些损失受到生理变化、微生物腐败和处理方式不当等因素的影响。这些损失不仅降低了水果的品质和适销性,还导致了食物浪费的增加。可食用涂层作为一种有前途的解决方案出现了,它通过形成一个保护屏障来延长保质期,该屏障可以减少水分流失并防止微生物腐败。尽管对可食用涂层进行了大量研究,但在理解与材料选择、安全性和可扩展性相关的挑战方面仍存在显著差距。本研究批判性地审视了这些挑战,并突出了涂层技术的最新进展。通过研究材料兼容性、安全问题和商业可扩展性,该研究旨在优化可食用涂层,以实现更可持续和高效的采后果实保鲜。

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