Thanakkasaranee Sarinthip, Sadeghi Kambiz, Seo Jongchul
School of Agro‑Industry, Faculty of Agro‑Industry, Chiang Mai University, Mae Hia, Muang, Chiang Mai, Thailand.
Department of Packaging, Yonsei University, Wonju-si, Gangwon-do, South Korea.
Crit Rev Food Sci Nutr. 2023;63(23):6464-6483. doi: 10.1080/10408398.2022.2033685. Epub 2022 Jan 31.
Packaging materials for microwave application should be generally designed based on products properties and processing conditions such as microwavability, susceptibility, processing condition, barrier properties, mechanical properties, storage condition, sustainability, convenience, and so on. Ready-to-eat products are packed in materials that can sustain thermal processing in an industrial oven and warming process in a household oven. In this context, high barrier polymers are versatile microwave packaging materials due to the microwave transparency (unlike metalized film) and high barrier. Additionally, microwave packaging materials used for ready-to-cook are intended to facilitate the microwave heating of the products in a domestic oven. The introduction of a functional feather to microwave packaging tends to improve the microwaving efficiency such as susceptor and shielding in the household oven or self-venting microwave packaging to safely release the internal steam. Furthermore, microwave-assisted thermal processing intends to control microbial contamination, requiring materials with adequate stability during processing and storage. The features of these materials are addressed in this review along with details on the basic requirements and advanced technologies for microwave packaging, microwave processing of prepackaged food, and migration testing. The prospects of microwave packaging materials in the near future are also discussed.
用于微波应用的包装材料通常应根据产品特性和加工条件进行设计,如微波适用性、敏感性、加工条件、阻隔性能、机械性能、储存条件、可持续性、便利性等。即食产品采用的包装材料应能承受工业烤箱中的热处理以及家用烤箱中的加热过程。在这种情况下,高阻隔聚合物是通用的微波包装材料,因为它具有微波透明性(与金属化薄膜不同)和高阻隔性。此外,用于即烹食品的微波包装材料旨在便于在家庭烤箱中对产品进行微波加热。在微波包装中引入功能性特性往往会提高微波加热效率,如家用烤箱中的感受器和屏蔽层,或自排气微波包装以安全释放内部蒸汽。此外,微波辅助热处理旨在控制微生物污染,这要求材料在加工和储存过程中具有足够的稳定性。本综述阐述了这些材料的特性,以及微波包装的基本要求和先进技术、预包装食品的微波加工和迁移测试的详细信息。还讨论了微波包装材料在不久的将来的前景。