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开创高阻隔包装,用于加压辅助热灭菌的低酸性食品。

Pioneering high barrier packaging for pressure assisted thermal sterilization of low-acid food products.

机构信息

Department of Biological Systems Engineering, Washington State University, P.O. Box-646120, WA 99164-6120, USA; Department of Apparel, Merchandising, Design and Textiles, Washington State University, P.O. Box-646120, WA 99164-6120, USA.

Kuraray America, Inc., Pasadena, TX 77507, USA.

出版信息

Food Res Int. 2024 Nov;196:115126. doi: 10.1016/j.foodres.2024.115126. Epub 2024 Sep 22.

Abstract

Pressure-assisted thermal sterilization (PATS) utilizes flexible packaging with low oxygen and water vapor transmission rates (OTRs, WVTRs). In this study, pouches made from metal oxide (MO)-coated (A-D) and ethylene vinyl alcohol (EVOH)-containing (E, F) multilayer films were filled with water and mashed potatoes (MP), preheated at 98 ± 0.5 °C for 10 min, and processed using a pilot-scale high-pressure processing machine (HPP) at 600 ± 5 MPa for 300 s. The initial vessel temperature and the fluid medium were 90 °C, and during processing, the temperature of the fluid medium increased to approximately 120 °C. After processing, the water-filled pouches were emptied, refilled with a novel oxygen indicator, and stored at 40 ± 0.2 °C for 80 days. The MP-filled pouches were stored at 49 ± 1 °C for 60 days. MO-coated film D contained fewer defects, had ultra-low OTRs and WVTRs, showed insignificant (p > 0.05) moisture absorption and changes in crystallinity after PATS processing, and exhibited minimal color change in both the oxygen indicator and the packaged MP during the 60 days of storage. The ultra-high barrier of film D could be attributed to the presence of multiple AlO-coated PET layers that successfully prevented oxygen ingress, even after exposure to high temperature and pressure conditions during PATS processing. Among the EVOH-based structures, the Film F showed a 22.3 % lower OTR than Film E (p < 0.05), due to a 16.7 % greater EVOH-layer thickness, despite having a lower overall thickness than Film E. Overall, this study can assist packaging manufacturers in designing and developing high-barrier flexible packaging suitable for in-package, shelf-stable food products.

摘要

压力辅助热灭菌(PATS)利用具有低氧气和水蒸气传输率(OTRs、WVTRs)的柔性包装。在这项研究中,使用金属氧化物(MO)涂层(A-D)和含乙烯-乙烯醇(EVOH)的多层薄膜(E、F)制成的小袋中装满水和土豆泥(MP),在 98 ± 0.5°C 下预热 10 分钟,然后在中试高压处理机(HPP)下以 600 ± 5 MPa 的压力处理 300 秒。初始容器温度和流体介质为 90°C,在处理过程中,流体介质温度升高到约 120°C。处理后,排空装满水的小袋,重新装满新型氧气指示剂,并在 40 ± 0.2°C 下储存 80 天。装满 MP 的小袋在 49 ± 1°C 下储存 60 天。MO 涂层薄膜 D 缺陷较少,具有超低的 OTR 和 WVTR,在 PATS 处理后显示出无明显(p > 0.05)的水分吸收和结晶度变化,并且在储存的 60 天内,氧气指示剂和包装 MP 的颜色变化最小。薄膜 D 的超高阻隔性可归因于存在多层涂覆有 AlO 的 PET 层,即使在 PATS 处理过程中暴露于高温和高压条件下,也能成功阻止氧气渗透。在基于 EVOH 的结构中,薄膜 F 的 OTR 比薄膜 E 低 22.3%(p < 0.05),这是由于 EVOH 层厚度增加了 16.7%,尽管薄膜 F 的总厚度比薄膜 E 低。总的来说,这项研究可以帮助包装制造商设计和开发适用于包装内、货架稳定食品的高阻隔性柔性包装。

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