Zhan Zhijing, Feng Yiming, Zhao Jikai, Qiao Mingyu, Jin Qing
School of Food and Agriculture, University of Maine, Orono, ME 04469, USA.
Virginia Seafood AREC, Virginia Polytechnic Institute and State University, Hampton, VA 23662, USA.
Foods. 2024 Jul 3;13(13):2122. doi: 10.3390/foods13132122.
Packaging plays a crucial role in protecting food by providing excellent mechanical properties as well as effectively blocking water vapor, oxygen, oil, and other contaminants. The low degradation of widely used petroleum-based plastics leads to environmental pollution and poses health risks. This has drawn interest in renewable biopolymers as sustainable alternatives. The seafood industry generates significant waste that is rich in bioactive substances like chitin, chitosan, gelatins, and alginate, which can replace synthetic polymers in food packaging. Although biopolymers offer biodegradability, biocompatibility, and non-toxicity, their films often lack mechanical and barrier properties compared with synthetic polymer films. This comprehensive review discusses the chemical structure, characteristics, and extraction methods of biopolymers derived from seafood waste and their usage in the packaging area as reinforcement or base materials to guide researchers toward successful plastics replacement and commercialization. Our review highlights recent advancements in improving the thermal durability, mechanical strength, and barrier properties of seafood waste-derived packaging, explores the mechanisms behind these improvements, and briefly mentions the antimicrobial activities and mechanisms gained from these biopolymers. In addition, the remaining challenges and future directions for using seafood waste-derived biopolymers for packaging are discussed. This review aims to guide ongoing efforts to develop seafood waste-derived biopolymer films that can ultimately replace traditional plastic packaging.
包装在保护食品方面起着至关重要的作用,它具有出色的机械性能,能有效阻隔水蒸气、氧气、油脂和其他污染物。广泛使用的石油基塑料降解率低,会导致环境污染并带来健康风险。这引发了人们对可再生生物聚合物作为可持续替代品的兴趣。海产品行业产生大量富含几丁质、壳聚糖、明胶和藻酸盐等生物活性物质的废弃物,这些物质可用于食品包装中替代合成聚合物。尽管生物聚合物具有生物可降解性、生物相容性和无毒等特性,但与合成聚合物薄膜相比,它们的薄膜通常缺乏机械性能和阻隔性能。这篇综述讨论了源自海产品废弃物的生物聚合物的化学结构、特性和提取方法,以及它们在包装领域作为增强材料或基础材料的应用,以引导研究人员成功实现塑料替代和商业化。我们的综述重点介绍了在提高源自海产品废弃物的包装材料的热耐久性、机械强度和阻隔性能方面的最新进展,探讨了这些改进背后的机制,并简要提及了这些生物聚合物的抗菌活性和机制。此外,还讨论了使用源自海产品废弃物的生物聚合物进行包装面临的剩余挑战和未来方向。这篇综述旨在指导当前开发最终能替代传统塑料包装的源自海产品废弃物的生物聚合物薄膜的工作。