Venkatesan Raja, Alrashed Maher M, Vetcher Alexandre A, Kim Seong-Cheol
School of Chemical Engineering, Yeungnam University, 280 Daehak-Ro, Gyeongsan 38541, Republic of Korea.
Department of Biomaterials, Saveetha Dental College and Hospitals, SIMATS, Saveetha University, Chennai 600077, India.
Polymers (Basel). 2025 Aug 25;17(17):2299. doi: 10.3390/polym17172299.
Biopolymer-based packaging is emerging as a sustainable replacement for conventional plastic materials. Significant challenges like scalability, machinability, and mechanical properties are preventing biopolymers from industrially advancing despite their sustainable advantages. Also, the usage of materials in packaging is limited due to their toxicity, the degradation products, and their migration properties. Nanocomposite materials and active packaging methods with the antimicrobial agents showed novel advances with enhanced performance. However, these advances frequently increase the complexity and cost of production. For an assessment of their safe and efficient usage, knowledge gaps on the effects of biopolymer migration and degradation on the environment and human health should be addressed. These challenges, which involve enhanced material characteristics, reducing costs, and aligning regulations, demand interdisciplinary methods. This review explores the prospects for sustainable innovation in packaging by examining the challenges and potential solutions associated with the development of biopolymer-based materials.
基于生物聚合物的包装正在成为传统塑料材料的可持续替代品。尽管生物聚合物具有可持续优势,但诸如可扩展性、可加工性和机械性能等重大挑战阻碍了它们在工业上的发展。此外,由于其毒性、降解产物及其迁移特性,包装材料的使用受到限制。含有抗菌剂的纳米复合材料和活性包装方法显示出性能增强的新进展。然而,这些进展常常增加了生产的复杂性和成本。为了评估它们的安全有效使用,应解决关于生物聚合物迁移和降解对环境和人类健康影响的知识空白。这些挑战,包括增强材料特性、降低成本和协调法规,需要跨学科方法。本综述通过研究与基于生物聚合物的材料开发相关的挑战和潜在解决方案,探讨了包装领域可持续创新的前景。