Dăescu Diana Ionela, Dreavă Diana Maria, Todea Anamaria, Peter Francisc, Păușescu Iulia
Faculty of Industrial Chemistry and Environmental Engineering, University Politehnica Timișoara, 300001, Vasile Pârvan 6, 300001 Timișoara, Romania.
Polymers (Basel). 2024 Aug 8;16(16):2256. doi: 10.3390/polym16162256.
The development of biopolymer-based films represents a promising direction in the packaging industry that responds to stringent needs for sustainability, reducing the ecological impact. Traditional fossil-derived polymers present major concerns because of their long decomposition time and their significant contribution to the pollution of the environment. On the contrary, biopolymers such as chitosan, PVA, and PLA offer viable alternatives. This study aimed to obtain an innovative pH indicator for smart packaging using a synthetic non-toxic anthocyanin analogue dye incorporated in bio-based films to indicate meat freshness and quality. The pH-responsive color-changing properties of the dye make it suitable for developing intelligent films to monitor food freshness. The obtained polymeric films were characterized by FT-IR and UV-VIS spectroscopy, and their thermal properties were assessed using thermogravimetric methods. Moisture content, swelling capacity, and water solubility of the polymeric films were also evaluated. The sensitivity of the biopolymer-flavylium composite films to pH variations was studied in the pH range of 2 to 12 and noticeable color variations were observed, allowing the monitoring of the meat's quality damage through pH changes. The pH-responsive films were applied directly on the surface or in the proximity of pork and chicken meat samples, to evaluate their colorimetric response to fresh and spoilt meat. This study can be the starting point for creating more durable packaging solutions leading to a circular economy.
基于生物聚合物的薄膜的发展代表了包装行业中一个有前景的方向,它回应了对可持续性的严格需求,减少了生态影响。传统的化石衍生聚合物存在重大问题,因为它们分解时间长,且对环境污染有重大贡献。相反,壳聚糖、聚乙烯醇和聚乳酸等生物聚合物提供了可行的替代方案。本研究旨在通过将合成无毒花青素类似物染料掺入生物基薄膜中,获得一种用于智能包装的创新型pH指示剂,以指示肉类的新鲜度和品质。该染料的pH响应变色特性使其适用于开发智能薄膜来监测食品新鲜度。通过傅里叶变换红外光谱(FT-IR)和紫外可见光谱(UV-VIS)对所得聚合物薄膜进行了表征,并使用热重分析法评估了它们的热性能。还评估了聚合物薄膜的水分含量、溶胀能力和水溶性。在2至12的pH范围内研究了生物聚合物-黄酮鎓复合薄膜对pH变化的敏感性,观察到明显的颜色变化,从而能够通过pH变化监测肉类的品质损害。将pH响应薄膜直接应用于猪肉和鸡肉样品的表面或附近,以评估它们对新鲜和变质肉类的比色响应。本研究可以成为创造更耐用包装解决方案以实现循环经济的起点。