Guozhen Wang, Dan Cai, Shunchao Zhou, Guoyong Xu, Xianhui Chang, Xiaogang Luo, Wenping Ding
Food packaging indicator films are key active-intelligent materials for food preservation and quality monitoring. Natural polysaccharides like konjac glucomannan (KGM) have good film-forming and biodegradable properties but suffer from poor mechanical strength, limiting their food packaging applications. Herein, rice bran carboxylated cellulose nanocrystals (CCNC) were prepared via green citric acid hydrolysis and characterized for chemical structure, crystallinity and thermal stability. CCNC-KGM composite films were then fabricated, with morphology, mechanical properties, water vapor/oxygen barrier performance and surface wettability tested systematically. The film with 1% CCNC showed optimal mechanical properties and minimal water solubility. By incorporating pH-responsive anthocyanins, the composite film achieved visual pork freshness monitoring via color changes. At 4°C, the indicator film containing 0.25 grams of anthocyanin has the best preservation effect on pork. This study developed high-performance intelligent packaging films using rice bran cellulose, laying a critical foundation for advancing natural polysaccharide-based smart packaging materials.