渣
生物降解
食品包装
肿胀 的
聚乳酸
材料科学
复合材料
降级(电信)
纳米颗粒
粪肠球菌
抗菌剂
茶碱菌
填料(材料)
膨胀能力
食品科学
可生物降解聚合物
屎肠球菌
复合数
抗菌活性
作者
Andrei Moldovan,Stanca Cuc,Ioan Petean,Saroși Ioan,Lucian Barbu Tudoran,Rahela Carpa,I. Perhaiţa,Ovidiu Nemeș,Doriana Popa
标识
DOI:10.1038/s41529-025-00724-1
摘要
To support a sustainable economy, the development of advanced and environmentally friendly food packaging systems is essential. This study presents innovative biodegradable composites based on polylactic acid (PLA), incorporating grape pomace and copper (Cu) nanoparticles as functional fillers to improve packaging performance. The composites exhibited rapid swelling when exposed to liquids. Grape pomace promoted a stable swelling behavior, maintaining a rate of ~1.2% over 100 days, leading to degradation through filler dissolution and increased porosity. In contrast, Cu nanoparticles initially enhanced structural integrity but later underwent surface delamination, accelerating swelling and degradation. Composites with lower Cu content showed a consistent swelling rate of around 4% for 20–60 days, followed by gradual disintegration. Higher Cu concentrations induced swelling via delamination, while erosion debris limited fluid penetration, resulting in slow and sustained biodegradation over 100 days. Antibacterial tests indicated that grape pomace composites lacked antimicrobial activity, whereas Cu-containing composites demonstrated significant antibacterial effects against Enterococcus faecalis and Klebsiella species, as well as strong antifungal activity against Candida albicans. These findings highlight the potential of PLA composites with grape pomace and Cu nanoparticles for biodegradable food packaging, offering tunable degradation behavior and enhanced antimicrobial properties.
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