Akhrib Sofiane, Djellali Souad, Haddaoui Nacereddine, Karimian Davud, Carraro Mauro
Laboratory of Physical-Chemistry of High Polymers, Faculty of Technology, University Ferhat Abbas-Setif 1, Setif 19000, Algeria.
Department of Chemistry, Faculty of Sciences, University Ferhat Abbas-Setif 1, Setif 19000, Algeria.
Polymers (Basel). 2024 Dec 24;17(1):3. doi: 10.3390/polym17010003.
The alarming rise in environmental pollution, depletion of global resources, and increasing health consciousness have placed significant pressure on the development of eco-friendly, sustainable materials. Consequently, green, environmentally friendly materials made from biobased and/or biodegradable sources are gaining recognition and political support as sustainable alternatives to petroleum-based, non-biodegradable materials. Bio-based packaging materials, in particular, are widely used across all industrial sectors, with a growing demand for solutions that preserve food quality and extend shelf life. Within this context, the concept of "active packaging" (AP) is attracting considerable interest. While the traditional view of packaging materials is that they should be basically inert, active packaging involves intentional interactions with the packaged product or surrounding atmosphere, providing enhanced protection against degradation caused by human actions and environmental factors. This work aims to highlight the significant impact of biocomposites in the active packaging sector, driven by the synergistic integration of nanofillers and active agents, while providing an in-depth analysis of the key mechanisms and strategies underlying their functionality. Particular emphasis is placed on poly(lactic acid)(PLA), presenting a comprehensive review of innovative approaches to enhance the performance of PLA-based packaging, with a focus on improving antioxidant and antimicrobial properties to meet the demands of sustainable and efficient packaging solutions.
环境污染的惊人加剧、全球资源的枯竭以及健康意识的不断提高,给环保、可持续材料的发展带来了巨大压力。因此,由生物基和/或可生物降解来源制成的绿色环保材料作为石油基、不可生物降解材料的可持续替代品,正获得认可和政策支持。特别是生物基包装材料,在所有工业领域都有广泛应用,对能够保持食品质量和延长保质期的解决方案的需求也在不断增长。在此背景下,“活性包装”(AP)的概念引起了相当大的关注。虽然传统观念认为包装材料应基本呈惰性,但活性包装涉及与包装产品或周围大气的有意相互作用,可提供增强的保护,防止因人为行为和环境因素导致的降解。这项工作旨在突出生物复合材料在活性包装领域的重大影响,这种影响是由纳米填料和活性剂的协同整合驱动的,同时深入分析其功能背后的关键机制和策略。特别强调了聚乳酸(PLA),对提高基于PLA的包装性能的创新方法进行了全面综述,重点是改善抗氧化和抗菌性能,以满足可持续和高效包装解决方案的需求。