Structure, Properties, and Recent Developments in Polysaccharide- and Aliphatic Polyester-Based Packaging—A Review
Структура, свойства и современные достижения в упаковке на основе полисахаридов и алифатических полиэфиров — обзор
2024-03-21
SCID: 54.1/hmsbz9k8
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aliphatic polyester-based packagingchitosanpolylactic acid (PLA)polysaccharide-based packagingstarch
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Abstract (AI)
Food packaging plays an imperative role in the food processing sector by safeguarding foods from their point of harvesting until the moment of consumption. In recent years, biopolymers have attracted the attention of the scientific community as an alternative to conventional packaging materials. Among the available biopolymer sources, a lot of the focus has been on polysaccharides due to their superior barrier properties against gases, oils, and odors and their processing versatility. Moreover, there is also a growing interest in aliphatic polyester as a potential replacement for petrochemical-based synthetic plastics. Both polysaccharides and aliphatic polyesters have gained popularity in sustainable food packaging due to their unique characteristics, including their low cost, availability, biodegradability, gas and moisture barrier properties, film-forming capabilities, excellent heat resistance, and ability to be processed into films, trays, and coatings. This review highlights the structural features, properties, and recent advancements of several vital polysaccharides, namely, starch, chitosan, cellulose, alginate, pectin, carrageenan, and aliphatic polyesters, including polylactic acid (PLA) and polyhydroxybutyrate (PHB) for developing packaging materials, and their applications in the food industry. Conventional packaging and future perspectives of biopolymer-based food packaging are also comprehensively covered in this review.
Key Findings
1
Aliphatic polyesters (notably polylactic acid and polyhydroxybutyrate) are identified as promising replacements for petrochemical-based plastics due to biodegradability and film-forming capabilities.
2
Both polysaccharides and aliphatic polyesters offer advantages for sustainable food packaging, including low cost, availability, biodegradability, moisture and gas barrier properties, heat resistance, and suitability for films, trays, and coatings.
3
Conventional packaging approaches and future perspectives for biopolymer-based food packaging are comprehensively discussed, indicating ongoing development and adoption pathways.
4
Polysaccharides (starch, chitosan, cellulose, alginate, pectin, carrageenan) are highlighted for superior barrier properties against gases, oils, and odors and for processing versatility in food packaging.
5
The review synthesizes structural features, properties, and recent advancements of these biopolymers specifically for food industry packaging applications.
Research Object
Polysaccharide- and aliphatic polyester-based food packaging materials (including starch, chitosan, cellulose, alginate, pectin, carrageenan, PLA, PHB)
Research Subject
Their structure, material properties, and recent developments/advancements for application in sustainable food packaging, including barrier, film-forming, biodegradability, thermal resistance, and processing aspects
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2024-03-21
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