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循环经济视角下新型三层可堆肥包装薄膜在储存条件下降解后的适用性研究

Circular Economy Insights on the Suitability of New Tri-Layer Compostable Packaging Films after Degradation in Storage Conditions.

作者信息

de Las Heras Ricardo Ballestar, Ayala Sergio Fernández, Salazar Estefanía Molina, Carrillo Fernando, Cañavate Javier, Colom Xavier

机构信息

Research Department of Sphere Group Spain, P.I El Pradillo 3 C/Sphere, Parcela 9, 50690 Pedrola, Zaragoza, Spain.

Department of Chemical Engineering ESEIAAT, Universitat Politècnica de Catalunya BarcelonaTech. Colom 1, 08222 Terrassa, Barcelona, Spain.

出版信息

Polymers (Basel). 2023 Oct 19;15(20):4154. doi: 10.3390/polym15204154.

Abstract

The environmental degradation of the films used in packaging is a key factor in their commercial use. Industrial and academic research is aimed at obtaining materials that have degradation features that ensure their eco-sustainability but, at the same time, preserve their use properties during storage and distribution periods. This study analyzes the degradability behavior over time of commercial packaging that meets the requirements of the UNE 13432 standard and the prEN 17427 (2020) home composting certification requirements under standard storage conditions. The study attempts to provide insight into the durability of the films under standard storage conditions, verifying that this type of packaging has a useful life of more than 12 months and that after this storage period it still retains the usability properties for which it was conceived. The analyzed sample has been manufactured using a three-layer technology under some commercial formulations based on PBAT + STARCH + PLA and has been analyzed monthly for 12 consecutive months. The macroscopic monitoring of the degradation of the sample has been carried out through the evolution of the mechanical properties and the quantification of the color changes (very important in films) via colorimetry. The nature of the observed variations has been justified at the microstructural level from the data obtained in calorimetric analysis (DSC) and from the characterization using FTIR. The results indicate a loss of properties in the tensile, elongation and impact tests and a behavior of stability or improvement in the tear properties of the film. Analyzing the microstructural changes, it is observed that the degradation of a hydrolytic and thermo-oxidative type occurs in the amorphous part of the film. The conclusion of this study is that the proposed packaging, focused on domestic composting and stored under standard conditions, has a useful life of more than 12 months. This period should be sufficient to cover the stages of production, storage and final use.

摘要

包装用薄膜的环境降解是其商业应用中的一个关键因素。工业和学术研究旨在获得具有降解特性的材料,以确保其生态可持续性,同时在储存和分销期间保持其使用性能。本研究分析了符合UNE 13432标准要求和prEN 17427(2020)家庭堆肥认证要求的商业包装在标准储存条件下随时间的降解行为。该研究试图深入了解薄膜在标准储存条件下的耐久性,验证这种类型的包装使用寿命超过12个月,并且在该储存期后仍保留其设计时所具有的使用性能。所分析的样品采用基于PBAT +淀粉+PLA的一些商业配方,通过三层技术制造,并连续12个月每月进行分析。通过机械性能的演变以及通过比色法对颜色变化(在薄膜中非常重要)进行量化,对样品的降解进行了宏观监测。从量热分析(DSC)获得的数据以及使用FTIR进行的表征,在微观结构层面上对观察到的变化的性质进行了论证。结果表明,在拉伸、伸长和冲击试验中性能有所损失,而薄膜的撕裂性能则表现出稳定或改善的行为。分析微观结构变化时,可以观察到薄膜的无定形部分发生了水解和热氧化类型的降解。本研究的结论是,所提出的专注于家庭堆肥并在标准条件下储存的包装,其使用寿命超过12个月。这段时间应该足以涵盖生产、储存和最终使用阶段。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/db65/10611226/5537b4a8954c/polymers-15-04154-g001.jpg

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