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Development and characterization of bilayer films based on pea starch/polylactic acid and use in the cherry tomatoes packaging

机译:基于豌豆淀粉/聚乳酸的双层薄膜的开发与表征,并在樱桃西红柿包装中的应用

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摘要

Renewable and biodegradable packaging materials are desired for numerous applications. Pea starch (PS) and polylactic acid (PLA) are promising alternatives to petrochemical-based polymers except that their phase separation causes poor mechanical properties. To surmount this problem, PS/PLA films with a double-layer structure were designed. The bilayer films displayed better toughness, thermal stability and barrier capacity over those of PLA films. The incorporation of PLA on a PS layer increased water resistance and tensile strength over those of a monolayer PS film. Weak interfacial adhesion between the PS and PLA layers was revealed by Fourier transform infrared spectroscopy and scanning electron microscopy. The bilayer films reduced weight loss ratio of cherry tomatoes and extended the retention of organic acids and vitamin C. A bilayer architecture represents a promising route to develop packaging materials that display the advantageous properties of each material layer.
机译:许多应用需要可再生和可生物降解的包装材料。 PEA淀粉(PS)和聚乳酸(PLA)是对石化聚合物的有前途的替代方案,不同之处在于它们的相分离导致机械性能差。 为了超越这个问题,设计了具有双层结构的PS / PLA薄膜。 双层薄膜在PLA膜上显示出更好的韧性,热稳定性和障碍能力。 在PS层上掺入PS层上的耐水性和拉伸强度在单层PS膜的那些上。 傅里叶变换红外光谱和扫描电子显微镜揭示了PS和PLA层之间的弱界面粘附。 双层膜减轻樱桃番茄的减肥比,并延长了有机酸和维生素C的保留。双层架构代表了开发显示每个材料层的有利性质的包装材料的有希望的途径。

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