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Performance Evaluation of PLA against Existing PET and PS Containers

机译:PLA对现有PET和PS容器的性能评估

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Poly(lactide) (PLA) polymers are environmentally-friendly biodegradable materials that have garnered growing attention in the past few years as food packaging materials since packages made from PLA have the advantage of being produced from renewable resources, provides significant energy savings, and can be recyclable and compostable. PLA's optical, physical, and mechanical properties have been compared to those of polystyrene (PS) and polyethylene terephthalate (PET) although studies comparing and showing the actual performance of PLA, PS, and PET packages are scarce. The purpose of this study was to investigate and to compare the role of PLA for the food service industry. Two of the commonly used materials to make containers to package fresh food, PET and oriented polystyrene (OPS), were compared with oriented PLA (OPLA). This study involved a number of tests to quantify the physical, mechanical, barrier, and compatibility properties that would affect the selection criteria for containers to be used for food service applications. Based on the results, OPLA, OPS, and PET performances were evaluated. Exposures of the three materials to weak and strong acids for seven days show a minimal reduction in the performance of these polymers. At ambient temperature, PET has the highest impact resistance followed by OPLA and OPS. PET shows the highest oxygen barrier followed by OPLA and OPS. Thus, several of the relevant properties for packaging applications of OPLA are between PET and OPS properties, suggesting that OPLA would also be suitable for some of these applications.
机译:聚丙交酯(PLA)聚合物是环境友好的可生物降解材料,在过去的几年中作为食品包装材料受到越来越多的关注,因为用PLA制成的包装具有可再生资源生产的优点,可显着节约能源,并且可以可回收和可堆肥。尽管缺乏比较和显示PLA,PS和PET封装实际性能的研究,但已将PLA的光学,物理和机械性能与聚苯乙烯(PS)和聚对苯二甲酸乙二醇酯(PET)进行了比较。这项研究的目的是调查和比较PLA在食品服务行业中的作用。将两种用于制造包装新鲜食品的容器的常用材料PET和定向聚苯乙烯(OPS)与定向PLA(OPLA)进行了比较。这项研究涉及许多测试,以量化物理,机械,阻隔和相容性属性,这些属性会影响食品服务应用容器的选择标准。根据结果​​评估OPLA,OPS和PET性能。三种材料分别在弱酸和强酸中暴露7天,表明这些聚合物的性能几乎没有下降。在环境温度下,PET具有最高的耐冲击性,其次是OPLA和OPS。 PET的氧气阻隔性最高,其次是OPLA和OPS。因此,OPLA包装应用的一些相关性能介于PET和OPS性能之间,这表明OPLA也适用于其中一些应用。

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