Lahtela Ville, Silwal Shekhar, Kärki Timo
LUT Re-Source Research Platform, LUT University, P.O. Box 20, FI-53851 Lappeenranta, Finland.
Fiber Composite Laboratory, LUT University, P.O. Box 20, FI-53851 Lappeenranta, Finland.
Polymers (Basel). 2020 Oct 28;12(11):2517. doi: 10.3390/polym12112517.
The weight of packaging materials will be increased with advanced innovations, such as multilayer plastic. The consequence of the advanced innovations is challenges in the following reuse activities. This study aimed to investigate the properties of multilayer plastic materials after recycling processes and will increase the awareness of plastic packaging material for reuse options. In this research, the materials were produced from food packages by crushing them and treating them with injection molding equipment. The implementation of materials in the processing was tested, and the structural and mechanical characteristics of the produced plastic materials was evaluated and discussed. Based on the completed tests, plastic materials used in food packages have the clearest differences in the material features, for instance, the melt flow rate and elongation rate in the tensile test that varied between 2.96-48.4 g/10min and 2-289%, respectively. The variation in the characterizations ranged widely between the material structures. The results indicate that solid plastic packaging materials have better mechanical features compared to foil materials. The structural analysis of materials showed that multilayer plastic includes a wide spectrum of different elements within materials, creating a challenge for future recycling.
随着多层塑料等先进创新技术的出现,包装材料的重量将会增加。这些先进创新技术的结果是给后续的再利用活动带来了挑战。本研究旨在调查多层塑料材料在回收过程后的性能,并提高对塑料包装材料再利用选项的认识。在本研究中,材料由食品包装通过粉碎并使用注塑设备进行处理而制成。测试了材料在加工过程中的应用情况,并对所生产塑料材料的结构和机械特性进行了评估和讨论。基于完成的测试,用于食品包装的塑料材料在材料特性方面有最明显的差异,例如,拉伸试验中的熔体流动速率和伸长率分别在2.96 - 48.4克/10分钟和2 - 289%之间变化。材料特性的变化在材料结构之间差异很大。结果表明,与箔材料相比,固体塑料包装材料具有更好的机械性能。材料的结构分析表明,多层塑料在材料内部包含各种各样不同的元素,这给未来的回收利用带来了挑战。