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MFC Concept as a Possible Solution for Closed-loop Recycling of Food Packaging Trays

机译:MFC概念作为食品包装托盘闭环回收的可能解决方案

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Flexible plastic films from food packaging trays make up one of the largest fractions of the plastic waste stream and recycling is one of the most important actions to deal with this fraction, reducing the impact of these plastics on the environment. However, the recyclability of multi-layered films is not straightforward and in most of the cases these fractions are landfilled or incinerated. Recycling of discarded mixed polymers without previous separation often results in low mechanical properties which have lead researchers to investigate novel solutions for recycling. In this research, the concept of microfibrillar composites (MFCs) was investigated aiming to upcycle mixed polymer waste streams. A blend based on polypropylene (PP) and poly(ethylene terephthalate) (PET) at a weight ratio of 80/20 PP/PET was studied. The final step of the MFC processing was conducted using a conical twin screw extrusion. The morphological results confirmed the presence of PET microfibrils in the composites, leading to an improvement in mechanical properties such as in the tensile yield strength and strain at break. Subsequently, the MFC samples were successfully moulded into trays via thermoforming.
机译:来自食品包装托盘的柔性塑料薄膜构成了塑料废物流的最大部分之一,并回收是处理这一部分的最重要的行动之一,降低了这些塑料对环境的影响。然而,多层薄膜的可回收性并不直接,并且在大多数情况下,这些级分是填埋或焚烧的。没有先前分离的废弃混合聚合物的再循环通常导致机械性能低,这具有潜在的研究人员来调查用于回收的新溶液。在该研究中,研究了微纤维结合物(MFC)的概念,旨在升级upcycle混合聚合物废物流。研究了基于聚丙烯(PP)和聚(乙烯苯二甲酸乙二醇酯)(PET)以80/20pp / PET的聚丙烯(乙烯对苯二甲酸乙二醇酯)(PET)的混合物。使用锥形双螺杆挤出进行MFC处理的最终步骤。形态学结果证实了复合材料中PET微纤维的存在,导致机械性能的改善,例如在突破的拉伸屈服强度和菌株中。随后,MFC样品通过热成型成功地模塑成托盘。

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