Piedade Cestari Sibele, Rodrigues Pedro Veiga, Ribeiro Ana Cristina, Castro Maria Cidália Rodrigues, Cruz Vasco, Torres Ana Rita, Ramos Nuno, Machado Ana Vera
Department of Polymer Engineering, Institute for Polymers and Composites (IPC), Campus de Azurém, University of Minho, 4804-533 Guimarães, Portugal.
Polymers (Basel). 2024 Dec 8;16(23):3441. doi: 10.3390/polym16233441.
This study investigated the optimal combination of compatibilizers and stabilizers to enhance the value of marine environment plastic (MEP). The composition of the plastics was analysed, and a simulated recycled plastic blend (sMEP) was prepared based on a simplified composition of actual MEP. Different concentrations of three commercial compatibilizers (C1, C2 and C3) were tested to improve tensile strength. The tensile tests indicated that the blend compatibilized with 10 wt.% C3 (polypropylene grafted with maleic anhydride) exhibited the highest increase in tensile strength. This optimal compatibilization was then combined with two commercial stabilizers and applied to a simulated MEP blend. Scanning electron microscopy images showed that all blends had a continuous polyethylene phase with dispersed poly(ethylene terephthalate) (PET) and polypropylene (PP) droplets. The simulated blend with 10 wt.% C3 exhibited a reduced PET droplet size in the dispersed phase. Differential scanning calorimetry results revealed a decrease in polyethylene crystallinity and an increase in PP crystallinity. The improved properties of the blend were attributed to the effectiveness of the C3 compatibilizer in enhancing the interface between the PP and PET phases. An effective formulation was developed to valorise marine-sourced plastics by leveraging existing scientific knowledge and accessible commercial additives. Applying this enhanced formulation to real MEP not only demonstrated its effectiveness, but also highlighted a practical approach for reducing plastic pollution and supporting circular economy principles, contributing to environmental conservation efforts.
本研究调查了相容剂和稳定剂的最佳组合,以提高海洋环境塑料(MEP)的价值。分析了塑料的成分,并根据实际MEP的简化成分制备了模拟再生塑料共混物(sMEP)。测试了三种市售相容剂(C1、C2和C3)的不同浓度,以提高拉伸强度。拉伸试验表明,与10 wt.% C3(马来酸酐接枝聚丙烯)相容的共混物拉伸强度增加最高。然后将这种最佳相容化与两种市售稳定剂结合,并应用于模拟MEP共混物。扫描电子显微镜图像显示,所有共混物都有一个连续的聚乙烯相,其中分散着聚对苯二甲酸乙二酯(PET)和聚丙烯(PP)液滴。含有10 wt.% C3的模拟共混物在分散相中PET液滴尺寸减小。差示扫描量热法结果显示聚乙烯结晶度降低,PP结晶度增加。共混物性能的改善归因于C3相容剂在增强PP和PET相之间界面方面的有效性。通过利用现有的科学知识和可获得的商业添加剂,开发了一种有效的配方来提高海洋来源塑料的价值。将这种改进的配方应用于实际MEP不仅证明了其有效性,还突出了一种减少塑料污染和支持循环经济原则的实用方法,为环境保护做出了贡献。