Wu Wen-Jun, Sun Xiao-Li, Chen Qinghua, Qian Qingrong
College of Environmental Science and Engineering, Fujian Normal University, Fuzhou 350007, China.
Engineering Research Center of Polymer Green Recycling of Ministry of Education, Fujian Normal University, Fuzhou 350007, China.
Polymers (Basel). 2022 Jan 27;14(3):510. doi: 10.3390/polym14030510.
Annual production of textile fibers is continuing to rise and the substantial discharge of undegradable waste polyester fibers can cause serious environmental and even health problems. Thus, the recycling and reuse of recycled poly(ethylene terephthalate) from waste textiles (rPET-F) is highly desirable but still challenging. Here, five chain extenders with a different number of epoxy groups per molecules were used to blend with discarded PET fibers and improve its viscosity and quality loss in the recycling process. The molecule weight, thermal properties, rheological properties and macromolecular architecture of modified r-PET were investigated. It was found that all modified rPET-F samples show higher viscosities and better thermal properties. rPET-F modified by difunctional EXOP molecules show linear structure and improved rheological properties. rPET-F modified by polyfunctional commercial ADR and synthesized copolymers exhibit a long chain branched structure and better crystallization. This study reveals a deeper understanding of the chain extension and opens an avenue for the recycling of PET textiles.
纺织纤维的年产量持续增长,不可降解的废弃聚酯纤维大量排放会导致严重的环境问题甚至健康问题。因此,从废旧纺织品中回收和再利用回收聚对苯二甲酸乙二酯(rPET-F)非常必要,但仍具有挑战性。在此,使用了五种每个分子具有不同环氧基团数量的扩链剂与废弃PET纤维共混,以提高其在回收过程中的粘度和质量损失。研究了改性r-PET的分子量、热性能、流变性能和大分子结构。结果发现,所有改性rPET-F样品都表现出更高的粘度和更好的热性能。由双官能EXOP分子改性的rPET-F呈现线性结构并改善了流变性能。由多官能商业ADR和合成共聚物改性的rPET-F呈现长链支化结构并具有更好的结晶性。本研究揭示了对扩链的更深入理解,并为PET纺织品的回收开辟了一条途径。