用扩链剂反应挤出法机械回收无纺布中PET废料

Breno Heins Bimestre, C. Saron
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引用次数: 3

摘要

聚对苯二甲酸乙二醇酯(PET)的机械回收是一项重要的工业活动,对环境节约有直接影响。然而,再生PET (R-PET)在每次回收过程中都会经历逐步降解,导致机械,热和熔化强度等性能的相当大的损失。扩链剂已成功地用于提高R-PET的分子量,改善材料的加工能力和力学性能。本研究的目的是评价聚合物二苯基二异氰酸酯(PMDI)和双-(2,4-二丁基酚)季戊四醇二磷酸酯(Irgafos ®126)作为扩链剂的性能,并与传统扩链剂二甲基二酐(PMDA)进行比较。采用拉伸试验、差示探索性量热法、粘度法和动态流变法评价R-PET的力学性能、结晶度、分子量和流变学性能的变化。PMDI对R-PET的分子量增加、力学性能和流变性能有明显的改善作用,而Irgafos 126对R-PET的分子量增加后会导致性能下降。因此,使用PDMI作为链延伸可以代表机械回收高度降解PET的重要替代方案。
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Mechanical Recycling of PET Waste from Non-Woven Fabrics by Reactive Extrusion with Chain Extenders
Mechanical recycling of poly (ethylene terephthalate) (PET) is an important industrial activity with direct effect for environmental saving. However, recycled PET (R-PET) undergoes progressive degradation during each recycling process, leading to considerable loss of properties such as mechanical, thermal and melting strength. Chain extenders have been successfully used to increase molecular weight of R-PET, improving process ability and mechanical performance of the material. The aims of this work was to evaluate the performance of the compounds polymeric methylene diphenyldiisocyanate (PMDI) and bis-(2,4-di-t-butylphenol) pentaerythritoldiphosphite (Irgafos ® 126) for potential use as chain extenders when compared to the traditional chain extender pyromelliticdianhydride (PMDA). Tensile testing, differential exploratory calorimetry, viscometry and dynamic rheometry were used to evaluate changes in mechanical properties, crystallinity, molecular weight and rheological properties of R-PET. PMDI showed effective action on increase in molecular weight and improvements in mechanical and rheological properties of R-PET, while Irgafos 126 causes depreciation of properties of the R-PET after initially to increase the molecular weight of the polymer. Thus, the use of PDMI as chain extension can represent an important alternative for mechanical recycling of highly degraded PET.
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