Zhou Lei, Qin Enbo, Huang Hao, Wang Yuanyou, Li Mingxin
School of Chemical Engineering, Yangzhou Polytechnic Institute, Yangzhou 225127, China.
Jiangsu Polyester Synthesis and Renewable Technology Engineering Research Center, Yangzhou 225127, China.
Molecules. 2024 Sep 11;29(18):4305. doi: 10.3390/molecules29184305.
Glycolysis of poly(ethylene terephthalate) (PET) is a prospective way for degradation of PET to its monomer bis(hydroxyethyl) terephthalate (BHET), providing the possibility for a permanent loop recycling. However, most reported glycolysis catalysts are homogeneous, making the catalyst difficult to recover and contaminating the products. Herein, we reported on the Pd-Cu/γ-AlO catalyst and applied it in the glycolysis of PET as catalyst. The formed structure gave Pd-Cu/γ-AlO a high active surface area, which enabled these micro-particles to work more efficiently. The PET conversion and BHET yield reached 99% and 86%, respectively, in the presence of 5 wt% of Pd-Cu/γ-AlO catalyst within 80 min at 160 °C. After the reaction, the catalyst can be quickly separated by filtration, so it can be easily reused without significant loss of reactivity at least five times. Therefore, the Pd-Cu/γ-AlO catalyst may contribute to an economically and environmentally improved large-scale recycling of PET fiber waste.
聚对苯二甲酸乙二酯(PET)的乙二醇解是将PET降解为其单体对苯二甲酸双(羟乙酯)(BHET)的一种有前景的方法,为实现永久循环回收提供了可能。然而,大多数报道的乙二醇解催化剂均为均相催化剂,这使得催化剂难以回收且会污染产物。在此,我们报道了Pd-Cu/γ-AlO催化剂并将其作为催化剂应用于PET的乙二醇解反应中。所形成的结构赋予了Pd-Cu/γ-AlO较高的活性表面积,使得这些微粒能够更高效地发挥作用。在160℃下,于80分钟内,在5 wt%的Pd-Cu/γ-AlO催化剂存在的情况下,PET转化率和BHET产率分别达到了99%和86%。反应后,催化剂可通过过滤快速分离,因此它可以轻松重复使用,且至少重复使用五次而不会显著损失反应活性。因此,Pd-Cu/γ-AlO催化剂可能有助于实现经济且环保的大规模PET纤维废料回收利用。