AI Article Synopsis

  • Most catalysts used are homogeneous, complicating their recovery and leading to product contamination, but the study introduces a Pd-Cu/γ-AlO catalyst that overcomes these issues.
  • This new catalyst achieved a PET conversion rate of 99% and an 86% yield of BHET in 80 minutes, can be easily separated for reuse, and shows promise for more sustainable and cost-effective PET recycling.

Article Abstract

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.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11434405PMC
http://dx.doi.org/10.3390/molecules29184305DOI Listing

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