Recent advances on solar-driven valorization of polyethylene terephthalate plastics into value-added chemicals

Author:

Kang Sailei,Yuan Wenfang,Chen Wenxuan,Du Mengmeng,Zhang YuORCID,Qiu BochengORCID

Abstract

Abstract The random disposal and immature recycling of post-consumer polyethylene terephthalate (PET) packages lead to a severe threaten to the ecological system owing to slow natural degradation kinetics of PET plastic, and meanwhile cause a waste of carbon resources stored in PET plastics. Many methods have been developed to recycle PET plastics, such as mechanical recycling, which induces a reduced quality relative to the virgin PET. In recent years, the photocatalytic conversion of PET plastic wastes into chemicals has received considerable attention due to their unique advantages, including mild conditions, less energy consumption, and simple operation. In this review, we have summarized the latest achievements in photoreforming of PET plastics into value-added chemicals. Primarily, we described the mechanism for bond cleavage during PET photoreforming, the emerging pretreatment methodologies for PET plastics, and the advantages of photocatalytic PET plastics conversion. Then, we introduced electro-/bio-assisted photocatalysis technologies for PET disposal and commented their strengths and limitations. Finally, we put forward the challenges and potential advances in the domain of photocatalytic PET plastics conversion.

Publisher

IOP Publishing

Subject

Electrical and Electronic Engineering,Mechanical Engineering,Mechanics of Materials,General Materials Science,General Chemistry,Bioengineering

Reference114 articles.

1. Predicted growth in plastic waste exceeds efforts to mitigate plastic pollution;Borrelle;Science,2020

2. The global threat from plastic pollution;MacLeod;Science,2021

3. Catalytic degradation of polyethylene terephthalate using a phase-transitional zirconium-based metal-organic framework;Wu;Angew. Chem. Int. Ed.,2022

4. Electrocatalytic reforming of waste plastics into high value-added chemicals and hydrogen fuel;Shi;Chem. Commun.,2021

5. Coupling of PET waste electroreforming with green hydrogen generation using bifunctional catalyst;Li;Sustain. Energy Fuels,2022

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