电催化剂
聚对苯二甲酸乙二醇酯
乙二醇
持续性
废物管理
可再生能源
循环经济
材料科学
业务
可再生资源
机制(生物学)
聚乙二醇
塑料废料
乙烯
生化工程
纳米技术
生物量(生态学)
草酸
催化作用
可持续发展
消费(社会学)
环境科学
可持续社会
资源(消歧)
自然资源经济学
透视图(图形)
有机化学品
资源消耗
化学工业
作者
Qiujin Shi,Miao Yu,Xiang Liu,Guohao Xu,Wei Liu,Haohong Duan
摘要
ABSTRACT Plastics have revolutionized our lives, especially polyethylene terephthalate (PET) plastics; however, their exponential consumption and inadequate management have exacerbated global plastic pollution. To address this, renewable energy‐driven electrocatalysis offers a sustainable route to upcycle waste PET into value‐added chemicals, simultaneously delivering economic and environmental advantages. This minireview summarizes recent advances in electrocatalytic PET‐derived ethylene glycol (EG) conversion, establishing a framework based on the fate of the C─C bond (cleavage, maintenance, or coupling) to precisely access C 1 (formic acid, formamide, hydroxymethylsulfonate), C 2 (glycolaldehyde, glycolic acid, oxalic acid), and C 3+ (α‐hydroxycarboxylic acid) products. We place particular emphasis on the bond‐centric mechanisms, discussing the decisive factors that govern the reaction pathways and performances. Finally, a forward‐looking perspective is provided to guide future innovations in sustainable PET valorization and circular chemical manufacturing.
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