烯烃复分解
解聚
背景(考古学)
解构(建筑)
碳足迹
化学
聚合
烯烃纤维
复分解
循环经济
聚合物
生化工程
纳米技术
废物管理
有机化学
工程类
材料科学
温室气体
古生物学
生态学
生物
作者
Devavrat Sathe,Seiyoung Yoon,Zeyu Wang,Hanlin Chen,Junpeng Wang
标识
DOI:10.1021/acs.chemrev.3c00748
摘要
The consumption of synthetic polymers has ballooned; so has the amount of post-consumer waste generated. The current polymer economy, however, is largely linear with most of the post-consumer waste being either landfilled or incinerated. The lack of recycling, together with the sizable carbon footprint of the polymer industry, has led to major negative environmental impacts. Over the past few years, chemical recycling technologies have gained significant traction as a possible technological route to tackle these challenges. In this regard, olefin metathesis, with its versatility and ease of operation, has emerged as an attractive tool. Here, we discuss the developments in olefin-metathesis-based chemical recycling technologies, including the development of new materials and the application of olefin metathesis to the recycling of commercial materials. We delve into structure–reactivity relationships in the context of polymerization–depolymerization behavior, how experimental conditions influence deconstruction outcomes, and the reaction pathways underlying these approaches. We also look at the current hurdles in adopting these technologies and relevant future directions for the field.
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