催化作用
解构(建筑)
材料科学
纳米技术
环境污染
废物管理
化学
有机化学
生化工程
环境科学
工程类
环境保护
作者
Lucas D. Ellis,Nicholas A. Rorrer,Kevin P. Sullivan,Maike Otto,J.E. McGeehan,Yuriy Román‐Leshkov,Nick Wierckx,Gregg T. Beckham
出处
期刊:Nature Catalysis
[Springer Nature]
日期:2021-07-22
卷期号:4 (7): 539-556
被引量:573
标识
DOI:10.1038/s41929-021-00648-4
摘要
Plastics pollution is causing an environmental crisis, prompting the development of new approaches for recycling, and upcycling. Here, we review challenges and opportunities in chemical and biological catalysis for plastics deconstruction, recycling, and upcycling. We stress the need for rigorous characterization and use of widely available substrates, such that catalyst performance can be compared across studies. Where appropriate, we draw parallels between catalysis on biomass and plastics, as both substrates are low-value, solid, recalcitrant polymers. Innovations in catalyst design and reaction engineering are needed to overcome kinetic and thermodynamic limitations of plastics deconstruction. Either chemical and biological catalysts will need to act interfacially, where catalysts function at a solid surface, or polymers will need to be solubilized or processed to smaller intermediates to facilitate improved catalyst–substrate interaction. Overall, developing catalyst-driven technologies for plastics deconstruction and upcycling is critical to incentivize improved plastics reclamation and reduce the severe global burden of plastic waste. Plastics are invaluable materials for modern society, although they result in the generation of large amounts of litter at the end of their life cycle. This Review explores the challenges and opportunities associated with the catalytic transformation of waste plastics, looking at both chemical and biological approaches to transforming such spent materials into a resource.
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