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如何建立一个无微塑料的环境:微塑料降解和塑料回收策略。

How to Build a Microplastics-Free Environment: Strategies for Microplastics Degradation and Plastics Recycling.

机构信息

State Key Laboratory for Modification of Chemical Fibers and Polymer Materials, College of Materials Science and Engineering, Donghua University, Shanghai, 201620, China.

Co-Innovation Center for Textile Industry, Innovation Center for Textile Science and Technology, Donghua University, Shanghai, 201620, China.

出版信息

Adv Sci (Weinh). 2022 Feb;9(6):e2103764. doi: 10.1002/advs.202103764. Epub 2022 Jan 6.

Abstract

Microplastics are an emergent yet critical issue for the environment because of high degradation resistance and bioaccumulation. Unfortunately, the current technologies to remove, recycle, or degrade microplastics are insufficient for complete elimination. In addition, the fragmentation and degradation of mismanaged plastic wastes in environment have recently been identified as a significant source of microplastics. Thus, the developments of effective microplastics removal methods, as well as, plastics recycling strategies are crucial to build a microplastics-free environment. Herein, this review comprehensively summarizes the current technologies for eliminating microplastics from the environment and highlights two key aspects to achieve this goal: 1) Catalytic degradation of microplastics into environmentally friendly organics (carbon dioxide and water); 2) catalytic recycling and upcycling plastic wastes into monomers, fuels, and valorized chemicals. The mechanisms, catalysts, feasibility, and challenges of these methods are also discussed. Novel catalytic methods such as, photocatalysis, advanced oxidation process, and biotechnology are promising and eco-friendly candidates to transform microplastics and plastic wastes into environmentally benign and valuable products. In the future, more effort is encouraged to develop eco-friendly methods for the catalytic conversion of plastics into valuable products with high efficiency, high product selectivity, and low cost under mild conditions.

摘要

微塑料因其高抗降解性和生物累积性而成为环境中一个新兴但至关重要的问题。不幸的是,目前用于去除、回收或降解微塑料的技术还不足以完全消除微塑料。此外,环境中管理不善的塑料废物的碎片化和降解最近已被确定为微塑料的一个重要来源。因此,开发有效的微塑料去除方法以及塑料回收策略对于建立一个无微塑料的环境至关重要。在此,本文全面总结了从环境中去除微塑料的现有技术,并强调了实现这一目标的两个关键方面:1)将微塑料催化降解为环境友好的有机物(二氧化碳和水);2)催化回收和升级塑料废物为单体、燃料和增值化学品。还讨论了这些方法的机制、催化剂、可行性和挑战。新型催化方法,如光催化、高级氧化工艺和生物技术,是将微塑料和塑料废物转化为环境友好和有价值产品的有前途和环保的候选方法。在未来,应鼓励更多的努力来开发环保的方法,以在温和条件下以高效率、高产物选择性和低成本将塑料转化为有价值的产品。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7e91/8867153/59b839db2cba/ADVS-9-2103764-g021.jpg

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