4.8 Review

Upcycling to Sustainably Reuse Plastics

期刊

ADVANCED MATERIALS
卷 34, 期 25, 页码 -

出版社

WILEY-V C H VERLAG GMBH
DOI: 10.1002/adma.202100843

关键词

artificial photosynthesis; photocatalytic plastics degradation; photoreforming; plastics biodegradation; plastics upcycling; sustainable chemistry; thermal upcycling

资金

  1. A*STAR under the AME IRG [A2083c0050, A1783c0003, A1783c0002, A1783c0007]
  2. Singapore Ministry of Education Academic Research Fund [RG 111/18, RT 05/19]

向作者/读者索取更多资源

This review presents the latest research on plastics upcycling, covering sustainable approaches and technologies, as well as the use of renewable energy and selective methods to repurpose synthetic polymers. It also introduces thermal upcycling, chemical deconstruction of plastics, advancements in heterogeneous and homogeneous photocatalysis and electrocatalysis, and biotechnological advances in microbial decomposition of plastics.
Plastics are now indispensable in daily lives. However, the pollution from plastics is also increasingly becoming a serious environmental issue. Recent years have seen more sustainable approaches and technologies, commonly known as upcycling, to transform plastics into value-added materials and chemical feedstocks. In this review, the latest research on upcycling is presented, with a greater focus on the use of renewable energy as well as the more selective methods to repurpose synthetic polymers. First, thermal upcycling approaches are briefly introduced, including the redeployment of plastics for construction uses, 3D printing precursors, and lightweight materials. Then, some of the latest novel strategies to deconstruct condensation polymers to monomers for repolymerization or introduce vulnerable linkers to make the plastics more degradable are discussed. Subsequently, the review will explore the breakthroughs in plastics upcycling by heterogeneous and homogeneous photocatalysis, as well as electrocatalysis, which transform plastics into more versatile fine chemicals and materials while simultaneously mitigating global climate change. In addition, some of the biotechnological advances in the discovery and engineering of microbes that can decompose plastics are also presented. Finally, the current challenges and outlook for future plastics upcycling are discussed to stimulate global cooperation in this field.

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