人工光合作用为塑料垃圾带来新的活力

SmartMat Pub Date : 2023-03-29 DOI:10.1002/smm2.1202
Sailei Kang, Tao Sun, Yingxin Ma, Mengmeng Du, M. Gong, Chunyu Zhou, Yang Chai, Bocheng Qiu
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引用次数: 6

摘要

塑料垃圾在垃圾填埋场和环境中的积累威胁着我们的环境和公众健康,同时导致潜在碳资源的损失。迫切需要的是开发一种节能环保的方法,将塑料升级为增值化学品。人工光合作用具有在温和条件下利用无穷无尽的太阳能实现塑料升级循环的能力,但仍处于塑料升级的初级阶段。本文从资源再利用的角度对塑料废弃物的光催化转化进行了综述。首先,我们介绍了塑料废物的新兴转化途径,并强调了人工光合作用处理塑料废物的优势。通过分析光催化塑料转化过程,我们展示了目前可用的塑料加工途径,包括塑料光降解、塑料串联分解和二氧化碳还原、塑料选择性氧化以及塑料光重整。本文总结了光催化塑料转化的潜在进展和面临的挑战。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Artificial photosynthesis bringing new vigor into plastic wastes
The accumulation of plastic wastes in landfills and the environment threatens our environment and public health, while leading to the loss of potential carbon resources. The urgent necessary lies in developing an energy‐saving and environmentally benign approach to upgrade plastic into value‐added chemicals. Artificial photosynthesis holds the ability to realize plastic upcycling by using endless solar energy under mild conditions, but remains in the initial stage for plastic upgrading. In this review, we aim to look critically at the photocatalytic conversion of plastic wastes from the perspective of resource reutilization. To begin with, we present the emerging conversion routes for plastic wastes and highlight the advantages of artificial photosynthesis for processing plastic wastes. By parsing photocatalytic plastic conversion process, we demonstrate the currently available routes for processing plastic, including plastic photodegradation, tandem decomposition of plastic and CO2 reduction, selective plastic oxidation, as well as photoreforming of plastic. This review concludes with a personal perspective for potential advances and emerging challenges in photocatalytic plastic conversion.
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