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废旧塑料热化学回收制备替代燃料的研究进展

Perspectives on Thermochemical Recycling of End-of-Life Plastic Wastes to Alternative Fuels.

作者信息

Nanda Sonil, Sarker Tumpa R, Kang Kang, Li Dongbing, Dalai Ajay K

机构信息

Department of Engineering, Faculty of Agriculture, Dalhousie University, Truro, NS B2N 5E3, Canada.

Department of Chemical and Biological Engineering, University of Saskatchewan, Saskatoon, SK S7N 5A9, Canada.

出版信息

Materials (Basel). 2023 Jun 24;16(13):4563. doi: 10.3390/ma16134563.

Abstract

Due to its resistance to natural degradation and decomposition, plastic debris perseveres in the environment for centuries. As a lucrative material for packing industries and consumer products, plastics have become one of the major components of municipal solid waste today. The recycling of plastics is becoming difficult due to a lack of resource recovery facilities and a lack of efficient technologies to separate plastics from mixed solid waste streams. This has made oceans the hotspot for the dispersion and accumulation of plastic residues beyond landfills. This article reviews the sources, geographical occurrence, characteristics and recyclability of different types of plastic waste. This article presents a comprehensive summary of promising thermochemical technologies, such as pyrolysis, liquefaction and gasification, for the conversion of single-use plastic wastes to clean fuels. The operating principles, drivers and barriers for plastic-to-fuel technologies via pyrolysis (non-catalytic, catalytic, microwave and plasma), as well as liquefaction and gasification, are thoroughly discussed. Thermochemical co-processing of plastics with other organic waste biomass to produce high-quality fuel and energy products is also elaborated upon. Through this state-of-the-art review, it is suggested that, by investing in the research and development of thermochemical recycling technologies, one of the most pragmatic issues today, i.e., plastics waste management, can be sustainably addressed with a greater worldwide impact.

摘要

由于其抗自然降解和分解的特性,塑料碎片在环境中会持续存在数百年。作为包装行业和消费品的一种有利可图的材料,塑料已成为当今城市固体废物的主要组成部分之一。由于缺乏资源回收设施以及缺乏从混合固体废物流中分离塑料的有效技术,塑料回收正变得困难。这使得海洋成为塑料残渣在垃圾填埋场之外分散和积累的热点地区。本文综述了不同类型塑料废物的来源、地理分布、特性和可回收性。本文全面总结了有前景的热化学技术,如热解、液化和气化,用于将一次性塑料废物转化为清洁燃料。详细讨论了通过热解(非催化、催化、微波和等离子体)以及液化和气化将塑料转化为燃料技术的操作原理、驱动因素和障碍。还阐述了塑料与其他有机废弃生物质的热化学共处理以生产高质量燃料和能源产品。通过这篇前沿综述表明,通过投资热化学回收技术的研发,可以可持续地解决当今最实际的问题之一,即塑料废物管理,从而在全球范围内产生更大影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d62b/10342921/80b3b627b913/materials-16-04563-g001.jpg

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