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微波辅助热解——塑料和生物质可持续回收与升级的新途径:综述

Microwave-Assisted Pyrolysis-A New Way for the Sustainable Recycling and Upgrading of Plastic and Biomass: A Review.

作者信息

Jiang Zhicheng, Liang Yuan, Guo Fenfen, Wang Yuxuan, Li Ruikai, Tang Aoyi, Tu Youjing, Zhang Xingyu, Wang Junxia, Li Shenggang, Kong Lingzhao

机构信息

School of Environmental Science and Engineering, Suzhou University of Science and Technology, Suzhou, 215009, P. R. China.

CAS Key Laboratory of Low-Carbon Conversion Science and Engineering, Shanghai Advanced Research Institute, Chinese Academy of Sciences, Shanghai, 201210, P. R. China.

出版信息

ChemSusChem. 2024 Nov 11;17(21):e202400129. doi: 10.1002/cssc.202400129. Epub 2024 Jun 27.

Abstract

The efficient utilization of organic solid waste resources can help reducing the consumption of conventional fossil fuels, mitigating environmental pollution, and achieving green sustainable development. Due to its dual nature of being both a resource and a source of pollution, it is crucial to implement suitable recycling technologies throughout the recycling and upgrading processes for plastics and biomass, which are organic solid wastes with complex mixture of components. The conventional pyrolysis and hydropyrolysis were summarized for recycling plastics and biomass into high-value fuels, chemicals, and materials. To enhance reaction efficiency and improve product selectivity, microwave-assisted pyrolysis was introduced to the upgrading of plastics and biomass through efficient energy supply especially with the aid of catalysts and microwave absorbers. This review provides a detail summary of microwave-assisted pyrolysis for plastics and biomass from the technical, applied, and mechanistic perspectives. Based on the recent technological advances, the future directions for the development of microwave-assisted pyrolysis technologies are predicted.

摘要

有机固体废物资源的高效利用有助于减少传统化石燃料的消耗,减轻环境污染,并实现绿色可持续发展。由于其兼具资源和污染源的双重性质,对于塑料和生物质这两种成分复杂的有机固体废物,在其回收和升级过程中实施合适的回收技术至关重要。综述了将塑料和生物质回收为高价值燃料、化学品和材料的传统热解和加氢热解方法。为提高反应效率和改善产物选择性,通过高效的能量供应,特别是借助催化剂和微波吸收剂,将微波辅助热解引入塑料和生物质的升级过程。本综述从技术、应用和机理角度详细总结了塑料和生物质的微波辅助热解。基于近期的技术进展,预测了微波辅助热解技术的未来发展方向。

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