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含卤素塑料热解在资源回收和卤素循环利用方面的最新进展:最新综述。

Recent Advancements in Pyrolysis of Halogen-Containing Plastics for Resource Recovery and Halogen Upcycling: A State-of-the-Art Review.

机构信息

Key Laboratory of Low-grade Energy Utilization Technologies and Systems, Ministry of Education, School of Energy and Power Engineering, Chongqing University, Chongqing 400044, China.

Graduate School of Environmental Studies, Tohoku University, 6-6-07 Aoba, Aramaki-aza, Aoba-ku, Sendai, Miyagi 980-8579, Japan.

出版信息

Environ Sci Technol. 2024 Jan 23;58(3):1423-1440. doi: 10.1021/acs.est.3c09451. Epub 2024 Jan 10.

Abstract

Plastic waste has emerged as a serious issue due to its impact on environmental degradation and resource scarcity. Plastic recycling, especially of halogen-containing plastics, presents challenges due to potential secondary pollution and lower-value implementations. Chemical recycling via pyrolysis is the most versatile and robust approach for combating plastic waste. In this Review, we present recent advancements in halogen-plastic pyrolysis for resource utilization and the potential pathways from "reducing to recycling to upcycling" halogens. We emphasize the advanced management of halogen-plastics through copyrolysis with solid wastes (waste polymers, biomass, coal, etc.), which is an efficient method for dealing with mixed wastes to obtain high-value products while reducing undesirable substances. Innovations in catalyst design and reaction configurations for catalytic pyrolysis are comprehensively evaluated. In particular, a tandem catalysis system is a promising route for halogen removal and selective conversion of targeted products. Furthermore, we propose novel insights regarding the utilization and upcycling of halogens from halogen-plastics. This includes the preparation of halogen-based sorbents for elemental mercury removal, the halogenation-vaporization process for metal recovery, and the development of halogen-doped functional materials for new materials and energy applications. The reutilization of halogens facilitates the upcycling of halogen-plastics, but many efforts are needed for mutually beneficial outcomes. Overall, future investigations in the development of copyrolysis and catalyst-driven technologies for upcycling halogen-plastics are highlighted.

摘要

由于对环境恶化和资源短缺的影响,塑料废物已成为一个严重的问题。由于潜在的二次污染和较低的价值实现,含卤素塑料的回收,尤其是塑料回收,存在挑战。通过热解进行化学回收是应对塑料废物最通用和最强大的方法。在这篇综述中,我们介绍了卤素塑料热解在资源利用方面的最新进展,以及从“减少到回收再到升级利用”卤素的潜在途径。我们强调了通过与固体废物(废聚合物、生物质、煤等)共热解来对卤素塑料进行先进管理,这是一种处理混合废物的有效方法,可获得高价值产品,同时减少有害物质。我们全面评估了催化热解中催化剂设计和反应配置的创新。特别是,串联催化系统是去除卤素和有选择地转化目标产物的有前途的途径。此外,我们还提出了关于从卤素塑料中利用和升级卤素的新见解。这包括制备用于去除元素汞的基于卤素的吸附剂、用于金属回收的卤化-蒸发过程,以及开发用于新材料和能源应用的卤素掺杂功能材料。卤素的再利用促进了卤素塑料的升级利用,但需要付出很多努力才能实现互利共赢。总的来说,未来的研究重点是开发用于升级利用卤素塑料的共热解和催化剂驱动技术。

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