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卤代聚合物(F-、Cl-、Br-)的热化学回收与降解策略:结合机理见解的全面综述

Thermochemical Recycling and Degradation Strategies of Halogenated Polymers (F-, Cl-, Br-): A Holistic Review Coupled with Mechanistic Insights.

作者信息

Shafi Kuttiyathil Mohamed, Ali Labeeb, Altarawneh Mohammednoor

机构信息

United Arab Emirates University, Department of Chemical and Petroleum Engineering, Sheikh Khalifa bin Zayed Street, Al-Ain, 15551, United Arab Emirates.

出版信息

Chem Rec. 2025 Jun;25(6):e202500022. doi: 10.1002/tcr.202500022. Epub 2025 Apr 7.

Abstract

Handling the waste associated with halogenated polymers is a daunting task due to the well-documented emission of halogen-bearing toxicants during the disposal or recycling operation. According to the Stockholm Convention treaty, most of these products are classified as persistent organic pollutants due to their potential health hazards. This review aims to provide a holistic overview of the recent updates for treating halogenated polymeric waste through physical, chemical and biological approaches. In the line of inquiry, critical analysis of the obstacles and prospects associated with each degradation technique on the halogenated polymer has been performed, assessing based on the degradation efficiency, treatment upscaling, pollution control, and feasibility. Though many treatments show promising results, they also entail drawbacks. Thermal treatment exploiting various metal oxides, especially calcium additives, is considered the most executable technique for halogenated polymer valorization coupled with mineralization/metal extraction due to its intuitive operational feasibility and potential scalability. Strategies for combating the soaring halogenated polymeric wastes summarized herein tap into promoting a circular economy approach for their sustainable disposal and recycling.

摘要

由于在处置或回收操作过程中,含卤有毒物质的排放已被充分记录,处理与卤化聚合物相关的废物是一项艰巨的任务。根据《斯德哥尔摩公约》条约,这些产品中的大多数因其潜在的健康危害而被归类为持久性有机污染物。本综述旨在全面概述通过物理、化学和生物方法处理卤化聚合物废物的最新进展。在研究过程中,对与卤化聚合物的每种降解技术相关的障碍和前景进行了批判性分析,并基于降解效率、处理规模扩大、污染控制和可行性进行了评估。尽管许多处理方法显示出有前景的结果,但它们也存在缺点。利用各种金属氧化物,特别是钙添加剂的热处理,由于其直观的操作可行性和潜在的可扩展性,被认为是卤化聚合物增值与矿化/金属提取相结合的最可行技术。本文总结的应对卤化聚合物废物激增的策略,旨在推动循环经济方法以实现其可持续处置和回收利用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/80f2/12168112/b07910b3c96f/TCR-25-e202500022-g019.jpg

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