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探索无氟消防泡沫(F3)替代水成膜泡沫(AFFF)的前景与挑战:综述

Exploring the Prospects and Challenges of Fluorine-Free Firefighting Foams (F3) as Alternatives to Aqueous Film-Forming Foams (AFFF): A Review.

作者信息

Jahura Fatema Tuj, Mazumder Nur-Us-Shafa, Hossain Md Tanjim, Kasebi Arash, Girase Arjunsing, Ormond R Bryan

机构信息

Textile Protection and Comfort Center (TPACC), Wilson College of Textiles, North Carolina State University, Raleigh, North Carolina 27695-8301, United States.

出版信息

ACS Omega. 2024 Aug 28;9(36):37430-37444. doi: 10.1021/acsomega.4c03673. eCollection 2024 Sep 10.

Abstract

This review provides a comparative analysis of the performance, toxicity, environmental impact, and health risks associated with fluorotelomer-based/short-chain AFFF and F3. Despite notable progress in F3 development, achieving comparable performance remains challenging in some cases. F3 formulations, while promising, are yet to be considered a direct replacement for AFFF in all Class B fire suppression scenarios due to variations in their performance across different fuel types and test conditions. Available studies indicate that commercially available F3 exhibit greater biodegradability and reduced environmental persistence compared to AFFF. However, some alternatives may still pose similar environmental impacts. Limited ecotoxicity studies suggest that some F3 may exhibit equal or even higher toxicity to aquatic species than short-chain (C6) AFFF. Toxicological assessments and risk evaluations of F3 should consider factors beyond environmental persistence, including acute and chronic ecotoxicity, potential endocrine disruption, and the full toxicological profile of foam formulations and their individual components. Further research is necessary to understand the fate, transport, bioaccumulation, and toxicity of F3 degradation products. Addressing these knowledge gaps is crucial to ensure the safe and sustainable implementation of F3 as an alternative fire suppression solution.

摘要

本综述对基于氟调聚物的/短链水成膜泡沫灭火剂(AFFF)和F3在性能、毒性、环境影响及健康风险方面进行了比较分析。尽管F3的开发取得了显著进展,但在某些情况下,要实现与之相当的性能仍具有挑战性。F3配方虽有前景,但由于其在不同燃料类型和测试条件下性能存在差异,在所有B类灭火场景中尚未被视为AFFF的直接替代品。现有研究表明,市售F3相比AFFF具有更高的生物降解性和更低的环境持久性。然而,一些替代品可能仍会造成类似的环境影响。有限的生态毒性研究表明,某些F3对水生物种的毒性可能与短链(C6)AFFF相当甚至更高。对F3的毒理学评估和风险评估应考虑除环境持久性之外的因素,包括急性和慢性生态毒性、潜在的内分泌干扰以及泡沫配方及其各成分的完整毒理学特征。有必要开展进一步研究以了解F3降解产物的归宿、迁移、生物累积和毒性。填补这些知识空白对于确保安全、可持续地将F3用作替代灭火解决方案至关重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b894/11391440/91929456c5a6/ao4c03673_0001.jpg

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