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含氟聚合物作为独特且不可替代的材料:这些特定全氟或多氟烷基物质面临的挑战与未来趋势

Fluoropolymers as Unique and Irreplaceable Materials: Challenges and Future Trends in These Specific Per or Poly-Fluoroalkyl Substances.

作者信息

Améduri Bruno

机构信息

Institute Charles Gerhardt, University Montpellier, CNRS, ENSCM, 34293 Montpellier, France.

出版信息

Molecules. 2023 Nov 13;28(22):7564. doi: 10.3390/molecules28227564.

Abstract

In contrast to some low-molar-mass per- and polyfluoroalkyl substances (PFASs), which are well established to be toxic, persistent, bioaccumulative, and mobile, fluoropolymers (FPs) are water-insoluble, safe, bioinert, and durable. These niche high-performance polymers fulfil the 13 polymer-of-low-concern (PLC) criteria in their recommended conditions of use. In addition, more recent innovations (e.g., the use of non-fluorinated surfactants in aqueous radical (co)polymerization of fluoroalkenes) from industrial manufacturers of FPs are highlighted. This review also aims to show how these specialty polymers endowed with outstanding properties are essential (even irreplaceable, since hydrocarbon polymer alternatives used in similar conditions fail) for our daily life (electronics, energy, optics, internet of things, transportation, etc.) and constitute a special family from other "conventional" C-C PFASs found everywhere on Earth and its oceans. Furthermore, some information reports on their recycling (e.g., the unzipping depolymerization of polytetrafluoroethylene, PTFE, into TFE), end-of-life FPs, and their risk assessment, circular economy, and regulations. Various studies are devoted to environments involving FPs, though they present a niche volume (with a yearly production of 330,300 t) compared to all plastics (with 460 million t). Complementary to other reviews on PFASs, which lack of such above data, this review presents both fundamental and applied strategies as evidenced by major FP producers.

摘要

与某些已被充分证实具有毒性、持久性、生物累积性和流动性的低摩尔质量全氟和多氟烷基物质(PFAS)不同,含氟聚合物(FP)不溶于水、安全、具有生物惰性且耐用。这些特殊的高性能聚合物在其推荐使用条件下符合13项低关注聚合物(PLC)标准。此外,还强调了含氟聚合物工业制造商的一些最新创新(例如,在氟烯烃的水相自由基(共)聚合中使用非氟化表面活性剂)。本综述还旨在展示这些具有卓越性能的特殊聚合物如何对我们的日常生活(电子、能源、光学、物联网、交通等)至关重要(甚至不可替代,因为在类似条件下使用的碳氢聚合物替代品无法满足要求),并与地球上及其海洋中随处可见的其他“传统”碳 - 碳PFAS构成一个特殊的类别。此外,还介绍了一些关于它们回收利用(例如,聚四氟乙烯(PTFE)解聚为四氟乙烯(TFE))、含氟聚合物的寿命终结以及它们的风险评估、循环经济和法规的信息报告。尽管与所有塑料(年产量4.6亿吨)相比,涉及含氟聚合物的环境所占份额较小(年产量33.03万吨),但仍有各种研究致力于此。与其他缺乏上述数据的PFAS综述互补,本综述展示了主要含氟聚合物生产商所证实的基础和应用策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/de12/10675016/578009b25617/molecules-28-07564-sch001.jpg

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