全氟辛酸光催化材料应用及降解机理研究进展

Research progress in the application and degradation mechanism of perfluorooctanoic acid photocatalytic materials

  • 摘要: 全氟辛酸(PFOA)是一种广泛存在于环境介质中的典型全氟化合物,具有高毒性、难降解等特点,严重威胁生态环境安全及人类遗传、免疫、神经和生殖健康,其环境危害和风险防控引起广泛关注。光催化技术具有反应条件温和、处理效率高、应用成本低且无二次污染等优势,在PFOA的降解处理方面具有广阔应用前景。为研发活性强、可见光吸收性能好、稳定性高的新型光催化材料,实现水中PFOA的高效降解,系统梳理了近20年来PFOA光催化降解材料制备的相关研究,对不同光催化降解材料的降解特性及存在问题进行全面分析;结合现有材料对PFOA的光催化降解,总结光催化降解材料的反应机理及活性增强机制,阐明PFOA的光催化降解路径。

     

    Abstract: Perfluorooctanoic acid (PFOA) is a typical perfluorinated compound widely existing in the environment. It is highly toxic and difficult to degrade, which seriously threatens eco-environmental safety and human genetic, immune, neurological and reproductive health. Hence, considerable attention has been drawn to its environmental hazard and risk prevention and control. With mild conditions, high treatment efficiency, low application cost, free secondary pollution and other advantages, photocatalytic technology has a broad application prospect in the field of PFOA degradation. In order to develop new photocatalytic materials with strong activity, good visible light absorption performance, and high stability, and achieve efficient degradation of PFOA in water, research progress in the preparation of photocatalytic degradation materials of PFOA in the past twenty years was systematically reviewed. The degradation characteristics and existing problems of different photocatalytic degradation materials were comprehensively analyzed. The reaction mechanism and activity enhancement mechanism of photocatalytic degradation materials were summarized, combined with the existing materials of photocatalytic degradation of PFOA, and eventually the photocatalytic degradation pathway of PFOA was clarified.

     

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