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阐明全氟辛酸和全氟辛烷磺酸在各种环境基质中的降解机制:绿色降解途径综述。

Elucidating the degradation mechanisms of perfluorooctanoic acid and perfluorooctane sulfonate in various environmental matrices: a review of green degradation pathways.

机构信息

Faculty of Life Science and Technology, Kunming University of Science and Technology, Kunming, 650500, China.

Key Laboratory of Sustainable Utilization of Panax Notoginseng Resources of Yunnan Province, Kunming, 650500, Yunnan, China.

出版信息

Environ Geochem Health. 2024 Jul 29;46(9):349. doi: 10.1007/s10653-024-02134-9.

Abstract

Given environmental persistence, potential for bioaccumulation, and toxicity of Perfluorooctanoic acid (PFOA) and perfluorooctane sulfonate (PFOS), the scientific community has increasingly focused on researching their toxicology and degradation methods. This paper presents a survey of recent research advances in the toxicological effects and degradation methods of PFOA and PFOS. Their adverse effects on the liver, nervous system, male reproductive system, genetics, and development are detailed. Additionally, the degradation techniques of PFOA and PFOS, including photochemical, photocatalytic, and electrochemical methods, are analyzed and compared, highlighted the potential of these technologies for environmental remediation. The biotransformation pathways and mechanisms of PFOA and PFOS involving microorganisms, plants, and enzymes are also presented. As the primary green degradation pathway for PFOA and PFOS, Biodegradation uses specific microorganisms, plants or enzymes to remove PFOA and PFOS from the environment through redox reactions, enzyme catalysis and other pathways. Currently, there has been a paucity of research conducted on the biodegradation of PFOA and PFOS. However, this degradation technology is promising owing to its specificity, cost-effectiveness, and ease of implementation. Furthermore, novel materials/methods for PFOA and PFOS degradation are presented in this paper. These novel materials/methods effectively improve the degradation efficiency of PFOA and PFOS and provide new ideas and tools for the degradation of PFOA and PFOS. This information can assist researchers in identifying flaws and gaps in the field, which can facilitate the formulation of innovative research ideas.

摘要

鉴于全氟辛酸(PFOA)和全氟辛烷磺酸(PFOS)在环境中的持久性、生物蓄积潜力和毒性,科学界越来越关注它们的毒理学和降解方法的研究。本文综述了 PFOA 和 PFOS 的毒理学效应和降解方法的最新研究进展。详细介绍了它们对肝脏、神经系统、男性生殖系统、遗传和发育的不良影响。此外,还分析和比较了 PFOA 和 PFOS 的降解技术,包括光化学、光催化和电化学方法,强调了这些技术在环境修复方面的潜力。还介绍了 PFOA 和 PFOS 的微生物、植物和酶的生物转化途径和机制。作为 PFOA 和 PFOS 的主要绿色降解途径,生物降解利用特定的微生物、植物或酶通过氧化还原反应、酶催化和其他途径从环境中去除 PFOA 和 PFOS。目前,关于 PFOA 和 PFOS 的生物降解研究还很少。然而,由于其特异性、成本效益和易于实施,这种降解技术很有前景。此外,本文还介绍了用于 PFOA 和 PFOS 降解的新型材料/方法。这些新型材料/方法有效地提高了 PFOA 和 PFOS 的降解效率,为 PFOA 和 PFOS 的降解提供了新的思路和工具。这些信息可以帮助研究人员发现该领域的缺陷和差距,从而促进创新研究思路的制定。

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