Department of Civil, Environmental and Ocean Engineering, Stevens Institute of Technology, Hoboken, NJ 07030, USA.
Department of Civil, Environmental and Ocean Engineering, Stevens Institute of Technology, Hoboken, NJ 07030, USA.
Bioresour Technol. 2022 Jan;344(Pt B):126223. doi: 10.1016/j.biortech.2021.126223. Epub 2021 Oct 28.
Per- and polyfluoroalkyl substances (PFAS) are a group of chemicals widely manufactured for industrial and commercial applications in the past decades due to their remarkable stability as well as hydrophobic and lipophobic nature. PFAS species have been recognized as emerging environmental contaminants of concern due to their toxicity and environmental persistence, thereby attracting intensive research seeking effective technologies for their removal from the environment. The objective of this review is to provide a thorough analysis of the biodegradation of PFAS in multiple environmental matrices and offer a future outlook. By discussing targeted PFAS species, degradation intermediates, degradation efficiencies, and microbial species, a comprehensive summary of the known microbial species and their degradation pathways are presented. The biodegradation pathways for different types of PFAS species are summarized in two major categories, biodegradation with and without the cleavage of C-F bond. Existing uncertainties and future research directions for PFAS biodegradation are provided.
全氟和多氟烷基物质(PFAS)是一组在过去几十年中由于其显著的稳定性以及疏水性和疏脂性而广泛用于工业和商业应用的化学物质。由于其毒性和环境持久性,PFAS 物种已被认为是新兴的环境关注污染物,因此吸引了大量研究寻求从环境中去除它们的有效技术。本综述的目的是对 PFAS 在多种环境基质中的生物降解进行全面分析,并提供未来展望。通过讨论靶向 PFAS 物种、降解中间体、降解效率和微生物物种,全面总结了已知的微生物物种及其降解途径。总结了不同类型 PFAS 物种的生物降解途径分为两大类,即 C-F 键断裂和不发生 C-F 键断裂的生物降解。提供了 PFAS 生物降解的现有不确定性和未来研究方向。