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Degradation and Removal Methods for Perfluoroalkyl and Polyfluoroalkyl Substances in Water

机译:水中全氟烷基和多氟烷基物质的降解和去除方法

摘要

Several perfluoroalkyl and polyfluoroalkyl substances (PFASs) have been identified as chemicals of concern in the environment due to their persistence, global ubiquity, and classification as reproductive and developmental toxicants, endocrine disrupters, and possible carcinogens. Multiple PFASs are often found together in the environment due to product manufacturing methods and abiotic and biotic transformations. Treatment methods are needed to effectively sequester or destroy a variety of PFASs from groundwater, drinking water, and wastewater. This review presents a comprehensive summary of several categories of treatment approaches: (1) sorption using activated carbon, ion exchange, or other sorbents, (2) advanced oxidation processes, including electrochemical oxidation, photolysis, and photocatalysis, (3) advanced reduction processes using aqueous iodide or dithionite and sulfite, (4) thermal and nonthermal destruction, including incineration, sonochemical degradation, sub- or supercritical treatment, microwave-hydrothermal treatment, and high-voltage electric discharge, (5) microbial treatment, and (6) other treatment processes, including ozonation under alkaline conditions, permanganate oxidation, vitamin-B_(12) and Ti(III) citrate reductive defluorination, and ball milling. Discussion of each treatment technology, including background, mechanisms, advances, and effectiveness, will inform the development of cost-effective PFAS remediation strategies based on environmental parameters and applicable methodologies. Further optimization of current technologies to analyze and remove or destroy PFASs below regulatory guidelines is needed. Due to the stability of PFASs, a combination of multiple treatment technologies will likely be required to effectively address real-world complexities of PFAS mixtures and cocontaminants present in environmental matrices.
机译:几种全氟烷基和多氟烷基物质(PFAS)由于其持久性,全球普遍性以及分类为生殖和发育毒性物质,内分泌干扰物和可能的致癌物,已被确定为环境中关注的化学物质。由于产品制造方法以及非生物和生物转化,通常在环境中一起发现多种PFAS。需要一种处理方法,以有效地隔离或破坏地下水,饮用水和废水中的各种PFAS。这篇综述对几种处理方法进行了全面总结:(1)使用活性炭,离子交换或其他吸附剂进行吸附;(2)先进的氧化过程,包括电化学氧化,光解和光催化;(3)先进的还原过程使用碘化物或连二亚硫酸盐和亚硫酸盐水溶液,(4)热和非热破坏,包括焚化,声化学降解,亚临界或超临界处理,微波水热处理和高压放电,(5)微生物处理,以及(6)其他处理工艺包括在碱性条件下的臭氧氧化,高锰酸盐氧化,维生素B_(12)和柠檬酸钛(III)还原性脱氟以及球磨。对每种处理技术的讨论,包括背景,机理,进展和有效性,将为根据环境参数和适用方法论开发具有成本效益的PFAS修复策略提供参考。需要对现有技术进行进一步优化,以按照监管准则分析,去除或销毁PFAS。由于PFAS的稳定性,可能需要多种处理技术的组合才能有效解决环境基质中存在的PFAS混合物和共污染物的现实世界复杂性。

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