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Challenges and Current Status of the Biological Treatment of PFAS-Contaminated Soils

机译:PFAS污染土壤生物治疗的挑战和现状

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摘要

Per- and polyfluoroalkyl substances (PFAS) are Synthetic Organic Compounds (SOCs) which are of current concern as they are linked to a myriad of adverse health effects in mammals. They can be found in drinking water, rivers, groundwater, wastewater, household dust, and soils. In this review, the current challenge and status of bioremediation of PFAs in soils was examined. While several technologies to remove PFAS from soil have been developed, including adsorption, filtration, thermal treatment, chemical oxidation/reduction and soil washing, these methods are expensive, impractical for in situ treatment, use high pressures and temperatures, with most resulting in toxic waste. Biodegradation has the potential to form the basis of a cost-effective, large scale in situ remediation strategy for PFAS removal from soils. Both fungal and bacterial strains have been isolated that are capable of degrading PFAS; however, to date, information regarding the mechanisms of degradation of PFAS is limited. Through the application of new technologies in microbial ecology, such as stable isotope probing, metagenomics, transcriptomics, and metabolomics there is the potential to examine and identify the biodegradation of PFAS, a process which will underpin the development of any robust PFAS bioremediation technology.
机译:Per-和多氟烷基物质(PFAS)是其是目前关注的,因为它们都与在哺乳动物不良健康影响无数合成有机化合物充电状态(SOC)。他们可以在饮用水,河流,地下水,废水,家庭灰尘,和土壤中找到。在这次审查中,目前的挑战和土壤非疫区生物修复的情况进行了检查。虽然几种技术从土壤已被开发,包括吸附,过滤,热处理,化学氧化/还原和土壤洗涤除去PFAS,这些方法是昂贵的,不切实际的就地处理,使用高压和高温,大部分产生有毒浪费。生物降解具有形成在原位修复策略具有成本效益,大规模从土壤PFAS去除基础的潜力。既真菌和细菌菌株已被分离,它们能够降解PFAS的;然而,迄今为止,关于非疫区降解的机制的信息是有限的。通过在微生物生态学中的新技术,如稳定同位素探测,宏基因组学,转录组和代谢的应用有检查,并确定PFAS的生物降解性的,这一过程将支持任何强大的生物修复PFAS技术的发展。

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