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Risks of Perfluoroalkyl and Polyfluoroalkyl Substances (PFAS) for Sustainable Water Recycling via Aquifers

机译:通过含水层的可持续水回收的全氟烷基和多氟烷基物质(PFAS)的风险

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The prediction of the fate of perfluoroalkyl and polyfluoroalkyl substances (PFAS) in water recycling with urban stormwater and treated wastewater is important since PFAS are widely used, persistent, and have potential impacts on human health and the environment. These alternative water sources have been utilized for water recycling via aquifers or managed aquifer recharge (MAR). However, the fate of these chemicals in MAR schemes and the potential impact in terms of regulation have not been studied. PFAS can potentially be transported long distances in the subsurface during MAR. This article reviews the potential risks to MAR systems using recycled water and urban stormwater. To date, there are insufficient data to determine if PFAS can be degraded by natural processes or retained in the aquifer and become suitable pre-treatment or post-treatment technologies that will need to be employed depending upon the end use of the recovered water. The use of engineered pre-treatment or post-treatment methods needs to be based on a ‘fit for purpose’ principle and carefully integrated with the proposed water end use to ensure that human and environmental health risks are appropriately managed.
机译:由于PFA被广泛使用,持续,对人类健康和环境产生潜在影响,对城市雨水和经过治疗废水的水循环水回收中的水烷基和聚氟烷基物质(PFA)的预测是重要的。这些替代水源已被用于通过含水层或管理含水层补给(MAR)的水循环。然而,尚未研究MAS方案中这些化学品的命运和调节方面的潜在影响。 PFA可以在Mar期间潜在地在地下进行长距离。本文审查了使用循环水和城市雨水的MAR系统的潜在风险。迄今为止,没有足够的数据来确定PFA是否可以通过天然过程降级或保留在含水层中,并成为需要采用的适当预处理或后处理技术,这取决于回收的水的最终使用。使用工程预处理或后处理方法需要基于“适合目的”原则,并小心地与所提出的水端用途集成,以确保适当管理人类和环境健康风险。

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