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量化穿过混凝土垫板的全氟和多氟烷基物质的变异性和穿透性。

Quantification of the variability and penetration of per- and poly-fluoroalkyl substances through a concrete pad.

机构信息

CSIRO Environment, Industry Environments Program, Waite Campus, Waite Road, Urrbrae, SA, 5064, Australia.

CSIRO Environment, Industry Environments Program, Centre for Environment and Life Sciences, Private Bag 5, Wembley, WA, 6913, Australia; School of Molecular and Life Sciences, Curtin University, Kent St Bentley, WA, 6102, Australia.

出版信息

Chemosphere. 2023 Aug;333:138903. doi: 10.1016/j.chemosphere.2023.138903. Epub 2023 May 13.

Abstract

Historical use of aqueous film forming foams (AFFF) containing per- and poly-fluoroalkyl substances (PFAS) for fire-fighting activities has contributed to widespread contamination of infrastructure which can represent an ongoing source of PFAS to the surrounding environment. A concrete fire training pad with historical use of Ansulite and Lightwater AFFF formulations had PFAS concentrations measured to quantify spatial variability of PFAS within the pad. Surface chips and whole cores of concrete through to the underlying aggregate base were collected over the 24 × 9 m concrete pad and depth profiles of PFAS concentrations in nine cores were analysed. PFOS and PFHxS dominated the PFAS for surface samples, along the depth profile of cores and in the underlying plastic and aggregate material, with substantial variability in the concentrations of PFAS in the samples. Although there was variability of individual PFAS along the depth profile, higher surface concentrations of PFAS generally followed the designed movement of water across the pad. Total oxidisable precursor (TOP) assessments of one core indicated additional PFAS were present along the entire length of the core. This study highlights concentrations of PFAS (up to low μg/kg) from historical use of AFFF can occur throughout concrete, with the variable concentrations throughout the profile.

摘要

历史上用于消防活动的含有全氟和多氟烷基物质 (PFAS) 的水成膜泡沫 (AFFF) 导致基础设施广泛受到污染,这可能成为周围环境中 PFAS 的持续来源。一个具有 Ansulite 和 Lightwater AFFF 配方历史用途的混凝土消防训练垫进行了 PFAS 浓度测量,以量化垫内 PFAS 的空间变异性。在 24×9 米的混凝土垫上收集了混凝土表面碎屑和整个芯样以及下面的骨料基础,并分析了九个芯样中 PFAS 浓度的深度分布。表面样品、芯样的深度分布以及下面的塑料和骨料材料中,PFOS 和 PFHxS 主导着 PFAS,样品中 PFAS 的浓度存在很大的可变性。尽管沿深度剖面个别 PFAS 的变化,但 PFAS 的表面浓度通常遵循水在垫上的设计运动。一个芯样的总可氧化前体 (TOP) 评估表明,整个芯样长度上都存在额外的 PFAS。本研究强调了历史上使用 AFFF 会导致 PFAS 浓度(高达低μg/kg)出现在整个混凝土中,且整个剖面的浓度存在变化。

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