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受水成膜泡沫灭火剂影响的沥青中全氟和多氟烷基物质的分布与释放:与混凝土相比情况如何?

Distribution and release of PFAS from AFFF-impacted asphalt: How does it compare to concrete?

作者信息

Li Yijing, Key Trent A, Vo Phong H N, Porman Scott, Thapalia Anita, McDonough Jeffrey T, Fiorenza Stephanie, Barnes Craig M, Mueller Jochen F, Thai Phong K

机构信息

Queensland Alliance for Environmental Health Sciences (QAEHS), The University of Queensland, QLD 4102, Australia.

ExxonMobil Biomedical Sciences Inc., Spring, TX 77389, USA.

出版信息

J Hazard Mater. 2024 Mar 15;466:133627. doi: 10.1016/j.jhazmat.2024.133627. Epub 2024 Jan 26.

Abstract

Aqueous film forming foam (AFFF)-impacted asphalt and concrete may serve as potential secondary sources of per- and polyfluoroalkyl substances (PFAS) to the environment through surficial leaching. We aimed to understand the vertical distribution and surficial release of PFAS from AFFF-impacted asphalt and concrete cores collected from various locations (∼10-70 m distance between samples). Among the PFAS analyzed, 6:2 FTS was observed as having the highest concentration in the surface layer (0 - 0.5 cm) of concrete (225 µg kg) and in the runoff from the concrete (2600 ng L). PFOS was detected at the highest concentration in the surface layer (0 - 0.5 cm) of asphalt (47 µg kg) and associated runoff (780 ng L). The total mass of PFAS released during three rainfall simulations accounts for a fraction of the total mass in the surface layer (0 - 0.5 cm), ranging from 0.10 - 9.8% and 0.078 - 2.4% for asphalt and concrete cores, respectively. Asphalt exhibited a higher release rate than concrete, demonstrated by the higher total release coefficient of PFAS (4 - 16 m) compared to that of concrete cores (1 - 5 m). These results suggested that, similar to concrete, AFFF-impacted asphalt may be a secondary source of PFAS to the environment.

摘要

受水成膜泡沫(AFFF)影响的沥青和混凝土可能通过表面淋溶成为全氟和多氟烷基物质(PFAS)向环境释放的潜在二次源。我们旨在了解从不同地点采集的受AFFF影响的沥青和混凝土芯样中PFAS的垂直分布和表面释放情况(样品之间距离约10 - 70米)。在所分析的PFAS中,6:2 FTS在混凝土表层(0 - 0.5厘米)浓度最高(225微克/千克),在混凝土径流中浓度为(2600纳克/升)。全氟辛烷磺酸在沥青表层(0 - 0.5厘米)浓度最高(47微克/千克),在相关径流中为(780纳克/升)。三次降雨模拟期间释放的PFAS总量占表层(0 - 0.5厘米)总量的一定比例,沥青芯样和混凝土芯样分别为0.10 - 9.8%和0.078 - 2.4%。沥青的释放速率高于混凝土,PFAS的总释放系数(4 - 16米)高于混凝土芯样(1 - 5米)即证明了这一点。这些结果表明,与混凝土类似,受AFFF影响的沥青可能是环境中PFAS的二次源。

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