Hung Mai Duc, Nga Nguyen Thi, Jung Hyeon Ji, Shin Yu-Jin, Lee Byoung-Cheun, Cho Hyeon Seo
College of Fisheries and Ocean Sciences, Chonnam National University, Yeosu 59626, Republic of Korea.
Big Data Fishery Resource Management Interdisciplinary Program, Chonnam National University, Yeosu 59626, Republic of Korea.
Sci Total Environ. 2025 Jun 1;979:179483. doi: 10.1016/j.scitotenv.2025.179483. Epub 2025 Apr 24.
The concentration of thirteen PFASs in water (n = 21), sediment (n = 21) and crucian carp fish muscle samples (n = 57) collected from three major rivers of Korea, including Namhan River, Yeongsan River and Nakdong River in June 2019 were determined to assess the potential risk of PFASs to aquatic life using bio-accumulation factor (BAF). The mean PFASs concentration in water (ng/L) were in order Nakdong River (69.63) > Yeongsan River (51.47) > Namhan River (13.30). The detection frequency rate of the long-chain PFASs, include PFHxA, PFOA and PFOS were high in river water samples. The PFASs in sediment samples were observed at low concentrations (<2 ng/g dw) in three rivers. The sediment/water partition coefficient (K) values of PFHpA were greatest in three rivers. The bioaccumulation factor (BAF) of PFHxA, PFUnDA and PFHpA were dominant in crucian carp fish samples. However, all the BAF levels for the carp samples were found to be <2000 (L/kg). Although the BAF values in crucian carp fish did not exceed the bioaccumulative level, several high long-chain PFASs concentrations were observed in water samples from surrounding hotspot sampling sites in Nakdong and Yeongsan River. Further study and monitoring of PFASs in various fish species and/or trophic level investigations are necessary to assess the impact of these pollutants on the river ecosystems.
2019年6月,从韩国的三条主要河流(包括南汉江、荣山江和洛东江)采集了水(n = 21)、沉积物(n = 21)和鲫鱼肌肉样本(n = 57),测定了其中13种全氟和多氟烷基物质(PFASs)的浓度,以利用生物累积因子(BAF)评估PFASs对水生生物的潜在风险。水中PFASs的平均浓度(ng/L)依次为洛东江(69.63)>荣山江(51.47)>南汉江(13.30)。长链PFASs(包括全氟己酸、全氟辛酸和全氟辛烷磺酸)在河水样本中的检出频率较高。在三条河流的沉积物样本中,PFASs的浓度较低(<2 ng/g干重)。全氟庚酸的沉积物/水分配系数(K)值在三条河流中最大。全氟己酸、全氟十一烷酸和全氟庚酸的生物累积因子(BAF)在鲫鱼样本中占主导地位。然而,发现所有鲤鱼样本的BAF水平均<2000(L/kg)。尽管鲫鱼的BAF值未超过生物累积水平,但在洛东江和荣山江周边热点采样点的水样中,观察到几种高浓度的长链PFASs。有必要对各种鱼类中的PFASs进行进一步研究和监测,和/或进行营养级调查,以评估这些污染物对河流生态系统的影响。