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选定鱼类物种中全氟和多氟烷基物质 (PFAS) 积累的驱动因素:河流连续体位置、鱼类饲料成分和污染物特性的影响。

The driving factors of per- and polyfluorinated alkyl substance (PFAS) accumulation in selected fish species: The influence of position in river continuum, fish feed composition, and pollutant properties.

机构信息

Institute of Microbiology of the Czech Academy of Sciences, Vídeňská 1083, CZ-142 20, Prague 4, Czech Republic.

Institute for Environmental Studies, Faculty of Science, Charles University, Benátská 2, CZ-128 01, Prague 2, Czech Republic.

出版信息

Sci Total Environ. 2022 Apr 10;816:151662. doi: 10.1016/j.scitotenv.2021.151662. Epub 2021 Nov 13.

Abstract

Per- and polyfluorinated alkyl substances (PFASs) represent a group of highly recalcitrant micropollutants, that continuously endanger the environment. The present work describes the geographical trends of fish contamination by individual PFASs (including new compounds, e.g., Gen-X) assessed by analyzing the muscle tissues of 5 separate freshwater fish species from 10 locations on the Czech section of the Elbe River and its largest tributary, the Vltava River. The data of this study also showed that the majority of the detected PFASs consisted of long-chain representatives (perfluorooctane sulfonate (PFOS), perfluorononanoic acid, perfluorodecanoic acid, and perfluoroundecanoic acid), whereas short-chain PFASs as well as other compounds such as Gen-X were detected in relatively small quantities. The maximum concentrations of the targeted 32 PFASs in fish were detected in the lower stretches of the Vltava and Elbe Rivers, reaching 289.9 ng/g dw, 140.5 ng/g dw, and 162.7 ng/g dw for chub, roach, and nase, respectively. Moreover, the relationships between the PFAS (PFOS) concentrations in fish muscle tissue and isotopic ratios (δN and δC) were studied to understand the effect of feed composition and position in the river continuum as a proxy for anthropogenic activity. Redundancy analysis and variation partitioning showed that the largest part of the data variability was explained by the interaction of position in the river continuum and δN (δC) of the fish. The PFAS concentrations increased downstream and were positively correlated with δN and negatively correlated with δC. A detailed study at one location also demonstrated the significant relationship between δN (estimated trophic position) and PFASs (PFOS) concentrations. From the tested physicochemical properties, the molecular mass and number of fluorine substituents seem to play crucial roles in PFAS bioaccumulation.

摘要

全氟和多氟烷基物质(PFASs)是一组高度持久的微污染物,持续威胁着环境。本研究描述了通过分析来自易北河及其最大支流伏尔塔瓦河的 10 个地点的 5 种不同淡水鱼类的肌肉组织,评估个别 PFASs(包括新化合物如 Gen-X)在鱼类中的地理分布趋势。本研究的数据还表明,大多数检测到的 PFASs 由长链代表物(全氟辛烷磺酸(PFOS)、全氟壬酸、全氟癸酸和全氟十一烷酸)组成,而短链 PFASs 以及 Gen-X 等其他化合物的含量则相对较低。在所研究的 32 种 PFASs 中,目标物在鱼类中的最大浓度出现在伏尔塔瓦河和易北河的下游,鳊鱼、圆腹雅罗鱼和河鲈肌肉组织中分别达到 289.9ng/g dw、140.5ng/g dw 和 162.7ng/g dw。此外,还研究了鱼类肌肉组织中 PFAS(PFOS)浓度与同位素比值(δN 和 δC)之间的关系,以了解饲料组成和河流连续统中的位置作为人为活动的替代指标的影响。冗余分析和变异分解表明,数据变异性的最大部分由河流连续统中的位置和鱼类的 δN(δC)的相互作用解释。PFASs 浓度随河流的下游而增加,与 δN 呈正相关,与 δC 呈负相关。在一个地点的详细研究还表明,δN(估计的营养级)和 PFASs(PFOS)浓度之间存在显著关系。在测试的物理化学性质中,分子量和氟取代基的数量似乎在 PFASs 的生物积累中起着关键作用。

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