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Effect-based monitoring of the Danube River using mobile passive sampling

机译:基于移动无源采样的多瑙河基于效果的监测

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Many aquatic pollutants can be present at low concentrations, but their mixtures can still affect health or behavior of exposed organisms. In this study, toxicological and chemical analyses were combined for spatial contamination profiling using an innovative passive sampling approach. A novel Dynamic Passive Sampler (DPS) was employed as a mobile sampler from a ship cruising along 2130 km of the Danube river during the Joint Danube Survey 3 (JDS3). The sampling was performed in eight subsequent river stretches with two types of complementary passive samplers: silicone rubber sheets (SR) used for non-polar chemicals and SDB-RPS Empore T disks (ED) formore hydrophilic compounds. Besides extensive chemical analyses, the bioactivity of samples was characterized by a battery of reporter gene bioassays. Cross-calibration of the employed passive samplers enabled robust estimation of water concentrations applicable for compounds with a wide range of physicochemical properties. DPS was suitable for sampling of water contaminants even at pg L-1 levels, with 209 of 267 analyzed compounds detected in the samples. Biological effects were detected in both ED and SR extracts across all river stretches by bioassays focused on xenobiotic metabolism mediated by the aryl hydrocarbon and pregnane X receptors, endocrine disruptive potential mediated by estrogen and androgen receptors and the oxidative stress response. The bioassay responses expressed as bioanalytical equivalent concentrations (BEQbio) were comparable with data obtained from large volume active sampling. The extracts of the ED samplers were more biologically active than extracts of SR samplers. Except of estrogenicity, where the analyzed chemicals explained on average 62% of the effects in ED samples, the detected chemicals explained <8% of BEQ(bio) values. The study shows the utility of the combination of the innovative passive sampling approach with effect-based tools for efficient and fast monitoring even in water bodies with relatively low levels of contamination. (C) 2018 Elsevier B.V.All rights reserved.
机译:许多水污染物的浓度很低,但它们的混合物仍会影响裸露生物的健康或行为。在这项研究中,使用创新的被动采样方法将毒理学和化学分析相结合,以进行空间污染分析。在联合多瑙河调查3(JDS3)期间,一种新颖的动态无源采样器(DPS)被用作在多瑙河2130公里处巡航的一艘船上的移动采样器。采样是在随后的八个河流带进行的,采样时使用两种类型的互补无源采样器:用于非极性化学品的硅橡胶片(SR)和用于更多亲水性化合物的SDB-RPS Empore T盘(ED)。除了广泛的化学分析外,还通过一系列报告基因生物测定来表征样品的生物活性。所用无源采样器的交叉校准可以对适用于具有广泛理化特性的化合物的水浓度进行可靠的估算。 DPS甚至适用于pg L-1水平的水污染物采样,在样品中检测到267种分析化合物中的209种。通过生物测定,在所有河流段的ED和SR提取物中均检测到生物效应,该生物测定的重点是芳烃和孕烷X受体介导的异种生物代谢,雌激素和雄激素受体介导的内分泌破坏潜力以及氧化应激反应。表示为生物分析当量浓度(BEQbio)的生物测定响应与从大量主动采样获得的数据相当。 ED采样器的提取物比SR采样器的提取物更具生物活性。除雌激素性外,所分析的化学物质解释了ED样品中平均62%的效应,而所检测的化学物质解释了BEQ(bio)值的<8%。研究表明,创新的被动采样方法与基于效果的工具相结合,即使在污染水平相对较低的水体中也能高效,快速地进行监控。 (C)2018 Elsevier B.V.保留所有权利。

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