Molecular EXposomics (MEX), Helmholtz Zentrum München-German Research Center for Environmental Health (GmbH), Ingolstädter Landstr.1, 85764, Neuherberg, Germany,
Environ Sci Pollut Res Int. 2013 Oct;20(10):7071-9. doi: 10.1007/s11356-012-1427-6. Epub 2012 Dec 30.
Bioavailable concentrations of polycyclic aromatic hydrocarbons (PAHs) were investigated in water of Three Gorges Reservoir (TGR) using semipermeable membrane devices during the period of completely impounding water. ∑PAH concentrations in water of TGR in the period of completely impounding water were 15-381 ng L(-1). ∑PAH concentrations increased from town or counties to big industrialized cities in TGR, indicating urbanization effects on PAH pollution in the water. Tributaries in TGR have a certain contribution of PAH pollution to the mainstream of Yangtze River and their pollution could not be neglected. An obvious decrease of PAH concentration was observed after 175-m water impounding in 2011 in TGR. Several factors may account for this decrease, including execution of comprehensive treatment and management measures in TGR, less rainfall in 2011, and sedimentation effect caused by the dam. Passive sampling method has been successfully applied in the investigation of trace PAH in water of TGR and proved to be a useful and efficient tool for the management and sustainable development of the big reservoir. The results of the study provide valuable information about PAH pollution in the whole reservoir including some tributaries, and the pollution status is dynamically related with human activities. Therefore, PAH could be used as a marker compound or indicator in the network monitoring system to surveil and trace the pollution status in TGR.
采用半透膜装置在三峡水库完全蓄水期间对水体中的多环芳烃(PAHs)进行了研究。完全蓄水期间,三峡水库水中∑PAH 浓度为 15-381ng/L。∑PAH 浓度从三峡的城镇或县城向大工业城市递增,表明城市化对水体中 PAH 污染的影响。三峡的支流对长江主流的 PAH 污染有一定的贡献,不容忽视。2011 年三峡水库蓄水 175 米后,PAH 浓度明显下降。造成这种下降的原因可能包括三峡实施了综合处理和管理措施、2011 年降雨量较少以及大坝造成的泥沙淤积效应。被动采样方法已成功应用于三峡水库痕量 PAH 的调查,被证明是管理和可持续发展大型水库的一种有用且高效的工具。该研究结果为整个水库(包括一些支流)的 PAH 污染提供了有价值的信息,其污染状况与人类活动密切相关。因此,PAH 可作为网络监测系统中的标记化合物或指示物,用于监测和跟踪三峡水库的污染状况。