[Spatial Characteristics, Risk Assessment, and Source Analysis of Elements in Surface Sediments from the Baiyangdian Lake].
Jing-Zhong Wang, Zhuo Liu, Hao Wei, Yuhui Wu, Shuie Zhan, Chi Zhu, Yi-Miao Zhang
Abstract
Jing-Zhong Wang, Zhuo Liu, Hao Wei, Yuhui Wu, Shuie Zhan, Chi Zhu, Yi-Miao Zhang
Abstract
) was determined as Cd > Pb > Cu > Cr > Ni > Zn, whereby Cd was associated with a strong potential ecological risk (except in the Caiputai area) and other elements were associated with a slight potential ecological risk. Differences in the lake sediment texture were found to be slight. Non-point source pollution after rivers flow into the lake was determined as the main reason for the spatial variation of elements in the surface sediments of Baiyangdian Lake, although point source pollution in the villages surrounding the lake should not be ignored, especially with respect to N, P, Pb, and Cr.
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) was determined as Cd > Pb > Cu > Cr > Ni > Zn, whereby Cd was associated with a strong potential ecological risk (except in the Caiputai area) and other elements were associated with a slight potential ecological risk. Differences in the lake sediment texture were found to be slight. Non-point source pollution after rivers flow into the lake was determined as the main reason for the spatial variation of elements in the surface sediments of Baiyangdian Lake, although point source pollution in the villages surrounding the lake should not be ignored, especially with respect to N, P, Pb, and Cr.
Key concepts: Sediment, Pollution, Environmental science, Point source pollution, Spatial variability, Hydrology (agriculture), Environmental chemistry, Geology