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【期刊论文】Estimation of water renewal times for the middle and lower sections of the Yellow River
沈珍瑶
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-1年11月30日
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沈珍瑶
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-1年11月30日
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沈珍瑶
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-1年11月30日
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沈珍瑶, YingWanga, b, Zhenyao Shena, ∗, Junfeng Niua, Ruimin Liua
Journal of Hazardous Materials 162(2009)92-98,-0001,():
-1年11月30日
The adsorption of phosphorus (P) on four sediment samples (CunTan, XiaoJiang, DaNing and XiangXi) from the Three-Gorges Reservoir on the Yangtze River in Chinawas studied systematically in batch experiments. A sequential chemical extraction experiment was conducted to clarify the effect of sediment composition on P adsorption. The results showed that P adsorption on four sediment samples mainly occurred within 6h. P adsorption kinetics can be satisfactorily fitted by both power function and simple Elovich model. A modified Langmuir model may describe well the P adsorption on all the samples in our study. Theoretically, the maximum adsorption amount (Qmax) was 0.402mg-P/g for XiaoJiang sediment, 0.358mg-P/g for DaNing sediment, 0.165mg-P/g for CunTan sediment, and 0.15 mg-P/g for XiangXi sediment. The sediment compositions such as organic matter, metal hydroxides, calcium and clay content showed influences on the P adsorption. Wherein, organic matter and metal hydroxideswere the main factors affecting the P adsorption. The maximum P adsorption capacity (Qmax) enhanced with the increase of the content of (Fe+Al+Ca). Compared the zero-equilibrium P concentration (EPC0) values obtained by the modified Langmuir models with actual P concentrations in water, all the sediments studied in this paper except for XiaoJiang showed a trend of releasing P as a source role, which could enhance the risk of eutrophication occurrence in the Three-Gorges Reservoir.
Phosphorus, Adsorption, Sediments, Three-Gorges Reservoir
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