首页> 美国卫生研究院文献>International Journal of Environmental Research and Public Health >Spatial Distribution and Environmental Significance of Phosphorus Fractions in River Sediments and Its Influencing Factor from Hongze and Tiaoxi Watersheds Eastern China
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Spatial Distribution and Environmental Significance of Phosphorus Fractions in River Sediments and Its Influencing Factor from Hongze and Tiaoxi Watersheds Eastern China

机译:河流沉积物中磷馏分的空间分布及环境意义及其洪泽和泰佐流域东部地区的影响因素

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摘要

This study explored the spatial distribution of phosphorus fractions in river sediments and analyzed the relationship between different phosphorus fractions and their environmental influence on the sediments within different watersheds in Eastern China. River sediments from two inflow watersheds (Hongze and Tiaoxi) to Hongze and Taihu Lake in Eastern China were analyzed by the sequential extraction procedure. Five fractions of sedimentary phosphorus, including freely sorbed phosphorus (NH Cl-P), redox-sensitive phosphorus (BD-P), bound phosphorus metal oxide (NaOH-P), bound phosphorus calcium (HCl-P), and residual phosphorus (Res-P) were all analyzed. The orders of rankings for the P fractions of the rivers Anhe and Suihe were HCl-P > NaOH-P > BD-P > NH Cl-P and HCl-P > BD-P > NaOH-P > NH Cl-P, respectively. For the rank order of the Hongze watershed, HCl-P was higher while the NH Cl-P contents were significantly lower. The rank order for the Dongtiaoxi River was NaOH-P > HCl-P > BD-P > NH Cl-P, and that of Xitiaoxi River was NaOH-P > BD-P > HCl-P > NH Cl-P. Compared with the phosphorus forms of the Tiaoxi watershed, NaOH-P contents were significantly higher compared to HCl-P, which was significantly higher in the Hongze watershed. In comparison, NH Cl-P contents were significantly lower in both. Variations may be attributed to differential discharge of the P form in the watershed due to land-use changes and urban river ambient conditions.
机译:本研究探讨了河流沉积物中磷馏分的空间分布,并分析了中国东部不同水域内不同水分与环境影响的关系。通过顺序提取程序分析了两次流入水域(洪泽和泰西)到洪泽和太湖湖的河流沉积物。五部分沉积磷,包括自由吸附的磷(NH CL-P),氧化氢敏感性磷(BD-P),结合磷金属氧化物(NaOH-P),结合磷钙(HCl-P)和残留磷( res-p)都分析。河流和Suihe的P级分的排名顺序为HCl-P> NaOH-P> Bd-P> NH C1-P> Bd-P> NaOH-P> NH Cl-P 。对于洪泽流域的等级顺序,HCl-P更高,而NH Cl-P含量显着降低。 Dongtiaoxi河的等级顺序是NaOH-P> HCl-P> Bd-P> NH Cl-P,Xitiaoxi河的NoH-P> Bd-P> HCl-P> NH Cl-P。与Tiaoxi流域的磷形式相比,与HCl-P相比,NaOH-P含量显着高,在洪泽流域中显着较高。相比之下,两者都有NH CL-P含量显着降低。由于土地利用变化和城市河流环境条件,变化可能归因于流域中的P形式的差分排出。

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