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Utilizing water characteristics and sediment nitrogen isotopic features to identify non-point nitrogen pollution sources at watershed scale in Liaoning Province, China

机译:利用水特征和沉积物氮同位素特征识别辽宁省流域尺度的面源性氮污染源

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摘要

Identifying nitrogen (N) pollution sources is the fundamental work of non-point source pollution load reduction from watersheds, but is hard due to complex N transport and transformation within spatially heterogenized huge areas. During September 2011, we measured water characteristics and sediment N stable isotope in four tributaries of the upper reach of the Hun River, an important water source of the Dahuofang Reservoir, a large drinking water source in Northeast China. Results showed that spatial changes in SO42- and Cl- contents in the tributaries were consisted with the changes in density of the population living along the tributaries. Sediment delta N-15 from all tributaries showed a downstream increasing trend in line with the land use change, which is characterized as more farmlands and more people around the outlet area of each tributary. Principal component analysis indicated the population density had a strong impact on N in these tributaries in the low-flow period. Tributaries and villages close to the Dahuofang Reservoir should be the major N load control objects in reduction of non-point source nitrogen load from the upper reach of the Hun River.
机译:识别氮(N)污染源是减少流域非点源污染负荷的基础工作,但是由于空间异质巨大区域内复杂的氮运输和转化,很难做到这一点。 2011年9月,我们测量了浑河上游四个支流的水质和沉积物N稳定同位素,浑河是中国东北部大型饮用水源大伙房水库的重要水源。结果表明,支流中SO42-和Cl-含量的空间变化与支流沿岸人口密度的变化有关。所有支流的沉积物三角洲N-15呈下游增加趋势,与土地利用变化相一致,其特征是每个支流出口区域周围的农田和人口更多。主成分分析表明,在低流量时期,人口密度对这些支流中的氮有很大影响。大伙房水库附近的支流和村庄应作为主要的氮负荷控制对象,以减少浑河上游非点源氮负荷。

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