Diffuse nutrient losses and the impact factors determining their regional differences in four catchments from North to South China

•Diffuse nutrient losses are well captured by integrated water system model.•Regional differences and impact factors are identified by ANOSIM and RDA.•Nutrient losses show quite regional differences between South and North China.•Critical impact factors are geography, followed by land-use, carriers...

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Published inJournal of hydrology (Amsterdam) Vol. 543; pp. 577 - 594
Main Authors Zhang, Yongyong, Zhou, Yujian, Shao, Quanxi, Liu, Hongbin, Lei, Qiuliang, Zhai, Xiaoyan, Wang, Xuelei
Format Journal Article
LanguageEnglish
Published Elsevier B.V 01.12.2016
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Summary:•Diffuse nutrient losses are well captured by integrated water system model.•Regional differences and impact factors are identified by ANOSIM and RDA.•Nutrient losses show quite regional differences between South and North China.•Critical impact factors are geography, followed by land-use, carriers and climate. Diffuse nutrient loss mechanism is complicated and shows remarkably regional differences due to spatial heterogeneities of underlying surface conditions, climate and agricultural practices. Moreover, current available observations are still hard to support the identification of impact factors due to different time or space steps. In this study, an integrated water system model (HEQM) was adopted to obtain the simulated loads of diffuse components (carriers: runoff and sediment; nutrient: total nitrogen (TN) and total phosphorous (TP)) with synchronous scales. Multivariable statistical analysis approaches (Analysis of Similarity and redundancy analysis) were used to assess the regional differences, and to identify impact factors as well as their contributions. Four catchments were selected as our study areas, i.e., Xiahui and Zhangjiafen Catchments of Miyun Basin in North China, Yuliang and Tunxi Catchments of Xin’anjiang Basin in South China. Results showed that the model performances of monthly processes were very good for runoff and good for sediment, TN and TP. The annual average coefficients of all the diffuse components in Xin’anjiang Basin were much greater than those in Miyun Basin, and showed significantly regional differences. All the selected impact factors interpreted 72.87–82.16% of the regional differences of carriers, and 62.72–71.62% of those of nutrient coefficients, respectively. For individual impact factor categories, the critical category was geography, followed by land-use/cover, carriers, climate, as well as soil and agricultural practices in Miyun Basin, or agricultural practices and soil in Xin’anjiang Basin. For individual factors, the critical factors were locations for the carrier regional differences, and carriers or chemical fertilizer for the nutrient regional differences. This study is expected to promote further applications of integrated water system model and multivariable statistical analysis in the diffuse nutrient studies, and provide a scientific support for the diffuse pollution control and management in China.
ISSN:0022-1694
1879-2707
DOI:10.1016/j.jhydrol.2016.10.031