Arid
DOI10.1016/j.watres.2011.02.011
Assessment of global nitrogen pollution in rivers using an integrated biogeochemical modeling framework
He, Bin1,2; Kanae, Shinjiro3; Oki, Taikan4; Hirabayashi, Yukiko5; Yamashiki, Yosuke2; Takara, Kaoru2
通讯作者He, Bin
来源期刊WATER RESEARCH
ISSN0043-1354
出版年2011
卷号45期号:8页码:2573-2586
英文摘要

This study has analyzed the global nitrogen loading of rivers resulting from atmospheric deposition, direct discharge, and nitrogenous compounds generated by residential, industrial, and agricultural sources. Fertilizer use, population distribution, land cover, and social census data were used in this study. A terrestrial nitrogen cycle model with a 24-h time step and 0.5 degrees spatial resolution was developed to estimate nitrogen leaching from soil layers in farmlands, grasslands, and natural lands. The N-cycle in this model includes the major processes of nitrogen fixation, nitrification, denitrification, immobilization, mineralization, leaching, and nitrogen absorption by vegetation. The previously developed Total Runoff Integrating Pathways network was used to analyze nitrogen transport from natural and anthropogenic sources through river channels, as well as the collecting and routing of nitrogen to river mouths by runoff. Model performance was evaluated through nutrient data measured at 61 locations in several major world river basins. The dissolved inorganic nitrogen concentrations calculated by the model agreed well with the observed data and demonstrate the reliability of the proposed model. The results indicate that nitrogen loading in most global rivers is proportional to the size of the river basin. Reduced nitrate leaching was predicted for basins with low population density, such as those at high latitudes or in arid regions. Nitrate concentration becomes especially high in tropical humid river basins, densely populated basins, and basins with extensive agricultural activity. On a global scale, agriculture has a significant impact on the distribution of nitrogenous compound pollution. The map of nitrate distribution indicates that serious nitrogen pollution (nitrate concentration: 10-50 mg N/L) has occurred in areas with significant agricultural activities and small precipitation surpluses. Analysis of the model uncertainty also suggests that the nitrate export in most rivers is sensitive to the amount of nitrogen leaching from agricultural lands. (C) 2011 Elsevier Ltd. All rights reserved.


英文关键词Global rivers Water quality Nitrogen pollution load Terrestrial ecosystem Anthropogenic sources
类型Article
语种英语
国家Japan
收录类别SCI-E
WOS记录号WOS:000289968000013
WOS关键词OCEAN-ATMOSPHERE MODEL ; LAND-SURFACE ; COASTAL ZONE ; RIVERSTRAHLER MODEL ; TRANSIENT-RESPONSES ; SPATIALLY EXPLICIT ; INORGANIC NITROGEN ; GRADUAL CHANGES ; WATER ; NITRATE
WOS类目Engineering, Environmental ; Environmental Sciences ; Water Resources
WOS研究方向Engineering ; Environmental Sciences & Ecology ; Water Resources
资源类型期刊论文
条目标识符http://119.78.100.177/qdio/handle/2XILL650/170793
作者单位1.Kyoto Univ, Ctr Promot Interdisciplinary Educ & Res, Educ Unit Adaptat & Resilience Sustainable Soc, Kyoto, Japan;
2.Kyoto Univ, DPRI, Kyoto, Japan;
3.Tokyo Inst Technol, Dept Mech & Environm Informat, Tokyo, Japan;
4.Univ Tokyo, Inst Ind Sci, Tokyo 1138654, Japan;
5.Univ Tokyo, Inst Engn Innovat, Tokyo 1138654, Japan
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GB/T 7714
He, Bin,Kanae, Shinjiro,Oki, Taikan,et al. Assessment of global nitrogen pollution in rivers using an integrated biogeochemical modeling framework[J],2011,45(8):2573-2586.
APA He, Bin,Kanae, Shinjiro,Oki, Taikan,Hirabayashi, Yukiko,Yamashiki, Yosuke,&Takara, Kaoru.(2011).Assessment of global nitrogen pollution in rivers using an integrated biogeochemical modeling framework.WATER RESEARCH,45(8),2573-2586.
MLA He, Bin,et al."Assessment of global nitrogen pollution in rivers using an integrated biogeochemical modeling framework".WATER RESEARCH 45.8(2011):2573-2586.
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