Estimating Nonpoint Source Pollution in the Upper Yangtze River Using the Export Coefficient Model, Remote Sensing, and Geographical Information System
Ruimin Liu, Zhifeng Yang, Zhenyao Shen, Shaw L. Yu, Xiaowen Ding, Xing Wu, Fang Liu
Abstract
Ruimin Liu, Zhifeng Yang, Zhenyao Shen, Shaw L. Yu, Xiaowen Ding, Xing Wu, Fang Liu
Abstract
Recently, increasing nutrient (i.e., nitrogen and phosphorus) concentrations have been observed in the surface water of many countries and this nonpoint source (NPS) pollution has become an important factor in the deterioration of water quality in the upper reach of the Yangtze River Basin. In this paper, the NPS pollution loads in the upper reach of Yangtze River Basin in the year 2000 were estimated using export coefficient model and remote sensing techniques. The spatial distributions of the NPS loads within the watershed were then displayed using geographical information system. Results indicated that the total nitrogen load was 1.947×106 t and the total phosphorus load was 8.364×104 t . Important source areas for the nutrients were croplands in the Jinsha R. and Jialing R. watershed, as well as the Chongqing municipality.
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Recently, increasing nutrient (i.e., nitrogen and phosphorus) concentrations have been observed in the surface water of many countries and this nonpoint source (NPS) pollution has become an important factor in the deterioration of water quality in the upper reach of the Yangtze River Basin. In this paper, the NPS pollution loads in the upper reach of Yangtze River Basin in the year 2000 were estimated using export coefficient model and remote sensing techniques. The spatial distributions of the NPS loads within the watershed were then displayed using geographical information system. Results indicated that the total nitrogen load was 1.947×106 t and the total phosphorus load was 8.364×104 t . Important source areas for the nutrients were croplands in the Jinsha R. and Jialing R. watershed, as well as the Chongqing municipality.
Key concepts: Nonpoint source pollution, Watershed, Environmental science, Pollution, Hydrology (agriculture), Water quality, Yangtze river, Phosphorus