An Integrated Quantitative Method to Simultaneously Monitor Soil Erosion and Non-Point Source Pollution in an Intensive Agricultural Area
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Cited by (8)
Agricultural nitrogen flow in a reservoir watershed and its implications for water pollution mitigation
2020, Journal of Cleaner ProductionCitation Excerpt :The traditional approach to quantify agricultural N pollution is often based on field monitoring and survey (Zhang et al., 2013; Jabbar and Grote., 2019). Subsequently, empirical models were developed to assessment nitrogen load of water body in watershed by using a geographic information system (GIS) (Chen et al., 2010), soil erosion and N loss formulas (Ma et al., 2014b) and export coefficient model (Ding et al., 2010). In recent decades, hydrological simulation models such as SWAT (Jou et al., 2019), HSPF (Lee et al., 2010), and AGNPS (Haregeweyn and Yohannes, 2003) were used to quantify N load of watershed.
Combined impacts of precipitation and temperature on diffuse phosphorus pollution loading and critical source area identification in a freeze-thaw area
2016, Science of the Total EnvironmentCitation Excerpt :The diffuse pollution loads induce water quality deterioration, which has become a worldwide concern and a challenging environmental issue (Schoumans et al., 2014). Diffuse P pollution has been identified as the main contributor to water degradation in recent decades, and the contribution rate of diffuse P to the total P phosphorus emissions is higher in intensive agriculture areas (Ma et al., 2014). The watershed diffuse P load varies on the spatial and temporal scales due to the variations in land cover, topography, soil texture and crop tillage (Ongley et al., 2010; Ouyang et al., 2013).
Deriving Land Management Practices for Reduced Nutrient Movement from an Agricultural Watershed Using the AGNPS Model
2023, Sustainability (Switzerland)Influence of Topographic Factors on the Characteristics of Gully Systems in Mountainous Areas of Ningnan Dry-Hot Valley, SW China
2022, International Journal of Environmental Research and Public HealthResearch progress of non-point source pollution in China over the past 30 years and discussion of the future direction development
2020, Huanjing Kexue Xuebao/Acta Scientiae CircumstantiaeSpatial variation characteristics of soil erodibility in the Yingwugou watershed of the middle Dan River, China
2020, International Journal of Environmental Research and Public Health
Supported by the State Key Laboratory of Soil and Sustainable Agriculture, Institute of Soil Science, Chinese Academy of Sciences (No. 0812201210), the National Natural Science Foundation of China (No. 41301307), and the Knowledge Innovation Program of Chinese Academy of Sciences (No. ISSASIP1114).