Many water quality models have been successfully used worldwide to predict nutrient losses from anthropogenically impacted catchments, but hydrological and nutrient simulations with limited data are difficult considering the transfer of model parameters and complication of model calibration and validation. This study aims: (i) to assess the performance capabilities of a new and relatively more advantageous model, namely, Hydrological Predictions for the Environment (HYPE), that simulates stream flow and nutrient load in agricultural areas by using a multi-site and multi-objective parameter calibration method and (ii) to investigate the temporal and spatial variations of total nitrogen (TN) and total phosphorous (TP) concentrations and loads...
AbstractAs the deterioration of drinking water quality has become increasingly severe worldwide, the...
The Hydrological Simulation Program–Fortran (HSPF) is a hydrological and water quality computer mode...
Eutrophication is a serious problem in Chinese rivers and seas, largely caused by increased nitrogen...
Many water quality models have been successfully used worldwide to predict nutrient losses from anth...
Population growth, urbanization, and intensified agriculture have resulted in mobilization of nitrog...
Intensive agricultural activities in the Hetao irrigation district have severely degraded local aqua...
The application of hydrological and water quality models is an efficient approach to better understa...
AbstractMany water quality models have been extensively used to evaluate non-point source pollution,...
Non-point sources pollution has become a serious environmental problem in the aquatic systems throug...
Abstract: The application of hydrological and water quality models is an efficient approach to bette...
Understanding the influence of cropping systems on non-point source pollution (NPSP) is crucial, sin...
Nutrient pollution is a widespread problem in rivers in China. Managing nutrient pollution requires ...
Five types of land use/land covers in the West Tiaoxi watershed of China were studied for nutrient l...
Better water and nitrogen (N) management requires better understanding of soil water and N balances ...
Better water and nitrogen (N) management requires better understanding of soil water and N balances ...
AbstractAs the deterioration of drinking water quality has become increasingly severe worldwide, the...
The Hydrological Simulation Program–Fortran (HSPF) is a hydrological and water quality computer mode...
Eutrophication is a serious problem in Chinese rivers and seas, largely caused by increased nitrogen...
Many water quality models have been successfully used worldwide to predict nutrient losses from anth...
Population growth, urbanization, and intensified agriculture have resulted in mobilization of nitrog...
Intensive agricultural activities in the Hetao irrigation district have severely degraded local aqua...
The application of hydrological and water quality models is an efficient approach to better understa...
AbstractMany water quality models have been extensively used to evaluate non-point source pollution,...
Non-point sources pollution has become a serious environmental problem in the aquatic systems throug...
Abstract: The application of hydrological and water quality models is an efficient approach to bette...
Understanding the influence of cropping systems on non-point source pollution (NPSP) is crucial, sin...
Nutrient pollution is a widespread problem in rivers in China. Managing nutrient pollution requires ...
Five types of land use/land covers in the West Tiaoxi watershed of China were studied for nutrient l...
Better water and nitrogen (N) management requires better understanding of soil water and N balances ...
Better water and nitrogen (N) management requires better understanding of soil water and N balances ...
AbstractAs the deterioration of drinking water quality has become increasingly severe worldwide, the...
The Hydrological Simulation Program–Fortran (HSPF) is a hydrological and water quality computer mode...
Eutrophication is a serious problem in Chinese rivers and seas, largely caused by increased nitrogen...