Assessing soil erosion in China’s severely eroded Loess Plateau is urgently needed but is usually limited by suitable erosion models and long-term field measurements. In this study, we coupled the Thorens and Soil Conservation Service (SCS) models to evaluate runoff and sediment yield during the 1980s and 2010s in the Xiaolihe watershed on the Loess Plateau. Results showed the proposed model framework had a satisfactory performance in modelling spatially distributed runoff and sediment yield. The Nash–Sutcliffe efficiency (NSE), percent bias (PBIAS) and the root mean square error-measured standard deviation ratio (RSR) were 0.93, 4.42% and 0.27 for monthly runoff; and 0.31, 62.31% and 0.82 for monthly sediment yield. The effects of land use...
Soil erosion is still one of major issues limiting agricultural and forestry productivity in Loess P...
This paper presents a modeling approach to simulate runoff and soil erosion at the small watersheds ...
AbstractStudy regionSemi-arid hilly loess region of China.Study focusThe objectives of this study we...
Soil erosion is one of the most serious land degradation problems and the primary environmental issu...
The Loess Plateau suffers from severe soil erosion that leads to a series of ecological and economic...
On the Chinese Loess Plateau, soil erosion models are often employed to predict erosion rates and re...
The Loess Plateau region of China is one of the most erodible areas in the world. Several conservati...
The Revised Universal Soil Loss Equation (RUSLE) was used in conjunction with geographic information...
Attributing soil erosion to land management and climatic drivers is important for global policy deve...
Several land use scenarios were developed for the 3.5 km2 Danangou catchment on the Chinese Loess Pl...
The Chinese Loess Plateau suffers some of the highest soil erosion rates on earth. This is caused by...
Ecological environment investigation and assessment in ten years in the zone of major ecological pro...
On the Loess Plateau in China, soil erosion amounts to between 10 000 and 25 000 tons/km2/year. In 1...
A study was undertaken to develop an appropriate plan of land use under suitable slope gradient to c...
Soil erosion is one of the most significant environmental problems in China. From 2010 to 2012, the ...
Soil erosion is still one of major issues limiting agricultural and forestry productivity in Loess P...
This paper presents a modeling approach to simulate runoff and soil erosion at the small watersheds ...
AbstractStudy regionSemi-arid hilly loess region of China.Study focusThe objectives of this study we...
Soil erosion is one of the most serious land degradation problems and the primary environmental issu...
The Loess Plateau suffers from severe soil erosion that leads to a series of ecological and economic...
On the Chinese Loess Plateau, soil erosion models are often employed to predict erosion rates and re...
The Loess Plateau region of China is one of the most erodible areas in the world. Several conservati...
The Revised Universal Soil Loss Equation (RUSLE) was used in conjunction with geographic information...
Attributing soil erosion to land management and climatic drivers is important for global policy deve...
Several land use scenarios were developed for the 3.5 km2 Danangou catchment on the Chinese Loess Pl...
The Chinese Loess Plateau suffers some of the highest soil erosion rates on earth. This is caused by...
Ecological environment investigation and assessment in ten years in the zone of major ecological pro...
On the Loess Plateau in China, soil erosion amounts to between 10 000 and 25 000 tons/km2/year. In 1...
A study was undertaken to develop an appropriate plan of land use under suitable slope gradient to c...
Soil erosion is one of the most significant environmental problems in China. From 2010 to 2012, the ...
Soil erosion is still one of major issues limiting agricultural and forestry productivity in Loess P...
This paper presents a modeling approach to simulate runoff and soil erosion at the small watersheds ...
AbstractStudy regionSemi-arid hilly loess region of China.Study focusThe objectives of this study we...