Area of research
Soil Science · Water Science and Technology
Research interest
Research interests include Environmental science, Watershed, Erosion, Agronomy, Nutrient, and Surface runoff.
Perennial sugarcane reduces soil erosion but increases N2O emissions
Sugarcane ratoon age drives differential control of rill and sheet erosion in south China: Implications for sustainable soil management
The roles of sampling depth, lateral profile density and vertical sampling density in 3D digital soil mapping of soil organic carbon
Contribution of the ratoon sugarcane with planting years to river pollution evidenced from the four-year watershed observation
Slope planting patterns are superior to ditch grassing in reducing ditch erosion load to rivers: Evidenced from a five-year study in an intensive sugarcane growth watershed
Characteristics of Nitrogen Output during Typical Rainfall in Different Sugarcane Growth Stages in a Southern Subtropical Watershed
Farm size increase alters the contribution of land use types to sources of river sediment
Effects of soil organic matter components and iron aluminum oxides on aggregate stability during vegetation succession in granite red soil eroded areas
Remediation mechanism of “double-resistant” bacteria—Sedum alfredii Hance on Pb- and Cd-contaminated soil
Control of sugarcane planting patterns on slope erosion-induced nitrogen and phosphorus loss and their export coefficients from the watershed
Fine root densities of grasses and perennial sugarcane significantly reduce stream channel erosion in southern China
Soil aggregate stability and its response to overland flow in successive Eucalyptus plantations in subtropical China
Soil Physicochemical Properties and Fertility Evolution of Permanent Gully during Ecological Restoration in Granite Hilly Region of South China
Crop resilience to climate change: A study of spatio-temporal variability of sugarcane yield in a subtropical region, China
Increase in farm size significantly accelerated stream channel erosion and associated nutrient losses from an intensive agricultural watershed
Variation of dissolved nutrient exports by surface runoff from sugarcane watershed is controlled by fertilizer application and ground cover
Particulate N and P exports from sugarcane growing watershed are more influenced by surface runoff than fertilization
Sugarcane planting patterns control ephemeral gully erosion and associated nutrient losses: Evidence from hillslope observation
Effects of Different Weeding Methods on the Biomass of Vegetation and Soil Evaporation in Eucalyptus Plantations
Farmland size increase significantly accelerates road surface rill erosion and nutrient losses in southern subtropics of China
Using <i>Le Bissonnais</i> method to study the stability of soil aggregates in plantations and its influence mechanism
[Characteristics of soil saturated hydraulic conductivity on different positions and their controlling factors of granite collapsing gullies].
Livestock grazing significantly accelerates soil erosion more than climate change in Qinghai-Tibet Plateau: Evidenced from 137Cs and 210Pbex measurements
Vetiver grass hedgerows significantly trap P but little N from sloping land: Evidenced from a 10-year field observation
Future climate change projects positive impacts on sugarcane productivity in southern China