Area of research
Soil Science · Water Science and Technology
Research interest
Research interests include Hydrology and Watershed Management Studies, Soil and Water Nutrient Dynamics, Soil Carbon and Nitrogen Dynamics, and Soil erosion and sediment transport.
Groundwater arsenic and antimony mobility from an antimony mining area: Controls of sulfide oxidation, carbonate and silicate weathering, and secondary mineral precipitation
Intermediate soil acidification induces highest nitrous oxide emissions
Soil ecological stoichiometry synchronously regulates stream nitrogen and phosphorus concentrations and ratios
Altitude dependence of alpine grassland ecosystem multifunctionality across the Tibetan Plateau
Tracing the Century‐Long Evolution of Microplastics Deposition in a Cold Seep
Nitrogen addition alleviates drought effects on water status and growth of Moso bamboo (Phllostachys edulis)
Climate warming suppresses abundant soil fungal taxa and reduces soil carbon efflux in a semi‐arid grassland
Mitochondrial genomes of Pleistocene megafauna retrieved from recent sediment layers of two Siberian lakes
Soil habitat condition shapes <i>Tamarix chinensis</i> community diversity in the coastal saline-alkali soils.
Migration of vegetation boundary between alpine steppe and meadow on a century-scale across the Tibetan Plateau
Root exudates with low C/N ratios accelerate <scp>CO<sub>2</sub></scp> emissions from paddy soil
Landscape patterns of catchment and land-use regulate legacy phosphorus releases in subtropical mixed agricultural and woodland catchments.
Multi-spatial scale effects of multidimensional landscape pattern on stream water nitrogen pollution in a subtropical agricultural watershed.
Influence path identification of topography, soil, hydrology and landscape on phosphorus buffering capacity in typical agricultural catchments in central subtropical China.
Variations and controlling factors of soil denitrification rate
Runoff Losses in Nitrogen and Phosphorus From Paddy and Maize Cropping Systems: A Field Study in Dongjiang Basin, South China
Effects of land-use conversion from Masson pine forests to tea plantations on net ecosystem carbon and greenhouse gas budgets
Cushion plants as critical pioneers and engineers in alpine ecosystems across the Tibetan Plateau
Upstream 2000 ha is the boundary of the stream water nitrogen and phosphorus saturation concentration threshold in the subtropical agricultural catchment
Response of N2O emissions to biochar amendment on a tea field soil in subtropical central China: A three-year field experiment
Pathways and mechanisms by which biochar application reduces nitrogen and phosphorus runoff losses from a rice agroecosystem.
Influences of the landscape pattern on riverine nitrogen exports derived from legacy sources in subtropical agricultural catchments
From landscape perspective to determine joint effect of land use, soil, and topography on seasonal stream water quality in subtropical agricultural catchments.
Landscape pattern at the class level regulates the stream water nitrogen and phosphorus levels in a Chinese subtropical agricultural catchment
Nitrogen removal performance and needed area estimation of surface-flow constructed wetlands using a probabilistic approach.
[N<sub>2</sub> O Emissions from Tea Plantations with Sorghum Intercropping and Application of Big Urea Pills].
Dynamics and underlying mechanisms of N<sub>2</sub>O and NO emissions in response to a transient land-use conversion of Masson pine forest to tea field.
Multi-scaled response of groundwater nitrate contamination to integrated anthropogenic activities in a rapidly urbanizing agricultural catchment.
Effects of biogas slurry application on peanut yield, soil nutrients, carbon storage, and microbial activity in an Ultisol soil in southern China