Area of research
Soil Science · Industrial and Manufacturing Engineering
Research interest
Research interests include Agronomy, Biomass (ecology), Nitrogen, Plant community, Panicle, and Fertilizer.
Single-time fertilization of controlled release blended fertilizer optimizes soil nitrogen distribution and root characteristics to increase conventional japonica rice (Oryza sativa L.) grain yield and nitrogen use efficiency
Increasing double-peak nitrogen release from controlled-release blended fertilizer boosts uptake efficiency and yield in late japonica rice in Yangtze River Delta
Influence of the temperature during grain filling stage and nitrogen application rate on yield and quality of indica hybrid rice
Nitrogen application increased yield sensitivity of indica hybrid rice to climate resource
Single-Time Mechanical Deep Placement Fertilization Using Bulk Blending Fertilizer on Machine-Transplanted Rice: Balanced Yield, Nitrogen Utilization Efficiency, and Economic Benefits
Controlled-release potassium blended fertilizer mitigates greenhouse gas emissions in paddy fields
Nitrogen enrichment and warming shift community functional composition via distinct mechanisms: The role of intraspecific trait variability and species turnover
Nitrogen addition and warming modulate the pathogen impact on plant biomass by shifting intraspecific functional traits and reducing species richness
Long-term fertilization effects on soil biotic communities are mediated by plant diversity in a Tibetan alpine meadow
Delayed Sowing Date Improves Rice Cooking and Taste Quality by Regulating the Quantity and Quality of Grains Located on Secondary Branches
Study on the Nutrient Optimal Management Strategy of High and Stable Annual Yield in the Rice–Wheat System: A 10-Year Term Experiment
Climate warming promotes deterministic assembly of arbuscular mycorrhizal fungal communities
Super Rice With High Sink Activities Has Superior Adaptability to Low Filling Stage Temperature
Nitrogen-induced acidification plays a vital role driving ecosystem functions: Insights from a 6-year nitrogen enrichment experiment in a Tibetan alpine meadow
Soil acidification alters root morphology, increases root biomass but reduces root decomposition in an alpine grassland
Simulated warming enhances the responses of microbial N transformations to reactive N input in a Tibetan alpine meadow
Combination of warming and N inputs increases the temperature sensitivity of soil N2O emission in a Tibetan alpine meadow
Grazing practices affect the soil microbial community composition in a Tibetan alpine meadow
Improvement of photosynthesis in rice (Oryza sativa L.) as a result of an increase in stomatal aperture and density by exogenous hydrogen sulfide treatment