Area of research
Soil Science · Environmental Chemistry
Research interest
Research interests include Agronomy, Fertilizer, Human fertilization, Amendment, Sowing, and Panicle.
Effects of warming and fertilization on paddy N2O emissions and ammonia volatilization
Lower dose of controlled/slow release fertilizer with higher rice yield and N utilization in paddies: Evidence from a meta-analysis
Fertilization and Global Warming Impact on Paddy CH4 Emissions
Effect of fertilization on nitrogen losses through surface runoffs in Chinese farmlands: A meta-analysis
Roles of bulk and rhizosphere denitrifying bacteria in denitrification from paddy soils under straw return condition
Continuous milk vetch amendment in rice-fallow rotation improves soil fertility and maintains rice yield without increasing CH4 emissions: Evidence from a long-term experiment
Win-win: Application of sawdust-derived hydrochar in low fertility soil improves rice yield and reduces greenhouse gas emissions from agricultural ecosystems
Hydrochar reduced NH3 volatilization from rice paddy soil: Microbial-aging rather than water-washing is recommended before application
Effect of long term fertilization management strategies on methane emissions and rice yield
Biochar Combined with Vermicompost Increases Crop Production While Reducing Ammonia and Nitrous Oxide Emissions from a Paddy Soil
Rice dry matter and nitrogen accumulation, soil mineral N around root and N leaching, with increasing application rates of fertilizer
Topdressing nitrogen recommendation for early rice with an active sensor in south China