Area of research
Soil Science · Environmental Chemistry
Research interest
Research interests include Soil Carbon and Nitrogen Dynamics, Soil and Water Nutrient Dynamics, Atmospheric chemistry and aerosols, and Air Quality and Health Impacts.
Effects of warming and elevated CO2 on gross nitrogen dynamics and N2O emissions disappeared under combined treatment in waterlogged paddy soils
Cutaneous granular cell tumor presenting as a solitary preauricular nodule: a case report
Warming-Induced Stimulation of Soil N<sub>2</sub>O Emissions Counteracted by Elevated CO<sub>2</sub> from Nine-Year Agroecosystem Temperature and Free Air Carbon Dioxide Enrichment
Nitrification inhibitor induced microbial NH4+-N immobilization improves maize nitrogen use efficiency in strong ammonia oxidation soil
Four cases of localized plaque psoriasis successfully treated by intense pulsed light: A case series
Inhibition of Elevated Atmospheric Carbon Dioxide to Soil Gross Nitrogen Mineralization Aggravated by Warming in an Agroecosystem
The early predictive effect of low expression of the ITGA4 in colorectal cancer
Response of tea yield, quality and soil bacterial characteristics to long-term nitrogen fertilization in an eleven-year field experiment
Forward ultra-low emission for power plants via wet electrostatic precipitators and newly developed demisters: Filterable and condensable particulate matters
Water/Methanol-Insoluble Brown Carbon Can Dominate Aerosol-Enhanced Light Absorption in Port Cities
Bacteria-Responsive Nanoliposomes as Smart Sonotheranostics for Multidrug Resistant Bacterial Infections
Nitrogen deposition differentially affects soil gross nitrogen transformations in organic and mineral horizons
The impacts of pollution control measures on PM2.5 reduction: Insights of chemical composition, source variation and health risk
Biodegradation of chlorimuron-ethyl and the associated degradation pathway by Rhodococcus sp. D310-1
Insights into the degradation of chlorimuron-ethyl by Stenotrophomonas maltophilia D310-3
Mechanistic insights into the effects of N fertilizer application on N2O-emission pathways in acidic soil of a tea plantation