Area of research
Soil Science · Industrial and Manufacturing Engineering
Research interest
Research interests include Environmental science, Chemistry, Agronomy, Fertilizer, Hydrothermal carbonization, and Environmental chemistry.
Heavy rainfall stimulates more N2O emissions from wheat fields during basal and overwintering fertilization phases
Effects of warming and fertilization on nirK-, nirS- and nosZ-type denitrifier communities in paddy soil
Efficient magnetic capture of PE microplastic from water by PEG modified Fe3O4 nanoparticles: Performance, kinetics, isotherms and influence factors
Effects of Cellulosic Carbon Addition on Nitrogen Removal from Simulated Dry Land Drainage, and Its Environmental Effects
Struvite as P Fertilizer on Yield, Nutrient Uptake and Soil Nutrient Status in the Rice–Wheat Rotation System: A Two-Year Field Observation
Long-Term Fertilizer Optimization with Slow-Release and Organic Fertilizers Improves N Use Efficiency and Soil Bacterial Populations in Paddies
Efficient photocatalysis of tetracycline hydrochloride (TC-HCl) from pharmaceutical wastewater using AgCl/ZnO/g-C3N4 composite under visible light: Process and mechanisms
Phosphate removal from actual wastewater via La(OH)3-C3N4 adsorption: Performance, mechanisms and applicability
The high accumulation of phosphorus in high-yield paddy soils: A new insight from cutans
Nutrient loss by runoff from rice-wheat rotation during the wheat season is dictated by rainfall duration
Deep fertilization with controlled‐release fertilizer for higher cereal yield and N utilization in paddies: The optimal fertilization depth
Chemical aging of hydrochar improves the Cd2+ adsorption capacity from aqueous solution
Clay-hydrochar composites mitigated CH4 and N2O emissions from paddy soil: A whole rice growth period investigation
Co-application of biogas slurry and hydrothermal carbonization aqueous phase substitutes urea as the nitrogen fertilizer and mitigates ammonia volatilization from paddy soil
Raw material of water-washed hydrochar was critical for the mitigation of GHGI in infertile paddy soil: a column experiment
Hydrothermal carbonization of microalgae for phosphorus recycling from wastewater to crop-soil systems as slow-release fertilizers
Microalgae-derived hydrochar application on rice paddy soil: Higher rice yield but increased gaseous nitrogen loss
Bentonite hydrochar composites mitigate ammonia volatilization from paddy soil and improve nitrogen use efficiency
Wood vinegar and biochar co-application mitigates nitrous oxide and methane emissions from rice paddy soil: A two-year experiment
Minerals loaded with oxygen nanobubbles mitigate arsenic translocation from paddy soils to rice
Insights into the molecular transformation in the dissolved organic compounds of agro-waste-hydrochars by microbial-aging using electrospray ionization Fourier transform ion cyclotron resonance mass spectrometry
Effects of domestic sewage from different sources on greenhouse gas emission and related microorganisms in straw-returning paddy fields
High yield and mitigation of N-loss from paddy fields obtained by irrigation using optimized application of sewage tail water
Biowaste to treasure: Application of microbial-aged hydrochar in rice paddy could improve nitrogen use efficiency and rice grain free amino acids
Sewage sludge-derived hydrochar that inhibits ammonia volatilization, improves soil nitrogen retention and rice nitrogen utilization
Microbial aging of hydrochar as a way to increase cadmium ion adsorption capacity: Process and mechanism
Responses of ammonia volatilization from rice paddy soil to application of wood vinegar alone or combined with biochar
Effect of Pyrochar and Hydrochar on Water Evaporation in Clayey Soil under Greenhouse Cultivation
Yield and N Utilization of Transplanted and Direct‐Seeded Rice with Controlled or Slow‐Release Fertilizer
Treated domestic sewage irrigation significantly decreased the CH4, N2O and NH3 emissions from paddy fields with straw incorporation