Area of research
Soil Science · Materials Chemistry
Research interest
Research interests include Chemistry, Hydrothermal carbonization, Greenhouse gas, Sawdust, Volatilisation, and Ammonia volatilization from urea.
Co-occurrence of microplastics and hydrochar stimulated the methane emission but suppressed nitrous oxide emission from a rice paddy soil
Presence of microplastics alone and co-existence with hydrochar unexpectedly mitigate ammonia volatilization from rice paddy soil and affect structure of soil microbiome
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
Biowaste hydrothermal carbonization aqueous product application in rice paddy: Focus on rice growth and ammonia volatilization
Nitric acid-modified hydrochar enhance Cd2+ sorption capacity and reduce the Cd2+ accumulation in rice
Raw material of water-washed hydrochar was critical for the mitigation of GHGI in infertile paddy soil: a column experiment
Win-win: Application of sawdust-derived hydrochar in low fertility soil improves rice yield and reduces greenhouse gas emissions from agricultural ecosystems
Wood vinegar and biochar co-application mitigates nitrous oxide and methane emissions from rice paddy soil: A two-year experiment
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
Anaerobic fermentation treatment improved Cd2+ adsorption of different feedstocks based hydrochars