Area of research
Soil Science · Environmental Chemistry
Research interest
Research interests include Environmental science, Agronomy, Fertilizer, Greenhouse gas, Paddy field, and Manure.
Lower methane and nitrous oxide emissions from rice-aquaculture co-culture systems than from rice paddies in southeast China,
Decreased CH4 emissions associated with methanogenic and methanotrophic communities and their interactions following Fe(III) fertiliser application in rice paddies
Enhanced carbon sinks following double-rice conversion to green manure-rice cropping rotation systems under optimized nitrogen fertilization in southeast China
Enhanced <scp>CO<sub>2</sub></scp> uptake is marginally offset by altered fluxes of non‐<scp>CO<sub>2</sub></scp> greenhouse gases in global forests and grasslands under N deposition
Global methane and nitrous oxide emissions from inland waters and estuaries
Potassium ameliorates cotton (<scp><i>Gossypium hirsutum</i></scp> L.) fiber length by regulating osmotic and K<sup>+</sup>/Na<sup>+</sup> homeostasis under salt stress
Potassium Application Increases Cotton (Gossypium hirsutum L.) Fiber Length by Improving K+/Na+ Homeostasis and Potassium Transport Capacity in the Boll-Leaf System under Moderate Salinity
A greater source of methane from drainage rivers than from rice paddies with drainage practices in southeast China
Data‐driven estimates of fertilizer‐induced soil NH<sub>3</sub>, NO and N<sub>2</sub>O emissions from croplands in China and their climate change impacts
Potassium application alleviates the negative effects of salt stress on cotton (Gossypium hirsutum L.) yield by improving the ionic homeostasis, photosynthetic capacity and carbohydrate metabolism of the leaf subtending the cotton boll
Low N2O emissions from wheat in a wheat-rice double cropping system due to manure substitution are associated with changes in the abundance of functional microbes
A two-year measurement of methane and nitrous oxide emissions from freshwater aquaculture ponds: Affected by aquaculture species, stocking and water management
Nitrogen use efficiency exhibits a trade-off relationship with soil N2O and NO emissions from wheat-rice rotations receiving manure substitution
Global soil‐derived ammonia emissions from agricultural nitrogen fertilizer application: A refinement based on regional and crop‐specific emission factors
Increased soil release of greenhouse gases shrinks terrestrial carbon uptake enhancement under warming
Decreased N2O and NO emissions associated with stimulated denitrification following biochar amendment in subtropical tea plantations
Low greenhouse gases emissions associated with high nitrogen use efficiency under optimized fertilization regimes in double-rice cropping systems
Effects of potassium application on soil ecological resistance to Verticillium wilt of cotton (<i>Gossypium hirsutum</i> L.)
Variation in Soil Methane Release or Uptake Responses to Biochar Amendment: A Separate Meta-analysis
Diel and seasonal nitrous oxide fluxes determined by floating chamber and gas transfer equation methods in agricultural irrigation watersheds in southeast China
Annual methane and nitrous oxide emissions from rice paddies and inland fish aquaculture wetlands in southeast China