Area of research
Soil Science · Environmental Chemistry
Research interest
Research interests include Nitrification, Soil water, Chemistry, Environmental chemistry, Biology, and Mineralization (soil science).
Integrative transcriptomic and metabolomic analysis elucidates the vital pathways underlying the differences in salt stress responses between two chickpea (Cicer arietinum L.) varieties
The rhizosphere: a key hotspot for gross nitrogen transformations and nitrous oxide emissions in legume cropping systems
Nitrifying niche in estuaries is expanded by the plastisphere
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
Investigating drivers of free-living diazotroph activity in paddy soils across China
Nitrous oxide emissions in Fe-modified biochar amended paddy soil are controlled by autotrophic nitrification
Inhibition of Elevated Atmospheric Carbon Dioxide to Soil Gross Nitrogen Mineralization Aggravated by Warming in an Agroecosystem
Rice genotype affects nitrification inhibition in the rhizosphere
Stimulation of N<sub>2</sub>O emission via bacterial denitrification driven by acidification in estuarine sediments
Links between microbial biomass and necromass components in the top- and subsoils of temperate grasslands along an aridity gradient
Nitrogen deposition differentially affects soil gross nitrogen transformations in organic and mineral horizons
The Jujube Genome Provides Insights into Genome Evolution and the Domestication of Sweetness/Acidity Taste in Fruit Trees
Reductive soil disinfestations combined or not with Trichoderma for the treatment of a degraded and Rhizoctonia solani infested greenhouse soil
Sequencing of allotetraploid cotton (Gossypium hirsutum L. acc. TM-1) provides a resource for fiber improvement
Enhanced gross nitrogen transformation rates and nitrogen supply in paddy field under elevated atmospheric carbon dioxide and temperature
Liming accelerates the NO3 − removal and reduces N2O emission in degraded vegetable soil treated by reductive soil disinfestation (RSD)
Dissimilatory nitrate reduction to ammonium (DNRA) plays an important role in soil nitrogen conservation in neutral and alkaline but not acidic rice soil
Mechanistic insights into the effects of N fertilizer application on N2O-emission pathways in acidic soil of a tea plantation