Area of research
Transportation · Sociology and Political Science
Research interest
Research interests include Chemistry, Earthworm, Environmental chemistry, Metolachlor, Biology, and Environmental science.
Unveiling the mechanisms of metolachlor biodegradation and physiological adaptations in Penicillium oxalicum MetF1
Combined pollution and soil microbial effect of pesticides and microplastics in greenhouse soil of suburban Tianjin, Northern China
Coupling multifactor dominated the biochemical response and the alterations of intestinal microflora of earthworm Pheretima guillelmi due to typical herbicides
Competitive adsorption of Dibutyl phthalate (DBP) and Di(2-ethylhexyl) phthalate (DEHP) onto fresh and oxidized corncob biochar
Exposure to fomesafen alters the gut microbiota and the physiology of the earthworm Pheretima guillelmi
Comparative study on the pollution status of organochlorine pesticides (OCPs) and bacterial community diversity and structure between plastic shed and open-field soils from northern China
Isolation, Degradation Performance and Field Application of the Metolachlor-Degrading Fungus Penicillium oxalicum MET-F-1
Shifting interactions among bacteria, fungi and archaea enhance removal of antibiotics and antibiotic resistance genes in the soil bioelectrochemical remediation
Stimulation of earthworms (Eisenia fetida) on soil microbial communities to promote metolachlor degradation
Using chromatographic and spectroscopic parameters to characterize preference and kinetics in the adsorption of humic and fulvic acid to goethite
Response of soil bacterial and fungal community structure succession to earthworm addition for bioremediation of metolachlor
Long-term effect of biochar amendment on the biodegradation of petroleum hydrocarbons in soil microbial fuel cells
Influence of calcium and phosphate on pH dependency of arsenite and arsenate adsorption to goethite
Enhancement effect of earthworm (Eisenia fetida) on acetochlor biodegradation in soil and possible mechanisms
Cathodic microbial community adaptation to the removal of chlorinated herbicide in soil microbial fuel cells
Inoculation of Fe/Mn-oxidizing bacteria enhances Fe/Mn plaque formation and reduces Cd and As accumulation in Rice Plant tissues
Root application of selenite can simultaneously reduce arsenic and cadmium accumulation and maintain grain yields, but show negative effects on the grain quality of paddy rice
Opposing effects of nitrogen and water addition on soil bacterial and fungal communities in the Inner Mongolia steppe: A field experiment