Area of research
Environmental Chemistry · Biomedical Engineering
Research interest
Research interests include Chemistry, Catalysis, Degradation (telecommunications), Schwertmannite, Bioleaching, and Extracellular polymeric substance.
Deciphering nitrogen removal performance concerning heterotrophic microorganism's succession by using three typical acid-rich fermentation liquids of food waste as carbon sources in high ammonium and high salt wastewater treatment
WS2-modified schwertmannite for highly efficient dye wastewater degradation via enhanced Fe cycle in heterogeneous Fenton-like catalysis
Mechanisms underlying the role of Fe3O4 in enhancing antibiotic degradation and mitigating the spread of antibiotic resistance in aquaculture sediment: Coupling dissimilatory iron reduction with methanogenesis
CaO2 pretreatment enhances fecal pollution indicator removal during mesophilic anaerobic digestion of sewage sludge
Recent Progress in Sludge-Derived Biochar and Its Role in Wastewater Purification
Pivotal role of intracellular oxidation by HOCl in simultaneously removing antibiotic resistance genes and enhancing dewaterability during conditioning of sewage sludge using Fe2+/Ca(ClO)2
Phase transformation of schwertmannite changes microbial iron and sulfate-reducing processes in flooded paddy soil and decreases arsenic accumulation in rice (Oryza sativa L.)
Enhanced dewatering extent of sludge by Fe3O4-driven heterogeneous Fenton
Insight into performance of nitrogen removal enhanced by adding lactic acid-rich food waste fermentation liquid as carbon source in municipal wastewater treatment
Enhancing Coimmobilization Capacity of Schwertmannite for Arsenic and Cadmium through pH Elevation after Chemical Oxidation
An integrated process incorporating pH-controlled biomineralization and sulfate bioreduction to facilitate recovery of schwertmannite and sulfated polysaccharides from acid mine drainage
Biochar-induced alterations in Acidithiobacillus ferrooxidans activity and its impact on Cd(II) and As(III) adsorption from acid mine drainage
Persistence evaluation of fecal pollution indicators in dewatered sludge and dewatering filtrate of municipal sewage sludge: The impacts of ambient temperature and conditioning treatments
Efficient co-stabilization of arsenic and cadmium in farmland soil by schwertmannite under long-term flooding-drying condition
Efficient removal of metals and resource recovery from acid mine drainage by modified chemical mineralization coupling sodium sulfide precipitation
The effects of water-flooding and wet-to-dry transition on phase transformation of schwertmannite chemically formed in constant pH condition
Acidophilic ammonia-oxidizing bacteria mediated Fenton facilitates anaerobically digested sludge dewatering and chemicals usage reduction by initiating diverse free radical reactions
Changes in microbial communities during high-rate microbial selenate reduction in an up-flow anaerobic fluidized bed reactor
Dyeing sludge-derived biochar for efficient removal of antibiotic from water
Enhanced removal of As(III) and Cd(II) from wastewater by alkali-modified Schwertmannite@Biochar
Remediating flooding paddy soils with schwertmannite greatly reduced arsenic accumulation in rice (Oryza sativa L.) but did not decrease the utilization efficiency of P fertilizer
Schwertmannite-based heterogeneous Fenton for enhancing sludge dewaterability over a wide pH range
Microbial community dynamics in a feedback-redox controlled bioreactor process that enabled sequential selenate, nitrate and sulfate removal, and elemental selenium recovery
Elemental sulfur redox bioconversion for selective recovery of phosphorus from Fe/Al-bound phosphate-rich anaerobically digested sludge: Sulfur oxidation or sulfur reduction?
Enhanced removal of aqueous arsenic(III) by sulfidated nanoscale zero-valent iron under oxic conditions: Performance and mechanism
Promoting dewatering efficiency of sludge by bioleaching coupling chemical flocculation
Synchronous Photooxidation–Coagulation for the Efficient Treatment of Algae-Laden Water by Utilizing Titanium Xerogel Coagulant
Feasibility of Bio–Coagulation Dewatering Followed by Bio–Oxidation Process for Treating Swine Wastewater
Tea plant–legume intercropping simultaneously improves soil fertility and tea quality by changing <i>Bacillus</i> species composition
Free radicals removing extracellular polymeric substances to enhance the degradation of intracellular antibiotic resistance genes in multi-resistant Pseudomonas Putida by UV/H2O2 and UV/peroxydisulfate disinfection processes