Area of research
Biomedical Engineering · Water Science and Technology
Research interest
Research interests include Chemistry, Zerovalent iron, Arsenic, Wastewater, Methanogenesis, and Anaerobic digestion.
Efficient co-stabilization of arsenic and cadmium in farmland soil by schwertmannite under long-term flooding-drying condition
The simultaneous passivation of arsenic and cadmium in contaminated soil through combined use of schwertmannite and calcium carbonate
Synergetic interactions between zero-valent iron and schwertmannite for enhanced arsenic (III) removal: Role of morphological variations
Enhanced removal of aqueous arsenic(III) by sulfidated nanoscale zero-valent iron under oxic conditions: Performance and mechanism
Feasibility of Bio–Coagulation Dewatering Followed by Bio–Oxidation Process for Treating Swine Wastewater
Food waste hydrolysate as a carbon source to improve nitrogen removal performance of high ammonium and high salt wastewater in a sequencing batch reactor
Consolidation of hydrogenotrophic methanogenesis by sulfidated nanoscale zero-valent iron in the anaerobic digestion of food waste upon ammonia stress
Fungal mash enzymatic pretreatment combined with pH adjusting approach facilitates volatile fatty acids yield via a short-term anaerobic fermentation of food waste
Enhancing propionic acid production in the acidogenic fermentation of food waste facilitated by a fungal mash under neutral pH
Treatment of swine wastewater using multi-soil-layer based constructed wetland: Substrates assessment and efficiency improvement
Schwertmannite modified with ethanol: A simple and feasible method for improving As(III) adsorption capacity
A collaborative strategy for enhanced anaerobic co-digestion of food waste and waste activated sludge by using zero valent iron and ferrous sulfide
Rapid initiation of methanogenesis in the anaerobic digestion of food waste by acclimatizing sludge with sulfidated nanoscale zerovalent iron
Optimization ofS/Fe ratio for enhanced nitrobenzene biological removal in anaerobicSystem amended withSulfide-modified nanoscale zerovalent iron