Area of research
Environmental Engineering · Electrical and Electronic Engineering
Research interest
Research focused on Microbial fuel cell and Cathode, with related work in Camellia sinensis, Anaerobic digestion, Microbial electrolysis cell. Notable publications include 'Bio-Electron-Fenton (BEF) process driven by microbial fuel cells for triphenyltin chloride (TPTC) degradation', 'Effect of acclimatization on hexavalent chromium reduction in a biocathode microbial fuel cell', and 'γ-Aminobutyric Acid (GABA) Accumulation in Tea ( Camellia sinensis L.) through the GABA Shunt and Polyamine Degradation Pathways under Anoxia'.
Enhanced anaerobic digestion for degradation of swine wastewater through a Fe/Ni-MOF modified microbial electrolysis cell
Enhanced biogas production from swine manure anaerobic digestion via in-situ formed graphene in electromethanogenesis system
γ-Aminobutyric Acid (GABA) Accumulation in Tea (<i>Camellia sinensis</i> L.) through the GABA Shunt and Polyamine Degradation Pathways under Anoxia
An integrated aerobic-anaerobic strategy for performance enhancement of Pseudomonas aeruginosa-inoculated microbial fuel cell
Metal transport protein 8 in Camellia sinensis confers superior manganese tolerance when expressed in yeast and Arabidopsis thaliana
Bio-Electron-Fenton (BEF) process driven by microbial fuel cells for triphenyltin chloride (TPTC) degradation
Effect of acclimatization on hexavalent chromium reduction in a biocathode microbial fuel cell
Construction and Operation of Microbial Fuel Cell with Chlorella vulgaris Biocathode for Electricity Generation