Area of research
Environmental Engineering · Electrical and Electronic Engineering
Research interest
Research focused on Microbial fuel cell and Pyocyanin, with related work in Pseudomonas aeruginosa, Strain (injury), Biogas. Notable publications include 'Enhanced bioelectricity generation by improving pyocyanin production and membrane permeability through sophorolipid addition in Pseudomonas aeruginosa-inoculated microbial fuel...', 'Enhancement of bioelectricity generation by manipulation of the electron shuttles synthesis pathway in microbial fuel cells', and 'Bio-Electron-Fenton (BEF) process driven by microbial fuel cells for triphenyltin chloride (TPTC) degradation'.
Enhanced biogas production from swine manure anaerobic digestion via in-situ formed graphene in electromethanogenesis system
An integrated aerobic-anaerobic strategy for performance enhancement of Pseudomonas aeruginosa-inoculated microbial fuel cell
Bio-Electron-Fenton (BEF) process driven by microbial fuel cells for triphenyltin chloride (TPTC) degradation
Trace heavy metal ions promoted extracellular electron transfer and power generation by Shewanella in microbial fuel cells
Endogenously enhanced biosurfactant production promotes electricity generation from microbial fuel cells
Enhanced bioelectricity generation by improving pyocyanin production and membrane permeability through sophorolipid addition in Pseudomonas aeruginosa-inoculated microbial fuel cells
Enhancement of bioelectricity generation by cofactor manipulation in microbial fuel cell
Enhancement of bioelectricity generation by manipulation of the electron shuttles synthesis pathway in microbial fuel cells
Comparison of the spores of Paenibacillus polymyxa prepared at different temperatures