Photoelectrocatalytic (PEC) water treatment is a promising technology for organic pollution abatement. Much of the prior research focused on material discovery and optimization. However, challenges exist in scaling-up PEC processes and are associated with designing reactors with effective light irradiation on electrode surfaces and, simultaneously, efficient electrode configurations. We design and demonstrate key reactor design principles, which influence reaction mechanisms, for a reactor using a TiO2 nanotube-coated disc flow reactor. Degradation of organochlorinated 2,4-dichlorophenol was studied as representative carcinogenic micropollutant. The synergistic photoelectrocatalytic process showed 5-fold faster degradation kinetics than sol...
This work investigates the degradation rate of 4-cholorophenol using Titanium dioxide photocatalysts...
The Design of Experiment (DoE) technique has been used to investigate the photo-electrochemical remo...
Industry development, Earth’s population growth, ever increasing need for greater pharmaceuticals pr...
Photoelectrocatalytic (PEC) water treatment is a promising technology for organic pollution abatemen...
Multiple discs coated with hierarchically-organized TiO2 anatase nanotubes served as photoelectrodes...
Multiple discs coated with hierarchically-organized TiO2 anatase nanotubes served as photoelectrodes...
Photoelectrocatalytic (PEC) degradation of organic pollutants into CO2 and H2O is a promising strate...
TiO2 nanotube was fabricated using anodic oxidation method. The samples were characterized by scanni...
Abstract Many of the harmful pollutants such as organic compounds in water are generated diseases i...
The study focused on the application of water treatment in two ways using immobilized TiO2. First, t...
Removal of persistent pollutants from water by photoelectrocatalysis has emerged as a promising powe...
2008-2009 > Academic research: refereed > Publication in refereed journalAccepted ManuscriptPublishe
Removal of persistent pollutants from water by photoelectrocatalysis has emerged as a promising powe...
Electrochemical treatment can be an effective approach for degrading recalcitrant organic contaminan...
Author name used in this publication: X. Z. LiAuthor name used in this publication: B. X. ZhaoAuthor...
This work investigates the degradation rate of 4-cholorophenol using Titanium dioxide photocatalysts...
The Design of Experiment (DoE) technique has been used to investigate the photo-electrochemical remo...
Industry development, Earth’s population growth, ever increasing need for greater pharmaceuticals pr...
Photoelectrocatalytic (PEC) water treatment is a promising technology for organic pollution abatemen...
Multiple discs coated with hierarchically-organized TiO2 anatase nanotubes served as photoelectrodes...
Multiple discs coated with hierarchically-organized TiO2 anatase nanotubes served as photoelectrodes...
Photoelectrocatalytic (PEC) degradation of organic pollutants into CO2 and H2O is a promising strate...
TiO2 nanotube was fabricated using anodic oxidation method. The samples were characterized by scanni...
Abstract Many of the harmful pollutants such as organic compounds in water are generated diseases i...
The study focused on the application of water treatment in two ways using immobilized TiO2. First, t...
Removal of persistent pollutants from water by photoelectrocatalysis has emerged as a promising powe...
2008-2009 > Academic research: refereed > Publication in refereed journalAccepted ManuscriptPublishe
Removal of persistent pollutants from water by photoelectrocatalysis has emerged as a promising powe...
Electrochemical treatment can be an effective approach for degrading recalcitrant organic contaminan...
Author name used in this publication: X. Z. LiAuthor name used in this publication: B. X. ZhaoAuthor...
This work investigates the degradation rate of 4-cholorophenol using Titanium dioxide photocatalysts...
The Design of Experiment (DoE) technique has been used to investigate the photo-electrochemical remo...
Industry development, Earth’s population growth, ever increasing need for greater pharmaceuticals pr...