Affiliations: Department of Environmental Engineering, Harbin
Institute of Technology, Harbin 150001, China | School of Life Science and Chemistry, Harbin College,
Harbin 150001, China
Abstract: An innovative photoelectrode,
B_2O_3·TiO_2/Ti
electrode, was prepared by galvanostaticanodisation. The morphology and
crystalline examination results indicated that the anatase was the dominant
component. The kinetics of photoelectrocatalytic (PEC) degradation of humic
acid (HA) was investigated; the results demonstrated that effects from
strongness to weakness on the photoelectrocatalytic degraded rate of humic
acid: power of UV-lamp, area of TiO_2 film, bias, original
concentration of humic acid solution. The optimum conditions were power of
UV-lamp 125 W, area of TiO_2 film 42.0
cm^2, bias 1.4 V, original concentration of humic acid
solution 5 mg/L in this PEC reaction system.