Water Science and Technology 2012-01-01

Electrochemical degradation of 4-chlorophenol in aqueous solution using modified PbO(2) anode.

X Y Duan, F Ma, L M Chang

Index: Water Sci. Technol. 66(11) , 2468-74, (2012)

Full Text: HTML

Abstract

The electrochemical oxidation of 4-chlorophenol (4-CP) in aqueous solution was studied by electrochemical oxidation using modified PbO(2) electrode as anode. The influence of several operating parameters, such as initial 4-CP concentration, applied current density, and supporting electrolyte (Na(2)SO(4)) concentration was investigated. Ultraviolet spectroscopy and total organic carbon (TOC) measurements were conducted to study the kinetics of 4-CP electrochemical reaction and the mineralization efficiency of 4-CP. The experimental results showed that the 4-CP degradation always followed a pseudo-first-order kinetics. The higher mineralization of 4-CP and the lower current efficiency (CE) were obtained by the lower initial 4-CP concentration. The applied current density showed a positive influence on the degradation of 4-CP and the removal of TOC, but a higher applied current density led to a lower CE. Although Na(2)SO(4) concentration of 0.05 M resulted in a higher 4-CP and TOC removal, the result of one-way analysis of variance (ANOVA) indicates that Na(2)SO(4) concentration is not the significant parameter for 4-CP removal in electrochemical oxidation.


Related Compounds

  • Lead monoxide
  • 4-Chlorophenol

Related Articles:

Structural investigations on sodium-lead borophosphate glasses doped with vanadyl ions.

2012-04-12

[J. Phys. Chem. A 116(14) , 3547-55, (2012)]

Electrochemical degradation of the dimethyl phthalate ester on a fluoride-doped Ti/β-PbO2 anode.

2014-08-01

[Chemosphere 109 , 187-94, (2014)]

A (S)TEM gas cell holder with localized laser heating for in situ experiments.

2013-04-01

[Microsc. Microanal. 19(2) , 470-8, (2013)]

Preparation of lead oxide nanoparticles from cathode-ray tube funnel glass by self-propagating method.

2012-05-15

[J. Hazard. Mater. 215-216 , 90-7, (2012)]

Kinetics of the reductive dissolution of lead(IV) oxide by iodide.

2012-06-05

[Environ. Sci. Technol. 46(11) , 5859-66, (2012)]

More Articles...