Title of article :
Effect of hydrogen peroxide on the destruction of organic contaminants-synergism and inhibition in a continuous-mode photocatalytic reactor
Author/Authors :
Dionysiou، نويسنده , , Dionysios D. and Suidan، نويسنده , , Makram T. and Baudin، نويسنده , , Isabelle and Laîné، نويسنده , , Jean-Michel، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2004
Pages :
11
From page :
259
To page :
269
Abstract :
The effect of hydrogen peroxide on the photocatalytic degradation of organic contaminants in water was investigated using a TiO2-rotating disk photocatalytic reactor (RDPR) operated in a continuous-mode and at steady state. The experiments were performed at pH 3.0, in the presence of near-UV radiation, and using 4-chlorobenzoic acid (4-CBA) as a model non-volatile organic contaminant at influent concentration of 300 μmol l−1. Experiments were performed at concentrations of hydrogen peroxide in the range 0–10.74 mmol l−1. Addition of hydrogen peroxide at small concentrations (<2 mmol l−1) had a synergistic effect and increased considerably the rates of photocatalytic reactions. An optimum influent hydrogen peroxide concentration was observed at 1.6 mmol l−1, which caused an increased in the rates of 4-CBA degradation and total organic carbon (TOC) mineralization by 1.72 and 2.13 times, respectively. This corresponded to an optimum oxidant to contaminant molar ratio of 5.33. At higher concentrations, hydrogen peroxide was found to cause an inhibiting effect on the photocatalytic reactions. The synergistic and inhibiting effects of hydrogen peroxide were rationalized based on the reaction rate constants between relevant radical species.
Keywords :
photocatalysis , Continuous , Photocatalytic , Chlorobenzoic acid , H2O2 , radicals , Hydroxyl , Superoxide , Perhydroxyl , Reaction rate constants , water treatment , Detoxification , contaminants , Rotating disk , TIO2 , Reactor , organic , Hydrogen peroxide , Green engineering , Destruction
Journal title :
Applied Catalysis B: Environmental
Serial Year :
2004
Journal title :
Applied Catalysis B: Environmental
Record number :
1446871
Link To Document :
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