Catalytic effect of Fe2+, Cu2+ and UVA light on the electrochemical degradation of nitrobenzene using an oxygen-diffusion cathode

被引:169
作者
Brillas, E [1 ]
Baños, MA [1 ]
Camps, S [1 ]
Arias, C [1 ]
Cabot, PL [1 ]
Garrido, JA [1 ]
Rodríguez, RM [1 ]
机构
[1] Univ Barcelona, Fac Quim, Dept Quim Fis, LCTEM, E-08028 Barcelona, Spain
关键词
D O I
10.1039/b312445b
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
The electrochemical treatment of 100 mg L-1 nitrobenzene solutions in 0.05 M Na2SO4 in the pH range 2.0-4.0 at 25degreesC has been comparatively studied in the presence of Fe2+, Cu2+ and/or UVA light as catalysts using an undivided cell with a Pt anode and an O-2-diffusion cathode able to electrogenerate H2O2. A quite slow degradation is found for the solution with 1 mM Cu2+ due to the low production of oxidizing hydroxyl radical (OHcircle) from anodic oxidation of water and the action of the Cu2+/Cu+ system. Electro-Fenton treatment with 1 mM Fe2+ leads to a high concentration of OHcircle in the medium from Fenton's reaction, but less than 70% of the nitrobenzene is mineralized since stable complexes of Fe3+ with products are formed. These complexes are quickly photodecomposed in the photoelectro-Fenton treatment of the same solution under UVA irradiation, leading to overall depollution at low currents. Complete degradation is also feasible using 1 mM Cu2+ and 1 mM Fe2+ at high current because OHcircle can slowly destroy the complexes between Cu2+ and intermediates. The positive synergetic effect of all catalysts allows the quickest nitrobenzene mineralization using 1 mM Cu2+ and 1 mM Fe2+ under UVA irradiation. The nitrobenzene decay always follows a pseudo-first-order reaction. Aromatic products such as o-nitrophenol, m-nitrophenol, p-nitrophenol and 4-nitrocatechol have been followed by reverse-phase chromatography. Nitrate ions are formed from oxidation of nitroaromatic; products. Generated carboxylic acids such as maleic, fumaric and oxalic have been detected by ion-exclusion chromatography. The different evolution of complexes of oxalic with Cu2+ and Fe3+ explains the influence of the catalysts on nitrobenzene degradation.
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页码:314 / 322
页数:9
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