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Efficient visible light photo-Fenton-like degradation of organic pollutants using in situ surface-modified BiFeO_3 as a catalyst 被引量:10

Efficient visible light photo-Fenton-like degradation of organic pollutants using in situ surface-modified BiFeO_3 as a catalyst
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摘要 The visible light photo-Fenton-like catalytic performance of BiFeO3 nanoparticles was investigated using Methyl Violet (MV), Rhodamine B (RhB) and phenol as probes. Under optimum conditions, the pseudo first-order rate constant (k) was determined to be 2.21 × 10^-2, 5.56 × 10^-2 and 2.01 × 10^-2 min〈 for the degradation of MV (30 μmol/L), RhB (10 μmol/L) and phenol (3 mmol/L), respectively, in the BiFeO3-H202-visible light (Vis) system. The introduction of visible light irradiation increased the k values of MV, RhB and phenol degradation 3.47, 1.95 and 2.07 times in comparison with those in dark. Generally, the k values in the BiFeO3- H202-Vis system were accelerated by increasing BiFeO3 load and H202 concentration, but decreased with increasing initial pollutant concentration. To further enhance the degradation of pollutants at high concentrations, BiFeO3 was modified with the addition of surface modifiers. The addition of ethylenediamineteraacetic acid (EDTA, 0.4 mmol/L) increased the k value of MV degradation (60 μmol/L) from 1.01 × 10.2 min^-1 in the BiFeO3-H202-Vis system to 1.30 min^-1 in the EDTA-BiFeO3-H2O2-Vis system by a factor of 128. This suggests that in situ surface modification can enable BiFeO3 nano-particles to be a promising visible light photo-Fenton-like catalyst for the degradation of organic pollutants. The visible light photo-Fenton-like catalytic performance of BiFeO3 nanoparticles was investigated using Methyl Violet (MV), Rhodamine B (RhB) and phenol as probes. Under optimum conditions, the pseudo first-order rate constant (k) was determined to be 2.21 × 10^-2, 5.56 × 10^-2 and 2.01 × 10^-2 min〈 for the degradation of MV (30 μmol/L), RhB (10 μmol/L) and phenol (3 mmol/L), respectively, in the BiFeO3-H202-visible light (Vis) system. The introduction of visible light irradiation increased the k values of MV, RhB and phenol degradation 3.47, 1.95 and 2.07 times in comparison with those in dark. Generally, the k values in the BiFeO3- H202-Vis system were accelerated by increasing BiFeO3 load and H202 concentration, but decreased with increasing initial pollutant concentration. To further enhance the degradation of pollutants at high concentrations, BiFeO3 was modified with the addition of surface modifiers. The addition of ethylenediamineteraacetic acid (EDTA, 0.4 mmol/L) increased the k value of MV degradation (60 μmol/L) from 1.01 × 10.2 min^-1 in the BiFeO3-H202-Vis system to 1.30 min^-1 in the EDTA-BiFeO3-H2O2-Vis system by a factor of 128. This suggests that in situ surface modification can enable BiFeO3 nano-particles to be a promising visible light photo-Fenton-like catalyst for the degradation of organic pollutants.
出处 《Journal of Environmental Sciences》 SCIE EI CAS CSCD 2013年第6期1213-1225,共13页 环境科学学报(英文版)
基金 supported by the National Science Foundation of China (No. 21077037,21177044,81030051)
关键词 nanoscale BiFeO3 visible light photo-Fenton-like catalysis degradation surface modification nanoscale BiFeO3 visible light photo-Fenton-like catalysis degradation surface modification
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  • 1FANG Yan-fen,HUANG Ying-ping,LIU De-fu,HUANG Yang,GUO Wei,DAVID Johnson.Photocatalytic degradation of the dye sulforhodamine-B: A comparative study of different light sources[J].Journal of Environmental Sciences,2007,19(1):97-102. 被引量:12
  • 2Bo L L, Quan X, Chen S, Zhao H M, Zhao Y Z, 2006. Degradation of p-nitrophenol in aqueous solution by microwave assisted oxidation process through a granular activated carbon fixed bed. Water Research, 40(16): 3061-3068.
  • 3Chen C C, Zhao W, Lei P X, Zhao J C, Serponer N, 2004. Photosensitized degradation of dyes in polyoxometalate solutions versus TiO2 dispersions under visible-light irra- diation: Mechanistic implications. Chemistry-A European Journal, 10(8): 1956-1965.
  • 4Gao Z Q, Yang S G, Sun C, Hong J, 2007. Microwave assisted photocatalytic degradation of pentachlorophenol in aqueous TiO2 nanotubes suspension. Separation and Purification Technology, 58(1): 24-31.
  • 5Hong J, Sun C, Yang S G, Liu Y Z, 2006. Photocatalytic degradation of Methylene Blue in TiO2 aqueous suspensions using microwave powered electrodeless discharge lamps. Journal of Hazardous Materials, 133(1-3): 162-166.
  • 6Horikoshi S, Hidaka H, Serpone N, 2002. Environmental remediation by an integrated microwave/UV-illumination method. 1. Microwave-assisted degradation of Rhodamine-B dye in aqueous TiO2 dispersions. Environmental Science and Technology, 36(6): 1357-1366.
  • 7Horikoshi S, Saitou A, Hidaka H, Serpone N, 2003. Environmental remediation by an integrated microwave/UV illumination method. V: Thermal and nonthermal effects of microwave radiation on the photocatalyst and on the photodegradation of Rhodamine-B under UV/Vis radiation. Environmental Science and Technology, 37(24): 5813- 5822.
  • 8Hu X F, Mohamood T, Ma W H, Chen C C, Zhao J C, 2006. Oxidative decomposition of Rhodamine B dye in the presence of VO2^+ and/or Pt(IV) under visible light irradiation: N-deetbylation, chromophore cleavage, and mineralization. Journal of Physical Chemistry B, 110(51): 26012-26018.
  • 9Lei P X, Chen C C, Yang J, Ma W H, Zhao J C, Zang L, 2005. Degradation of dye pollutants by immobilized polyoxometalate with H2O2 under visible-light irradiation. Environmental Science and Technology, 39(21): 8466- 8474.
  • 10Li J P, Zhang X, Ai Z H, Jia F L, Zhang L Z, Lin J, 2007. Efficient visible light degradation of Rhodamine B by a photoelectrochemical process based on a Bi2WO6 nanoplate film electrode. Journal of Physical Chemistry C, 111(18): 6832- 6836.

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