Optimization of the heterogeneous photo Fenton degradation of a model pollutant, benzyl alcohol using UV/ZnO process

Among advanced oxidation processes (AOPs), the photo chemically enhanced Fenton reaction (photo-Fenton) may be particularly effective for the treatment of industrial wastewater. In the present work, ferrous sulphate/ferrioxalate with H2O2 and ZnO particles was tested as a combined homogeneous and heterogeneous photo-Fenton process for the degradation of the model organic pollutant, benzyl alcohol. Enhancement in the photo-Fenton processes has been observed by the addition of ZnO. UV/ferrous/H2O2/ZnO and UV/ferrioxalate/H2O2/ZnO processes are found to be more efficient than the individual photo-Fenton and UV/ZnO processes. The use of ferrioxalate in the combined process is found to be more advantageous. The effect of various experimental parameters such as pH, initial H2O2, Fe2+, Fe3+, ZnO and pollutant concentrations on these combined photocatalytic process have been investigated. All these parameters strongly influenced the removal rate. The efficiency of chemical oxygen demand (COD) removal was tested. The optimum operating conditions of these combined processes are reported.

Optimization of the heterogeneous photo Fenton degradation of a model pollutant, benzyl alcohol using UV/ZnO process

Among advanced oxidation processes (AOPs), the photo chemically enhanced Fenton reaction (photo-Fenton) may be particularly effective for the treatment of industrial wastewater. In the present work, ferrous sulphate/ferrioxalate with H2O2 and ZnO particles was tested as a combined homogeneous and heterogeneous photo-Fenton process for the degradation of the model organic pollutant, benzyl alcohol. Enhancement in the photo-Fenton processes has been observed by the addition of ZnO. UV/ferrous/H2O2/ZnO and UV/ferrioxalate/H2O2/ZnO processes are found to be more efficient than the individual photo-Fenton and UV/ZnO processes. The use of ferrioxalate in the combined process is found to be more advantageous. The effect of various experimental parameters such as pH, initial H2O2, Fe2+, Fe3+, ZnO and pollutant concentrations on these combined photocatalytic process have been investigated. All these parameters strongly influenced the removal rate. The efficiency of chemical oxygen demand (COD) removal was tested. The optimum operating conditions of these combined processes are reported.

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Usak University Journal of Material Sciences-Cover
  • ISSN: 2147-2785
  • Başlangıç: 2015
  • Yayıncı: Uşak Üniversitesi
Sayıdaki Diğer Makaleler

Mathematical modelling of the Eddy current and its application to the material examinations

Murat Vural -

Optimization of the heterogeneous photo Fenton degradation of a model pollutant, benzyl alcohol using UV/ZnO process

Manohar SHANTHİ, Elias GİNİSH, Duraisamy Rajamanickam -

Niobium boride coating on the surface of AISI 1010 by a duplex treatment

S. Serdar PAZARLIOĞLU, Özkan KON, Şaduman ŞEN, Uğur Şen -

Role of nanofiller additions on mechanical and dry sliding wear behavior of epoxy nanocomposites

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Synthesis, characterization and optical properties of ZnO-CuO-Al2O3 semiconducting films on glass substrates by sol-gel technique

Erdal ÇELİK, Funda ÖZTOPRAK, M. Faruk EBEOĞLUGİL, İşıl BİRLİK, Recep YİĞİT, Metin Tanoğlu And Hasan Aslan -, Hasan Aslan

Study of drilling of multi-material (CFRP/Al) using Taguchi and statistical techniques

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Analysis of tube end forming process using Taguchi design of experiments

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Analysis of force fluctuation in order to determine structural defects in hot strip rolling mills

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Development of Al-Si-Fe/Rice husk ash particulate composites synthesis by double stir casting method

Victor Sunday Aigbodion -

Hardness improvement of Pb75% - Sb15% - Sn10% bearing alloy through reinforcement with 5% v/v SiO2 particulates

Paul İhom -