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Degradation of Amaranth azo dye in water by heterogeneous photo-Fenton process using FeWO4 catalyst prepared by microwave irradiation.
da Cruz Severo, Eric; Anchieta, Chayene Gonçalves; Foletto, Vitória Segabinazzi; Kuhn, Raquel Cristine; Collazzo, Gabriela Carvalho; Mazutti, Marcio Antonio; Foletto, Edson Luiz.
Affiliation
  • da Cruz Severo E; Department of Chemical Engineering, Federal University of Santa Maria, Santa Maria 97105-900, Brazil E-mail: efoletto@gmail.com.
  • Anchieta CG; Department of Chemical Engineering, Federal University of Santa Maria, Santa Maria 97105-900, Brazil E-mail: efoletto@gmail.com.
  • Foletto VS; Pharmacy Undergraduate Course, Federal University of Santa Maria, Santa Maria 97105-900, Brazil.
  • Kuhn RC; Department of Chemical Engineering, Federal University of Santa Maria, Santa Maria 97105-900, Brazil E-mail: efoletto@gmail.com.
  • Collazzo GC; Department of Chemical Engineering, Federal University of Santa Maria, Santa Maria 97105-900, Brazil E-mail: efoletto@gmail.com.
  • Mazutti MA; Department of Chemical Engineering, Federal University of Santa Maria, Santa Maria 97105-900, Brazil E-mail: efoletto@gmail.com.
  • Foletto EL; Department of Chemical Engineering, Federal University of Santa Maria, Santa Maria 97105-900, Brazil E-mail: efoletto@gmail.com.
Water Sci Technol ; 73(1): 88-94, 2016.
Article in En | MEDLINE | ID: mdl-26744938
FeWO4 particles were synthesized by a simple, rapid and facile microwave technique and their catalytic properties in heterogeneous photo-Fenton reaction were evaluated. This material was employed in the degradation of Amaranth azo dye. Individual and interactive effects of operational parameters such as pH, dye concentration and H2O2 dosage on the decolorization efficiency of Amaranth dye were evaluated by 2(3) central composite design. According to characterization techniques, a porous material and a well-crystallized phase of FeWO4 oxide were obtained. Regarding the photo-Fenton reaction assays, up to 97% color and 58% organic carbon removal were achieved in the best experimental conditions. In addition, the photo-Fenton process maintained treatment efficiency over five catalyst reuse cycles to indicate the durability of the FeWO4 catalyst. In summary, the results reveal that the synthesized FeWO4 material is a promising catalyst for wastewater treatment by heterogeneous photo-Fenton process.
Subject(s)

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Oxides / Photolysis / Tungsten Compounds / Water Purification / Amaranth Dye Type of study: Evaluation_studies Language: En Journal: Water Sci Technol Journal subject: SAUDE AMBIENTAL / TOXICOLOGIA Year: 2016 Document type: Article Country of publication:

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Oxides / Photolysis / Tungsten Compounds / Water Purification / Amaranth Dye Type of study: Evaluation_studies Language: En Journal: Water Sci Technol Journal subject: SAUDE AMBIENTAL / TOXICOLOGIA Year: 2016 Document type: Article Country of publication: