4.7 Article

Visible light activity of BaFe1-xCuxO3-delta as photocatalyst for atrazine degradation

期刊

ECOTOXICOLOGY AND ENVIRONMENTAL SAFETY
卷 163, 期 -, 页码 620-628

出版社

ACADEMIC PRESS INC ELSEVIER SCIENCE
DOI: 10.1016/j.ecoenv.2018.07.106

关键词

BaFe1-xCuxO3; Photocatalytic degradation; Nanomaterials; Wastewater treatment

资金

  1. Academy of Scientific Research and Technology (ASRT) of the Ministry of scientific research in Egypt [35167NE]
  2. Ministry of Foreign Affairs and of the Research in France [35167NE]
  3. Fonds Europeen de Developpement Regional (FEDER)
  4. CNRS, Region Hauts-de-France
  5. Chevreul Institute [FR 2638]
  6. Ministere de l'Education Nationale de l'Enseignement Superieur et de la Recherche

向作者/读者索取更多资源

Nanosized BaFe1-xCuxO3 powders were prepared using the Pechini method. To limit grain growth and agglomeration, the temperature of calcination was limited to 800 degrees C. For all samples, the cubic form of BaFeO(2.75 )was predominant with minor additional phases. Cu doping was found to have a remarkable effect on the structural cubic unit cell parameter as the Cu concentration increased. As shown by XRD,the samples were in the nanometer size range (17-63 nm). However, as the Cu concentration increases, the agglomeration increases with the highest surface area for the BaFe0.95Cu0.05O3 composition, which also displays the highest photocatalytic atrazine degradation. For this sample, more than 90% degradation of atrazine was obtained at the optimum conditions (120 min irradiation under visible light at pH 11 using 0.75 mg of the catalyst). The Atrazine degradation was found to follow the pseudo-order kinetics. GC/MS was used to detect the intermediates and the reaction pathways. All the prepared samples and produced waters at the end of the experiment were found to be nontoxic.

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