Evaluation of the photocatalytic ability of a sol-gel-derived MgO-ZrO2 oxide material

Author:

Ciesielczyk Filip1,Szczekocka Weronika1,Siwińska-Stefańska Katarzyna1,Piasecki Adam2,Paukszta Dominik1,Jesionowski Teofil1

Affiliation:

1. Poznan University of Technology, Faculty of Chemical Technology, Institute of Chemical Technology and Engineering, Berdychowo 4, PL-60965Poznan, Poland

2. Poznan University of Technology, Faculty of Mechanical Engineering and Managment, Institute of Materials Science and Engineering, Jana Pawla II 24, PL-60965Poznan, Poland

Abstract

AbstractThis paper deals with the synthesis and characterization of a novel group of potential photocatalysts, based on sol-gel-derived MgO-ZrO2 oxide material. The material was synthesized in a typical sol-gel system using organic precursors of magnesia and zirconia, ammonia as a promoter of hydrolysis and methanol as a solvent. All materials were thoroughly analyzed, including morphology and particle sizes, chemical composition, identification of characteristic functional groups, porous structure parameters and crystalline structure. The proposed methodology of synthesis resulted in obtaining pure MgO-ZrO2 oxide material with micrometric-sized particles and a relatively high surface area. The samples underwent an additional calcination process which led to the crystalline phase of zirconia being formed. The key element of the study was the evaluation of the effectiveness of decomposition of C.I. Basic Blue 9 dye. It was shown that the calcined materials exhibit both satisfactory adsorption and photocatalytic activity with respect to the decomposition of a selected model organic impurity. Total dye removal varied in the range of 50-70%, and was strongly dependent on process parameters such as quantity of photocatalyst, time of irradiation, and the addition of promoters.

Publisher

Walter de Gruyter GmbH

Subject

Materials Chemistry,General Chemistry

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