Photocatalytic degradation of Rhodamine B dye with TiO2 immobilized on SiC foam using full factorial design

Author:

Allé Paul Henri,Fanou Guy Didier,Robert Didier,Adouby KopoinORCID,Drogui Patrick

Abstract

AbstractTextile effluents treatment is one of the important environmental challenges nowadays. Photocatalysis has proven its effectiveness for the removal of recalcitrant compounds, and it is considered as a green technology for the treatment of effluents. However, good photocatalytic yield is strongly related to the operating parameters. In this study, a supported TiO2 on a β-SiC foam was tested for the removal of Rhodamine B (RhB). The photocatalytic discoloration of RhB synthetic solution in our condition was about 90%. The effects of each parameter were assessed through a full factorial design. Sixteen tests were carried out and the response was RhB removal. The most influent parameters were TiO2/β-SiC foam quantity, the concentration of RhB, the volume of H2O2 and pH. Their contributions on RhB removal were, respectively, 53.01, 30.49, 2.7, and 2.48% according to Pareto diagram. Analysis of the coefficients shows that initial concentration of RhB and volume of H2O2 had a negative effect on the response. However, the quantity of TiO2/β-SiC foam and pH had a positive effect on the response. The influence of the flow rate on the process was assessed. The results showed a slight increase in RhB removal. Furthermore, the aging test of TiO2/β-SiC foam on the photocatalytic efficiency was carried out after ten successive photocatalysis tests. Only 6.7% loss of yield was observed. These results are very encouraging for an application at the industrial scale.

Publisher

Springer Science and Business Media LLC

Subject

Water Science and Technology

Reference44 articles.

1. Aliabadi M, Sagharigar T (2011) Photocatalytic removal of Rhodamine B from aqueous solutions using TiO2 nanocatalyst. J Appl Environ Biol Sci 1:620–626

2. Al-Kahtani AA (2016) Photocatalytic degradation of Rhodamine B dye in wastewater using gelatin/CuS/PVA nanocomposites under solar light irradiation. J Biomater Nanobiotechnol 08:66. https://doi.org/10.4236/jbnb.2017.81005

3. Ammari Y, Elatmani K, Qourzal S et al (2015) Etude cinétique de la dégradation photocatalytique du colorant bleu de méthylène en présence de dioxyde de titane (TiO2), en suspension aqueuse (Kinetic study of the photocatalytic degradation of methylene blue dye in the presence of titanium dioxide (TiO2), in aqueous suspension). J Mater Environ Sci 7:671–678

4. Ano J, Assémian AS, Yobouet YA et al (2019) Electrochemical removal of phosphate from synthetic effluent: a comparative study between iron and aluminum by using experimental design methodology. Process Saf Environ Prot 129:184–195. https://doi.org/10.1016/j.psep.2019.07.003

5. Ansari SA, Khan MM, Ansari MO, Cho MH (2016) Nitrogen-doped titanium dioxide (N-doped TiO2) for visible light photocatalysis. New J Chem 40:3000–3009. https://doi.org/10.1039/C5NJ03478G

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