Evaluation of Catalytic Conditions for Dye Discoloration Using Nano‐TiO2 Films: A Fractional Factorial Design Approach

分式析因设计 析因实验 纳米- 材料科学 化学工程 催化作用 因子分析 数学 复合材料 化学 有机化学 统计 工程类
作者
Felix Antonio Naranjo Castañeda,Miguel García Rocha,S. Gallardo‐Hernández,Daniel Bahena‐Uribe,J. G. Mendoza-Álvarez,Refugio Rodríguez–Vázquez
出处
期刊:ChemistrySelect [Wiley]
卷期号:9 (19)
标识
DOI:10.1002/slct.202304335
摘要

Abstract In this research, selected catalytic activity conditions of nano Cu‐TiO 2 films were evaluated through a 2 IV 4−1 Fractional Factorial Design for methylene blue discoloration. The following conditions were set at two levels: dye concentration (mg/L) (A) at 3.13 and 5.81; aeration (psi) (B) with and without; radiation (nm) (C) at 320 (UV) and 470 (Visible); and nano‐TiO 2 films (D) without and with Cu‐doping. Films were prepared by the Sol‐Gel dip‐coating method and characterized using X‐ray diffraction, revealing an anatase phase in TiO 2 ; and anatase, rutile, and brookite crystalline phases in Cu‐doped nano‐TiO 2 , with average band gap energies of 3.82 and 3.77 eV. The catalytic activity of films was significantly affected (p<0.05) by aeration (0.0002), radiation (0.001), and Cu‐doped nano‐TiO 2 (0.004). Dye concentration did not have a significant effect; however, the AC interaction was significant (p=0.015). A discoloration efficiency of 46.23 % was obtained with 5.81 mg/L dye concentration using Cu‐doped TiO 2 , with UV radiation and without aeration, whereas a 52.32 % efficiency was achieved with 3.13 mg/L dye concentration using non Cu‐doped TiO 2 . Using factorial designs allows us to identify the main variables and their interactions to determine the optimal conditions for the catalytic activity of nano‐TiO 2 .

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