Composites and Nanocomposites Center, Moroccan Foundation for Advanced Science, Innovation and Research (MAScIR), Rabat Design Center, Rue Mohamed El Jazouli, Madinat El Irfane, 10100, Rabat, Morocco.
Laboratory of Heterocyclic Organic Chemistry, Faculty of Sciences, University Mohammed V, Rabat, Morocco.
Environ Sci Pollut Res Int. 2021 Mar;28(11):14018-14027. doi: 10.1007/s11356-020-11664-5. Epub 2020 Nov 17.
To overcome the titanium oxide limitations, FeO- and FeO-modified TiO (3:1) nanoparticles were synthesized by a humid and solid path, respectively. These nanoparticles were embedded in sodium alginate biopolymer to prepare beads with efficient adsorption and photocatalytic behaviors in cationic dye degradation under both UV and visible irradiations. Operating conditions were investigated such as initial methylene blue (MB) concentration and contact time to evaluate their impact on the process. The bead recycling was also scrutinized. We have come to the conclusion that FeO-modified TiO-Alg displayed superiorities, including expanded responsive wavelength range in the visible region (up to 700 nm), narrower band gap (1.79 eV), and better efficiency for MB removal in terms of adsorption capacities and photocatalytic effectiveness under both UV and visible irradiations. Furthermore, these beads can be effortlessly recovered from the reaction medium after the photocatalytic process and reused up to 5 cycles without any noteworthy decline in their initial properties.
为了克服二氧化钛的局限性,分别采用湿固相法合成了 FeO-和 FeO 修饰的 TiO(3:1)纳米粒子。将这些纳米粒子嵌入海藻酸钠生物聚合物中,制备了具有高效吸附和光催化性能的珠粒,可在 UV 和可见光照射下降解阳离子染料。考察了初始亚甲基蓝(MB)浓度和接触时间等操作条件,以评估它们对该过程的影响。还仔细研究了珠粒的回收。我们得出的结论是,FeO 修饰的 TiO-Alg 具有优越性,包括在可见光区域扩展响应波长范围(高达 700nm)、更窄的带隙(1.79eV)以及在 UV 和可见光照射下,吸附容量和光催化效率方面对 MB 去除的更好效果。此外,这些珠粒在光催化过程后可以从反应介质中轻松回收,并在不显著降低初始性能的情况下重复使用 5 次。