El Mersly Lekbira, El Mouchtari El Mountassir, Moujahid El Mostafa, Briche Samir, Alaoui Tahiri Abdelaaziz, Forano Claude, Prévot Vanessa, Rafqah Salah
Laboratoire de Chimie Analytique et Moléculaire, Faculté Polydisciplinaire de Safi, Université Cadi Ayyad, Sidi Bouzid, B.P. 4162, 46000, Safi, Morocco.
Laboratoire Physico-Chimie Des Matériaux, Faculté Des Sciences, Université Chouaib Doukkali, EL Jadida, Morocco.
Environ Sci Pollut Res Int. 2023 Feb;30(9):24575-24589. doi: 10.1007/s11356-022-23832-w. Epub 2022 Nov 7.
Nanocomposites based on hydrozincite-TiO and copper-doped HZ-xCu-TiO (x = 0.1; 0.25; 0.35) were synthesized in a single step using the urea method. The samples were characterized by XRD, FTIR, SEM/TEM, and DRS. The study of adsorption capacity and photocatalytic efficiency of these nanocomposites have been tested on a pharmaceutical pollutant, mefenamic acid (MFA). Kinetic study of removal of MFA indicates that this pollutant was adsorbed on the surface of the synthesized phases, according to Langmuir's model. Such adsorption proved to be well adapted in a kinetic pseudo-second-order model with capacity of 13.08 mg/g for HZ-0.25Cu-TiO. Subsequently, the kinetics of photocatalytic degradation under UV-visible irradiation was studied according to several parameters, which allowed us to optimize our experimental conditions. The nanocomposite HZ-0.25Cu-TiO showed significant removal efficiency of MFA. Elimination rate reached 100% after 20 min under UV-vis irradiation, and 77% after 7 h under visible light irradiation. Repeatability tests have shown that this nanocomposite is extremely stable after six photocatalytic cycles. By-products of MFA were detected by LC/MS. These photoproducts was produced by three types of reactions of hydroxylation: cyclization and cleavage of the aromatic ring. MFA underwent complete mineralization after 22 h of irradiation in the presence of the HZ-0.25Cu-TiO.
采用尿素法一步合成了基于水锌矿 - TiO以及铜掺杂的HZ - xCu - TiO(x = 0.1;0.25;0.35)纳米复合材料。通过X射线衍射(XRD)、傅里叶变换红外光谱(FTIR)、扫描电子显微镜/透射电子显微镜(SEM/TEM)和漫反射光谱(DRS)对样品进行了表征。对这些纳米复合材料对药物污染物甲芬那酸(MFA)的吸附容量和光催化效率进行了研究。MFA去除的动力学研究表明,根据朗缪尔模型,该污染物吸附在合成相的表面。这种吸附在动力学准二级模型中表现良好,HZ - 0.25Cu - TiO的吸附容量为13.08 mg/g。随后,根据几个参数研究了紫外 - 可见光照射下的光催化降解动力学,这使我们能够优化实验条件。纳米复合材料HZ - 0.25Cu - TiO对MFA表现出显著的去除效率。在紫外 - 可见光照射下20分钟后去除率达到100%,在可见光照射下7小时后达到77%。重复性测试表明,该纳米复合材料在六个光催化循环后极其稳定。通过液相色谱/质谱(LC/MS)检测到了MFA的副产物。这些光产物是由三种羟基化反应、环化反应和芳环裂解反应产生的。在HZ - 0.25Cu - TiO存在下照射22小时后,MFA实现了完全矿化。