Jaramillo-Fierro Ximena, Cuenca Guisella
Departamento de Química, Facultad de Ciencias Exactas y Naturales, Universidad Técnica Particular de Loja, San Cayetano Alto, Loja 1101608, Ecuador.
Ingeniería Química, Facultad de Ciencias Exactas y Naturales, Universidad Técnica Particular de Loja, San Cayetano Alto, Loja 1101608, Ecuador.
Int J Mol Sci. 2024 Apr 15;25(8):4367. doi: 10.3390/ijms25084367.
This study focuses on synthesizing and characterizing a graphene oxide/ZnTiO/TiO (GO/ZTO/TO) composite to efficiently remove methylene blue (MB) from water, presenting a novel solution to address industrial dye pollution. GO and ZTO/TO were synthesized by the modified Hummers and sol-gel methods, respectively, while GO/ZTO/TO was prepared using a hydrothermal process. The structural and surface properties of the composite were characterized using various analytical techniques confirming the integration of the constituent materials and suitability for dye adsorption. The study revealed that GO/ZTO/TO exhibits an adsorption capacity of 78 mg g for MB, with only a 15% reduction in adsorption efficiency until the fifth reuse cycle. Furthermore, the study suggests optimal adsorption near neutral pH and enhanced performance at elevated temperatures, indicating an endothermic reaction. The adsorption behavior fits the Langmuir isotherm, implying monolayer adsorption on homogeneous surfaces, and follows pseudo-second-order kinetics, highlighting chemical interactions at the surface as the rate-limiting step. The photocatalytic degradation of MB by GO/ZTO/TO follows pseudo-first-order kinetics, with a higher rate constant than that of GO alone, demonstrating the enhanced photocatalytic activity of the composite. In conclusion, GO/ZTO/TO emerges as a promising and sustainable approach for water purification, through an adsorption process and subsequent photocatalytic degradation.
本研究聚焦于合成并表征一种氧化石墨烯/锌钛氧化物/二氧化钛(GO/ZTO/TO)复合材料,以高效去除水中的亚甲基蓝(MB),为解决工业染料污染问题提供了一种新的解决方案。GO和ZTO/TO分别通过改进的Hummers法和溶胶 - 凝胶法合成,而GO/ZTO/TO则采用水热法制备。使用各种分析技术对复合材料的结构和表面性质进行了表征,证实了组成材料的整合以及对染料吸附的适用性。研究表明,GO/ZTO/TO对MB的吸附容量为78 mg/g,直至第五次重复使用循环,吸附效率仅降低15%。此外,研究表明在接近中性pH值时吸附效果最佳,且在高温下性能增强,表明这是一个吸热反应。吸附行为符合Langmuir等温线,意味着在均匀表面上的单层吸附,并遵循准二级动力学,突出了表面化学相互作用作为限速步骤。GO/ZTO/TO对MB的光催化降解遵循准一级动力学,速率常数高于单独的GO,证明了该复合材料增强的光催化活性。总之,通过吸附过程及随后的光催化降解,GO/ZTO/TO成为一种有前景的可持续水净化方法。