MgO/MnO2纳米颗粒光氧化亚甲基蓝染料的研究

Hamza Laksaci , Nassima Djihane Zemani , Omar Khelifi , Muhammad Saeed , Badreddine Belhamdi , Abdelaziz Arroussi , Mohamed Trari
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引用次数: 0

摘要

尽管对金属氧化物基光催化剂进行了广泛的研究,但在保持稳定性和可扩展性的同时,如何优化其结构和缺陷特性以提高废水处理的光催化效率仍然存在挑战。本文研究了MgO/MnO2在日光照射下光氧化亚甲基蓝染料(MB)的应用。采用一锅法共沉淀法制备了MgO/MnO2。采用红外光谱(FTIR)、x射线衍射(XRD)、漫反射和电导率等对样品进行了表征。XRD结果表明,α-MnO2呈四方对称结晶,介质展宽,具有纳米晶的特征。在1.85 eV处有直接光学跃迁。电容电位图(C−2 - E)呈正斜率,具有n型特征,平带电位为−0.027 VSCE。因此,价带(1.7 VSCE)上的光孔将水氧化成活性自由基•OH,参与了MB矿化。通过太阳能光降解MB,评价了纳米材料的光催化性能。结果表明,随着催化剂负荷的增加和初始甲基溴浓度的降低,甲基溴的去除率升高。该方法合成的MgO/MnO2催化剂在10 mg/L染料浓度和75 mg/L催化剂用量的最佳条件下,对MB的降解率达到87%。本研究提出了一种有前途的策略,通过掺杂MgO来增强MnO2的光催化活性,从而提高其性能,并有助于更深入地了解潜在的光催化机制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Sunlight responsive photo-oxidation of methylene blue dye using MgO/MnO2 nanoparticles
Despite extensive research on metal oxide-based photocatalysts, challenges remain in optimizing their structural and defect properties to enhance photocatalytic efficiency for wastewater treatment, while maintaining stability and scalability. Herein, the application of MgO/MnO2 for the photo-oxidation of methylene blue dye (MB), has been investigated under sunlight irradiations. The MgO/MnO2 was prepared by co-precipitation in a one pot synthetic route. The resulted samples were characterized by FTIR, XRD, diffuse reflectance and electrical conductivity. The XRD showed that α-MnO2 crystallizes in tetragonal symmetry with a medium broadening, characteristic of Nano-crystallites. A direct optical transition at 1.85 eV was determined from the diffuse reflectance. The capacitance-potential graph (C−2 - E) exhibits a positive slope, characteristic of n-type behavior with a flat band potential of 0.027 VSCE. Hence, the photoholes in the valence band (1.7 VSCE) oxidize water into reactive radicals OH, involved in the MB mineralization. The photocatalytic capability of Nano-materials was assessed through photodegradation of MB by solar light. Results showed that the MB elimination rate rises with increasing in catalyst load and the declines in the initial MB concentration. The catalytic behavior of MgO/MnO2 synthesized by this method exhibits excellent efficiency, achieving 87 % degradation of MB under optimal conditions: 10 mg/L dye concentration and 75 mg/L catalyst dosage using the MgMn-2 catalyst. This research proposes a promising strategy to enhance the photocatalytic activity of MnO2 by doping it with MgO, thereby improving its performance and contributing to a deeper understanding of the underlying photocatalytic mechanisms.
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