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Highly efficient removal of crystal violet dye from water by MnO 2 based nanofibrous mesh/photocatalytic process

机译:MNO 基纳米纤维网/光催化过程

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The present study describes the potential use of 3D MnO2nanofibrous mesh as photocatalyst for removal of organic dye. The MnO2nanofibrous mesh has synthesized through facile, one-pot and cost-effective hydrothermal approach without using any template or other structure directing compounds. 3D MnO2patterns clearly depict the well-dispersed nanofibers having diameter in the range of 10–25nm, and several microns in length; the unique mesh morphology offers a large surface area to promote enhanced photocatalytic activity, and also provided a macro porous network that supported efficient oxidation. Moreover, the strong electronic cloud and high aspect ratio (HAR) MnO2nanofibers facilitated the fast oxidation of dyes molecule in a very short period of time. The designed nanostructured material was found to possess heterogeneous photocatalytic potential against the oxidative degradation of Crystal Violet (CV) dye taken as model pollutant. The photocatalytic performance of these materials was evaluated under ultra-violet as well as visible light. Best photocatalytic performance was achieved under visible light with almost complete degradation (97%) exhibited within 90min of irradiation time. Furthermore, the degradation efficiency of prepared photocatalyst was determined in presence and absence of initiator, hydrogen peroxide, and under different pH conditions. Finally, this technique can be easily scaled-up for removal of various polycyclic organic wastes that might be of potential industrial and environmental interests.
机译:本研究描述了3D MnO2 an纤维网作为去除有机染料的光催化剂的潜在使用。 MnO2 an纤维网通过容易,一锅和经济高效的水热方法合成而不使用任何模板或其他结构指示化合物。 3D MnO2Patterns清楚地描绘了直径在10-25nm的良好分散的纳米纤维,并且长度为几微米;独特的网格形态提供了大表面积,以促进增强的光催化活动,并且还提供了一种支持有效氧化的宏观多孔网络。此外,强电子云和高纵横比(HAR)MnO2Nanofibers促进了在很短的时间内染料分子的快速氧化。发现设计的纳米结构材料具有抵抗作为模型污染物的氧化紫(CV)染料的氧化降解的非均相光催化潜力。这些材料的光催化性能在紫外线和可见光下评价。在可见光下实现最佳的光催化性能,在90min的照射时间内呈现出几乎完全的降解(97%)。此外,在存在和不存在引发剂,过氧化氢和不同pH条件下,确定制备光催化剂的降解效率。最后,这种技术可以很容易地缩放,以去除可能具有潜在的工业和环境兴趣的各种多环有机废物。

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