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纳米氧化锌对工业废水中亚甲基蓝的高效降解及高循环稳定性

Efficient Degradation of Methylene Blue in Industrial Wastewater and High Cycling Stability of Nano ZnO.

作者信息

Liang Ping, Yang Weiye, Peng Hongyan, Zhao Shihua

机构信息

College of Physics and Electronic Engineering, Hainan Normol University, Haikou 571158, China.

The Innovation Platform for Academicians of Hainan Province, Haikou 570228, China.

出版信息

Molecules. 2024 Nov 26;29(23):5584. doi: 10.3390/molecules29235584.

Abstract

Photocatalytic degradation research has attracted significant attention in the wake of the increasingly severe global challenge of water pollution. In this study, nano-ZnO was synthesized through a straightforward method using zinc acetate anhydrous as the precursor. The experimental results revealed that annealing conditions significantly influenced the bandgap energy (Eg) of ZnO, with a positive correlation observed between the intensity of photoluminescence (PL) spectra and photocatalytic activity. Under optimal annealing conditions at 300 °C for 1.5 h, the photocatalytic degradation efficiency of methylene blue (MB) exceeded 98% within 40 min of ultraviolet (UV) irradiation, surpassing the efficiencies reported for ZnO in recent studies. This high performance underscores the excellent photocatalytic activity of the synthesized ZnO samples. Furthermore, after five photocatalytic cycles, the degradation efficiency of MB remained above 90%, and the crystalline structure of the ZnO samples remained stable, demonstrating their exceptional structural stability during the photocatalytic process. Additionally, this study examined the effects of stirring conditions and different light sources on MB degradation, providing valuable insights for future research in related fields.

摘要

随着全球水污染挑战日益严峻,光催化降解研究已引起广泛关注。在本研究中,以无水醋酸锌为前驱体,通过一种简单的方法合成了纳米氧化锌。实验结果表明,退火条件对氧化锌的带隙能量(Eg)有显著影响,光致发光(PL)光谱强度与光催化活性之间存在正相关。在300℃下退火1.5小时的最佳条件下,紫外(UV)照射40分钟内,亚甲基蓝(MB)的光催化降解效率超过98%,超过了近期研究报道的氧化锌的效率。这种高性能突出了合成的氧化锌样品优异的光催化活性。此外,经过五个光催化循环后,MB的降解效率仍保持在90%以上,氧化锌样品的晶体结构保持稳定,表明它们在光催化过程中具有出色的结构稳定性。此外,本研究考察了搅拌条件和不同光源对MB降解的影响,为相关领域的未来研究提供了有价值的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e5fd/11643390/56040b23c7e3/molecules-29-05584-g001.jpg

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