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首页> 外文期刊>International Journal of Photoenergy >Rapid Photocatalytic Degradation of Methylene Blue under High Photon Flux UV Irradiation: Characteristics and Comparison with Routine Low Photon Flux
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Rapid Photocatalytic Degradation of Methylene Blue under High Photon Flux UV Irradiation: Characteristics and Comparison with Routine Low Photon Flux

机译:高光子通量紫外线辐射下亚甲基蓝的快速光催化降解:特性与常规低光子通量的比较

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This study examined the photocatalytic degradation efficiency under high UV photon flux (intensity normalized by photon energy) irradiation; the incident UV photon flux was1.71×10−6–3.13×10−6einsteincm−2 s−1made by a super high-intensity UV apparatus. A comparative study between high photon flux photocatalytic process and routine low photon flux photocatalytic process for methylene blue degradation has been made in aqueous solution. The experimental results showed that under the best conditions of high UV photocatalytic reaction 99% decolorization and 95% TOC removal of 20 mg L−1methylene blue could be achieved in 30 s and 120 s of UV irradiation time, respectively. To the best of our knowledge, photocatalytic decolorization and photocatalytic degradation of dyes in such a short time has not been reported. Aiming at the low photonic efficiency in high photon flux photocatalytic process, we found that reducing the density of excited electron-hole appropriately could improve initial apparent photonic efficiency effectively. The TOC experiments under high UV photon flux showed a faster mineralization rate and a different mineralization process compared to that under low UV photon flux.
机译:这项研究检查了高紫外光子通量(通过光子能量归一化强度)照射下的光催化降解效率。用超高强度紫外仪器测得的入射紫外光子通量为1.71×10-6–3.13×10-6爱因斯坦·cm-2 s-1。对水溶液中亚甲蓝降解的高光子通量光催化工艺与常规低光子通量光催化工艺进行了比较研究。实验结果表明,在最佳的紫外光催化反应条件下,分别在30 s和120 s的时间内可实现99脱色和95%TOC去除20 mg L-1亚甲基蓝。据我们所知,尚未报道在如此短的时间内染料的光催化脱色和光催化降解。针对高光子通量光催化过程中的低光子效率,我们发现适当降低激发电子空穴的密度可以有效提高初始表观光子效率。与低紫外光子通量相比,高紫外光子通量下的TOC实验显示出更快的矿化速率和不同的矿化过程。

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