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Layer-by-Layer Assembly and Photocatalytic Activity of Titania Nanosheets on Coal Fly Ash Microspheres

机译:煤粉粉煤灰微球上的逐层组装和光催化活性

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摘要

In order to address the problem with titania distribution and recovery, series of Ti0.91O2/CFA photocatalysts (Ti0.91O2/CFA-n, n=2,4,6, and 8) were fabricated by assembling Ti0.91O2 nanosheets on coal fly ash (CFA) microspheres via the layer-by-layer assembly (LBLA) process and characterized by scanning electron microscopy (SEM), X-ray diffraction analysis (XRD), N2-sorption, and ultraviolet-visible absorption (UV-vis) techniques. The SEM images and UV-vis spectra illustrated that Ti0.91O2 nanosheets were immobilized successfully on the CFA by the LBLA approach and changed the characteristics of CFA noticeably. The photocatalytic activity of Ti0.91O2/CFA was evaluated by the photodegradation of methylene blue (MB) under UV irradiation. The results demonstrated that Ti0.91O2/CFA-6 showed the best photocatalytic activity among the series of Ti0.91O2/CFA irradiated for 60 min, with a decoloration rate above 43%. After photocatalysis, the Ti0.91O2/CFA could be easily separated and recycled from aqueous solution and Ti0.91O2 nanosheets were still anchored on the CFA.
机译:为了解决二氧化钛分布和恢复的问题,通过组装Ti0.91O2纳米晶片在煤炭上制造一系列Ti0.91O2 / CFA光催化剂(Ti0.91O2 / CFA-N,N = 2,4,6和8)飞灰(CFA)微球通过层 - 逐层组件(LBLA)工艺,其特征在于扫描电子显微镜(SEM),X射线衍射分析(XRD),N 2吸附和紫外线可见吸收(UV-Vis )技术。 SEM图像和UV-VIS光谱显示,通过LBLA方法在CFA上成功地固定Ti0.91O2纳米片,并明显改变CFA的特征。通过UV照射下亚甲基蓝(MB)的光降解来评估Ti0.91O2 / CFA的光催化活性。结果表明,Ti0.91O2 / CFA-6在辐射60分钟的Ti0.91O2 / CFA系列中的最佳光催化活性,脱色率高于43%。光催化后,Ti0.91O2 / CFA可以容易地分离并从水溶液中再循环,Ti0.91O2纳米晶片仍然锚固在CFA上。

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