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由发光二极管照射和可见光诱导的绿色半导体薄膜对亚甲基蓝的光催化降解。

The photocatalytic degradation of methylene blue by green semiconductor films that is induced by irradiation by a light-emitting diode and visible light.

作者信息

Yang Chih-Chi, Doong Ruey-An, Chen Ku-Fan, Chen Giin-Shan, Tsai Yung-Pin

机构信息

a Department of Civil Engineering , National Chi Nan University , Nantou , Taiwan, Republic of China.

b Department of Environmental Engineering , National Chiao Tung University , Hsinchu , Taiwan, Republic of China.

出版信息

J Air Waste Manag Assoc. 2018 Jan;68(1):29-38. doi: 10.1080/10962247.2017.1358222.

Abstract

UNLABELLED

This study develops a low-energy rotating photocatalytic contactor (LE-RPC) that has Cu-doped TiO films coated on stainless-steel rotating disks, to experimentally evaluate the efficiency of the degradation and decolorization of methylene blue (MB) under irradiation from different light sources (visible 430 nm, light-emitting diode [LED] 460 nm, and LED 525 nm). The production of hydroxyl radicals is also examined. The experimental results show that the photocatalytic activity of TiO that is doped with Cu is induced by illumination with visible light and an LED. More than 90% of methylene blue at a 10 mg/L concentration is degraded after illumination by visible light (430 nm) for 4 hr at 20 rpm. This study also demonstrates that the quantity of hydroxyl radicals produced is directly proportional to the light energy intensity. The greater the light energy intensity, the greater is the number of hydroxyl radicals produced.

IMPLICATIONS

The CuO-doped anatase TiO powder was successfully synthesized in this study by a sol-gel method. The catalytic abilities of the stainless-steel film were enhanced in the visible light regions. This study has successfully modified the nano-photocatalytic materials to drop band gap and has also successfully fixed the nano-photocatalytic materials on a substratum to effectively treat dye wastewater in the range of visible light. The results can be useful to the development of a low-energy rotating photocatalytic contactor for decontamination purposes.

摘要

未标注

本研究开发了一种低能量旋转光催化接触器(LE-RPC),其在不锈钢旋转盘上涂覆有铜掺杂的TiO薄膜,以实验评估在不同光源(可见光430 nm、发光二极管[LED]460 nm和LED 525 nm)照射下亚甲基蓝(MB)的降解和脱色效率。还检测了羟基自由基的产生。实验结果表明,铜掺杂的TiO的光催化活性由可见光和LED光照诱导。在20 rpm下用可见光(430 nm)照射4小时后,10 mg/L浓度的亚甲基蓝有90%以上被降解。本研究还表明,产生的羟基自由基数量与光能强度成正比。光能强度越大,产生的羟基自由基数量就越多。

启示

本研究通过溶胶-凝胶法成功合成了掺CuO的锐钛矿型TiO粉末。不锈钢薄膜在可见光区域的催化能力得到增强。本研究成功地对纳米光催化材料进行了改性以降低带隙,并且还成功地将纳米光催化材料固定在基底上,以在可见光范围内有效处理染料废水。该结果对于开发用于去污目的的低能量旋转光催化接触器可能有用。

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