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Fabrication of a novel ZnO/MMO/CNT nanohybrid derived from multi-cationic layered double hydroxide for photocatalytic degradation of azo dye under visible light

机译:一种新型的多阳离子层状双氢氧化物衍生的ZnO / MMO / CNT纳米杂化物的制备,用于可见光下偶氮染料的光催化降解

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With the purpose of the enhancement of photocatalytic performance in the visible region and efficient electron-hole separation, we reported a facile method for the synthesis of a mixed metal oxide/ZnO/CNT (MMO/ZnO/CNT) nanohybrid derived from ZnO/Co-Ni-Al layered double hydroxide (LDH) precursor. The structural and morphological aspects of the synthesized products were characterized by X-ray diffraction, scanning electron microscopy, UV/vis diffuse reflectance spectra, and FT-IR spectroscopy. The photocatalytic activity of the synthesized ZnO/MMO/CNT nanohybrid was investigated by photocatalytic degradation of C.I. Acid Red 14, as a model pollutant, under visible light irradiation. The photocatalytic activity of ZnO/MMO/CNT was also compared with TiO2-P25, ZnO, and ZnO/Co-Ni-Al-LDH/CNT. The experimental results revealed that in comparison with other used photocatalysts, ZnO/MMO/CNT nanohybrid was an efficient photocatalyst under visible light irradiation. The effect of operational parameters including photocatalyst content, dye concentration, pH, and irradiation time on the photocatalytic removal efficiency of dye was investigated and optimized using response surface methodology approach. The photocatalyst dosage of 0.009 g, initial dye concentration of 20 mg L-1, pH of 4.12, and irradiation time of 150 min were obtained as the optimum condition. In the proposed optimum condition, the catalyst reusability tests were carried out for five runs. Negligible decrease in degradation efficiency confirmed high potential of stability and reusability for the ZnO/MMO/CNT photocatalyst.
机译:为了增强可见光区域的光催化性能和有效的电子-空穴分离,我们报道了一种简便的方法,用于合成由ZnO / Co衍生的混合金属氧化物/ ZnO / CNT(MMO / ZnO / CNT)纳米杂化物-Ni-Al层状双氢氧化物(LDH)前体。合成产物的结构和形态方面通过X射线衍射,扫描电子显微镜,UV / vis漫反射光谱和FT-IR光谱表征。通过对C.I的光催化降解研究了合成的ZnO / MMO / CNT纳米杂化物的光催化活性。在可见光照射下作为模型污染物的酸性红14。还将ZnO / MMO / CNT的光催化活性与TiO2-P25,ZnO和ZnO / Co-Ni-Al-LDH / CNT进行了比较。实验结果表明,与其他使用的光催化剂相比,ZnO / MMO / CNT纳米杂化物在可见光照射下是一种有效的光催化剂。使用响应面方法研究并优化了操作参数,包括光催化剂含量,染料浓度,pH和照射时间对染料光催化去除效率的影响。最佳条件为光催化剂用量为0.009 g,初始染料浓度为20 mg L-1,pH为4.12,照射时间为150 min。在建议的最佳条件下,对催化剂进行了5次重用测试。降解效率的可忽略的降低证实了ZnO / MMO / CNT光催化剂具有很高的稳定性和可重复使用性。

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