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Synthesis of bi-metallic oxides nanotubes for fast removal of dye using adsorption and sonocatalysis process

机译:吸附和声催化法合成用于快速去除染料的双金属氧化物纳米管

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In this study, ultrasound-assisted synthesis of bi-metallic oxides nanotubes (ZnO-TiO2 NTs) using solgel method followed by hydrothermal method is reported. Essentially, an attempt was made to investigate the simultaneous adsorption and sonocatalysis process for fast removal of dye using ZnO-TiO2 NTs. The results of characterization revealed that ZnO-TiO2 NTs were hollow nanotubular structure in shape with tube diameter of similar to 10 nm and open ended. It has large specific surface area of 336.9 m(2)/g as compared to ZnO (30.5 m(2)/g) and TiO2 (12.3 m(2)/g). The band-gap energy of NTs is 2.95 eV which is much lower than the pure ZnO (3.18 eV) and TiO2 nanoparticles (3.15 eV). Activity of ZnO-TiO2 NTs was assessed using decolorization process as model reaction system involving adsorption and sonocatalysis processes. The results were also compared with their counterparts, viz. ZnO and TiO2. Experimental results revealed that large specific surface area and surface charges on ZnO-TiO2 NTs promote the adsorption efficiency, while the high pore volume helps dye molecules to diffuse rapidly during the sonocatalysis process. Approximately, 97% of decolorization was achieved within 10 min of treatment with sonocatalysis process. These experimental results presented in this paper could form a useful tool for further research in degradation of other bio-recalcitrant pollutants using ZnO-TiO2 NTs. (C) 2016 The Korean Society of Industrial and Engineering Chemistry. Published by Elsevier B.V. All rights reserved.
机译:在这项研究中,报道了使用溶胶凝胶法接着水热法超声辅助合成双金属氧化物纳米管(ZnO-TiO2 NTs)。实质上,已尝试研究使用ZnO-TiO2 NTs快速去除染料的同时吸附和声催化过程。表征结果表明,ZnO-TiO2 NTs为中空纳米管结构,管径接近10 nm,为开放式。与ZnO(30.5 m(2)/ g)和TiO2(12.3 m(2)/ g)相比,它具有336.9 m(2)/ g的大比表面积。 NTs的带隙能量为2.95 eV,远低于纯ZnO(3.18 eV)和TiO2纳米粒子(3.15 eV)。使用脱色过程作为涉及吸附和声催化过程的模型反应系统,评估了ZnO-TiO2 NTs的活性。还将结果与对应的结果进行比较。 ZnO和TiO2。实验结果表明,ZnO-TiO2 NTs的大比表面积和表面电荷可提高吸附效率,而高孔隙率有助于染料分子在声催化过程中迅速扩散。在用声催化处理的处理过程中,在10分钟内可实现约97%的脱色。本文介绍的这些实验结果可为进一步研究使用ZnO-TiO2 NTs降解其他生物难降解污染物提供有用的工具。 (C)2016韩国工业和工程化学学会。由Elsevier B.V.发布。保留所有权利。

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