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Sensitivity analysis of the photoactivity of Cu-TiO2/ZnO during advanced oxidation reaction by Adaptive Neuro-Fuzzy Selection Technique

机译:自适应神经模糊选择技术对Cu-TiO2 / ZnO高级氧化反应过程中光活性的敏感性分析

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One of the most pivotal limitations of TiO2 or ZnO based lattices is their photocatalysis activity under visible light irradiation. In this study, a hybrid photocatalyst was generated by doping TiO2/ZnO lattice with copper in order to improve their photo-activity. The main aim was to analyse the sensitivity of photoactivity of Cu-TiO2/ZnO toward operating conditions in advanced oxidation reaction for photodegradation of two different dyes under visible light irradiation. The sol-gel-prepared composite was characterized in detail to confirm its properties in terms of band gap, crystalline structure/size, optical absorption and surface area. Then, ANFIS (Adaptive Neuro Fuzzy Inference System) was employed to investigate the effects of five independent variables including dye and catalyst concentrations, pH, intensity of light irradiation and reaction time on the photocatalytic performance of Cu-TiO2/ZnO. This process includes several ways of discovering a subset from the group of the recorded parameters and predicting which variable has the strongest effect on the response of interest. Besides, variable search was performed using the ANFIS network. According to variable selection using ANFIS analysis, catalyst concentration and reaction time were the most effective parameters for MO degradation whereas dye concentration and pH were the most influential factors on MB removal using Cu-TiO2/ZnO. Furthermore, Cu-TiO2/ZnO photocatalyst presented the maximum removal efficiency of: color: 83.35%, COD: 73.54% and TOC: 54.46% for MO degradation and color: 75.50%, COD: 68.00% and TOC: 46.41% for MB degradation. (C) 2015 Elsevier Ltd. All rights reserved.
机译:TiO2或ZnO基晶格的最关键限制之一是它们在可见光照射下的光催化活性。在这项研究中,通过向TiO2 / ZnO晶格掺杂铜来生成杂化光催化剂,以提高其光活性。主要目的是分析Cu-TiO2 / ZnO的光活性对高级氧化反应中可见光照射下两种不同染料光降解的操作条件的敏感性。对溶胶-凝胶制备的复合材料进行了详细表征,以确认其在带隙,晶体结构/尺寸,光吸收和表面积方面的性能。然后,使用ANFIS(自适应神经模糊推理系统)研究了五个独立变量,包括染料和催化剂浓度,pH,光辐照强度和反应时间对Cu-TiO2 / ZnO的光催化性能的影响。该过程包括几种从记录的参数组中发现子集并预测哪个变量对目标响应的影响最大的方法。此外,使用ANFIS网络进行了变量搜索。根据使用ANFIS分析进行的变量选择,催化剂浓度和反应时间是MO降解最有效的参数,而染料浓度和pH是使用Cu-TiO2 / ZnO去除MB的最重要因素。此外,Cu-TiO2 / ZnO光催化剂的最大去除效率为:颜色:MO降解:颜色:83.35%,化学需氧量:73.54%,有机碳:TOC:54.46%;对于MB降解,颜色:75.50%,化学需氧量:68.00%,有机碳:46.41% 。 (C)2015 Elsevier Ltd.保留所有权利。

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