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首页> 外文期刊>Environmental progress & sustainable energy >Statistical optimization of photocatalytic degradation process of methylene blue dye by SnO-TiO_2-AC composite using response surface methodology
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Statistical optimization of photocatalytic degradation process of methylene blue dye by SnO-TiO_2-AC composite using response surface methodology

机译:响应面法测定SnO-TiO_2-AC复合材料光催化降解亚甲基蓝染料的统计优化

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摘要

Photocatalytic activity of bi-metal oxides SnO-TiO_2-AC photocatalyst was evaluated in methylene blue (MB) dye degradation In this study, a three-level, four-factor, D-optimal experimental design, combined with response surface methodology, was employed to optimize the photocatalytic degradation process of MB dye in a batch reactor. Effectiveness of essential process variables: light intensity (254-400 nm), initial dye concentration (100-200 ppm), photocatalyst dose (0.5-1.5 g/L), and irradiation time (1-5 h) were investigated, modeled, and optimized successfully. To determine the process efficiency, the final concentration of dye together with degradation percentage was defined as response variables. Analysis of variance indicated that the proposed quadratic polynomial models agreed with the experimental study with R~2 and p-value of 0.9211, p < 0.001 and 0.8166, p < 0.05 for a final concentration of dye and degradation percentage, respectively. Numerical optimization was carried out based on the desirability function for maximum dye removal. Accordingly, dye removal conditions resulted in light intensity, initial dye concentration, photocatalyst dose, and irradiation time of 400 nm of visible light, 100 ppm, 1.5 g/L, and 3.77 h, respectively. Under these optimal conditions, the final dye concentration and degradation percentage were 4.713 ppm and 95.28%. According to Pareto analysis, the order of the operating variables on the dye degradation efficiency was: photocatalyst does < irradiation time < light intensity < initial concentration of dye.
机译:在本研究中,在亚甲基蓝(MB)染料中评价双金属氧化物的光催化活性SnO-TiO_2-AC光催化剂,采用三级,四因素D-最佳的实验设计,与响应面法相结合优化分批反应器中MB染料的光催化降解过程。基本过程变量的有效性:光强度(254-400nm),初始染料浓度(100-200ppm),光催化剂剂量(0.5-1.5g / L)和照射时间(1-5小时),建模,并成功优化。为了确定过程效率,将染料的最终浓度与降解百分比定义为响应变量。方差分析表明,拟议的二次多项式模型与R〜2和P值为0.9211,P <0.001和0.8166,P <0.05的实验研究,分别为染料的最终浓度和降解百分比。基于最大染料去除的期望函数进行数值优化。因此,染料去除条件导致光强度,初始染料浓度,光催化剂剂量和400nm的照射时间,可见光,100ppm,1.5g / L和3.77小时。在这些最佳条件下,最终染料浓度和降解百分比为4.713ppm和95.28%。根据Pareto分析,染料降解效率的操作变量的顺序是:光催化剂是<照射时间<光强度<初始染料浓度<染色。

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