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首页> 外文期刊>Chemical engineering journal >Optimization of sonocatalytic degradation of Rhodamine B in aqueous solution in the presence of TiO2 nanotubes using response surface methodology
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Optimization of sonocatalytic degradation of Rhodamine B in aqueous solution in the presence of TiO2 nanotubes using response surface methodology

机译:响应面法优化TiO2纳米管存在下声光降解罗丹明B的水溶液

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Efficiency in the sonocatalytic degradation of Rhodamine B dye catalyzed by TiO2 nanotubes as a function of initial concentration of dye, catalyst amount and power of ultrasonic irradiation at a frequency of 35 kHz was studied. A central composite design (CCD) was used for response surface modeling to evaluate the combined effects of these variables as well as to optimize the degradation efficiency of Rhodamine B. Satisfactory prediction based on a second-order model with high coefficient of determination (R~2) of 0.98 was achieved for the optimized sonocatalytic degradation process. Lastly, the significance and adequacy of the model were analyzed using analysis of variance (ANOVA). The optimal conditions for sonocatalytic degradation efficiency of Rhodamine B were found at 44.8 mg/L of Rhodamine B, 2.14 g/L of TiO2 nanotubes and ultrasonic power of 68.9 W to achieve 94.6% dye removal under ultrasonic irradiation in 3 h. The significance of the findings at a confidence level of 95% was demonstrated. It was found that ultrasonic power, initial dye concentration and interaction between dye concentration and catalyst loading had important effects in the sonocatalytic degradation efficiency of the Rhodamine B by TiO2 nanotubes.
机译:研究了TiO2纳米管催化的若丹明B染料在声催化降解中的效率,该效率与染料的初始浓度,催化剂量和在35 kHz频率下的超声辐射功率有关。使用中央复合设计(CCD)进行响应表面建模,以评估这些变量的组合效果,并优化罗丹明B的降解效率。基于具有高确定系数的二阶模型(R〜优化的声催化降解过程的2)为0.98。最后,使用方差分析(ANOVA)分析了模型的显着性和充分性。罗丹明B的声催化降解效率的最佳条件是罗丹明B为44.8 mg / L,TiO2纳米管为2.14 g / L,超声功率为68.9 W,在3h的超声波照射下达到94.6%的染料去除率。结果表明,置信度为95%时,发现的重要性。发现超声功率,初始染料浓度以及染料浓度和催化剂负载量之间的相互作用对TiO2纳米管对罗丹明B的声催化降解效率具有重要影响。

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