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Modeling and optimizing of sonochemical degradation of Basic Blue 41 via response surface methodology

机译:响应面法对碱性蓝41的声化学降解建模与优化

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The nanocatalyst-assisted sonodegradation of Basic Blue 41 (BB41) dye in aqueous medium was modeled and optimized using response surface method (RSM) based on Box-Behnken design. The studied variables included pH, initial dye concentration, H2O2 concentration and sonolysis time while each factor varied at three levels: Low level (-1), Medium level (0) and High level (+1). The ultrasound -assisted degradation was well described by developing quadratic model with correlation value squared (R~2) of 0.9114. Factor effects along with interaction effects were evaluated. The graphical optimization step was conducted to achieve the best experimental condition in dye removal. pH, H2O2 concentration and initial dye concentration of the reaction were investigated. It was recognized that at lower pH values the dye removal rate decreased. However, dye removal rate increased (82.5%) by increasing the concentration of H2O2 and by lowering the initial dye concentration.
机译:使用基于Box-Behnken设计的响应面方法(RSM)对碱性蓝41(BB41)染料在水性介质中的纳米催化剂辅助阳极氧化进行建模和优化。研究的变量包括pH,初始染料浓度,H2O2浓度和声解时间,而每个因素均在三个水平上变化:低水平(-1),中水平(0)和高水平(+1)。通过建立二次模型,相关值平方(R〜2)为0.9114,可以很好地描述超声辅助降解。评价了因子效应以及相互作用效应。进行图形优化步骤以实现染料去除的最佳实验条件。研究了反应的pH,H2O2浓度和初始染料浓度。已经认识到,在较低的pH值下,染料去除速率降低。但是,通过增加H2O2的浓度和降低初始染料的浓度,染料去除率增加了(82.5%)。

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