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Application of response surface methodology for optimization of methyl orange adsorption by Fe-grafting sugar beet bagasse

机译:响应面方法应用Fe-嫁接糖Bagasse优化甲基橙吸附

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The adsorptive removal of methyl orange dye using a sugar beet bagasse (SBB) as agro-industrial by-product has been investigated. The adsorption potential of SBB was improved by grafting with FeCl(3)6H(2)O. The dependency of removal efficiency (R) and adsorption capacity (q(e)) on the level and magnitude of variables including initial pH, methyl orange concentrations, and sorbent dosage was investigated and optimized by central composite design under response surface methodology (RSM). Besides, the effect of temperature on adsorption process was evaluated in terms of thermodynamic study. The good agreement found between observed and predicted values supports and confirms the suitability of the applied model to predict adsorption state. The applied models revealed that methyl orange removal in aqueous solution was affected by all the three factors studied. By consideration of seven starting points in the response surface solutions, the best local maximum was found to be at initial solution pH2.51, sorbent dosage of 0.37 g.L-1, initial dye concentration of 100 mg.L-1, removal efficiency of 51.8%, adsorption capacity of 221.5 mg.g(-1), and desirability of 0.692. A pseudo second-order model more accurately represented the adsorption process. Moreover, Freundlich isotherm model was superior to the Langmuir isotherm model.
机译:研究了使用糖束甘蔗渣(SBB)作为农业工业副产物的甲基橙染料的吸附除去。通过用FECL(3)6H(2)o接枝,改善了SBB的吸附电位。去除效率(Q(e))的去除效率(R)和吸附容量(q(e)),包括初始pH值,甲基橙色浓度和吸附剂剂量,并通过中央复合设计在响应面法(RSM)下进行了优化。此外,在热力学研究方面评估了温度对吸附过程的影响。观察和预测值之间发现的良好一致性地支持并确认所应用的模型的适用性预测吸附状态。所应用的模型显示,在水溶液中除去甲基橙去除受到研究的所有两个因素的影响。考虑到响应表面溶液中的七个起点,发现最佳局部最大值是初始溶液pH2.51,吸附剂剂量为0.37g11,初始染料浓度为100 mg.L-1,去除效率为51.8 %,吸附能力为221.5mg.g(-1),并期望为0.692。伪二阶模型更准确地表示吸附过程。此外,Freundlich等温模型优于Langmuir等温模型。

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