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Synthesis of modified maghemite nanoparticles and its application for removal of Acridine Orange from aqueous solutions by using Box-Behnken design

机译:Box-Behnken设计的修饰磁赤铁矿纳米粒子的合成及其在水溶液中去除A啶橙的应用

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摘要

In this study, sodium dodecyl sulfate-coated maghemite nanoparticles (SDS-coated γ-Fe_2O_3 NPs), was used for removal of cationic dye Acridine Orange from water samples. The γ-Fe_2O_3 NPs were synthesized by co-precipitation method and were characterized by scanning electron microscope (SEM) and vibrating sample magnetometer (VSM) to examine their size and magnetic moment. The adsorption experiments were performed using the batch system. The prepared magnetic adsorbent was well dispersed in water and easily separated magnetically from the medium after loaded with adsorbate. Four most important operating variables including initial pH of the solution, dosage of adsorbent, concentration of dye and contact time was studied and optimized by response surface methodology (RSM), involving Box-Behnken design matrix. Twenty-seven experiments were performed to investigate the effect of these parameters on removal of the dye. The results showed that initial pH of the solution was the most effective parameter in comparison with others. Also, experimental parameters were optimized and chose the best conditions by determination of effective factors. The optimized conditions for dye removal were at initial pH 5.1 0.8 g L~(-1) of adsorbent, 30.0 mg L~(-1) dye and 43 min adsorption time. The experimental data were analyzed by the Langmuir and Freundlich adsorption models. The maximum predicted adsorption capacities for Acridine Orange was 285.82 mg g~(-1).
机译:在这项研究中,十二烷基硫酸钠包覆的磁赤铁矿纳米颗粒(SDS包覆的γ-Fe_2O_3NPs)用于从水中去除阳离子染料A啶橙。通过共沉淀法合成了γ-Fe_2O_3NPs,并通过扫描电子显微镜(SEM)和振动样品磁强计(VSM)对其进行了表征,以检测其尺寸和磁矩。吸附实验使用间歇系统进行。所制备的磁性吸附剂很好地分散在水中,并且在吸附了吸附剂后易于从介质中磁性分离。通过涉及Box-Behnken设计矩阵的响应表面方法(RSM)研究和优化了四个最重要的操作变量,包括溶液的初始pH值,吸附剂的剂量,染料的浓度和接触时间。进行了27个实验,以研究这些参数对染料去除的影响。结果表明,与其他溶液相比,溶液的初始pH是最有效的参数。而且,通过确定有效因素来优化实验参数并选择最佳条件。最佳去除条件为:初始pH 5.1,吸附剂0.8 g L〜(-1),30.0 mg L〜(-1),吸附时间43 min。实验数据通过Langmuir和Freundlich吸附模型进行分析。 predicted啶橙的最大预测吸附容量为285.82 mg g〜(-1)。

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