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Melamine-based dendrimer amine-modified magnetic nanoparticles as an efficient Pb(Ⅱ) adsorbent for wastewater treatment: Adsorption optimization by response surface methodology

机译:三聚氰胺基树枝状聚合物胺修饰的磁性纳米粒子作为废水处理中有效的Pb(Ⅱ)吸附剂:响应面法优化吸附

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摘要

Magnetic Fe3O4 nanoparticles with an average diameter of 64 nm was synthesized solvothermically and subsequently modified with melamine-based dendrimer amine (MDA Fe3O4) via grafting method. The synthesized materials were characterized using DLS, SEM, XRD, FTIR, VSM, TGA and elemental analysis techniques. The MDA Fe3O4 was employed for the efficient removal of Pb(II) ions from an aqueous solution. The adsorption efficiency was investigated in relation to the independent variables of Pb(II) concentration (80-250 mg L-1), pH of the solution (3-7), adsorbent dosage (0.1-0.5 g L-1) and temperature (10-40 degrees C) via a central composite design (CCD) using response surface methodology (RSM). The significance of independent variables and their interactions was tested using ANOVA at a 95% confidence limit (alpha = 0.05). A second-order quadratic model was established to predict the adsorption efficiency. Under the optimum condition (initial Pb(II) concentration = 110 mg L-1, MDA-Fe3O4 dosage = 0.49 g L-1, pH = 5 and temperature = 30 degrees C) a removal percentage of 85.6% was obtained. The isotherm data fitted well to the Freundlich model within the concentration range of the experimental study. A maximum adsorption capacity of 333.3 mg g(-1) was predicted by the Langmuir model. The adsorption rate of Pb(II) ions onto MDA Fe3O4 was in good agreement with the pseudo-second-order model (R-2 = 0.999; k(2) = 4.7 x 10(-4) g mg(-1) min(-1)). Thermodynamically, adsorption was spontaneous and endothermic. The MDA Fe3O4 was successfully regenerated using 0.3 M HCI with little loss of adsorption capacity (approximate to 7%) for five successive adsorption cycles. (C) 2017 Elsevier Ltd. All rights reserved.
机译:溶剂热合成平均直径为64 nm的磁性Fe3O4纳米粒子,然后通过接枝方法用三聚氰胺基树枝状胺(MDA Fe3O4)进行改性。使用DLS,SEM,XRD,FTIR,VSM,TGA和元素分析技术对合成材料进行了表征。 MDA Fe3O4用于从水溶液中有效去除Pb(II)离子。研究了吸附效率与Pb(II)浓度(80-250 mg L-1),溶液的pH(3-7),吸附剂量(0.1-0.5 g L-1)和温度的独立变量之间的关系。 (10-40摄氏度)通过使用响应表面方法(RSM)的中央复合设计(CCD)。使用ANOVA在95%置信度限制(alpha = 0.05)下测试了自变量及其相互作用的显着性。建立了二次方模型来预测吸附效率。在最佳条件下(初始Pb(II)浓度= 110 mg L-1,MDA-Fe3O4剂量= 0.49 g L-1,pH = 5且温度= 30摄氏度),去除率为85.6%。在实验研究的浓度范围内,等温线数据非常适合Freundlich模型。 Langmuir模型预测最大吸附容量为333.3 mg g(-1)。 Mb Fe3O4上Pb(II)离子的吸附速率与拟二级模型(R-2 = 0.999; k(2)= 4.7 x 10(-4)g mg(-1)min (-1))。在热力学上,吸附是自发的并且是吸热的。使用0.3 M HCl在五个连续的吸附循环中成功吸收了几乎没有吸附容量损失(约7%)的MDA Fe3O4。 (C)2017 Elsevier Ltd.保留所有权利。

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