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Novel magnetically separable anhydride-functionalized Fe3O4@SiO2@PEI-NTDA nanoparticles as effective adsorbents: synthesis, stability and recyclable adsorption performance for heavy metal ions

机译:新型可磁分离的酸酐官能化的Fe3O4 @ SiO2 @ PEI-NTDA纳米颗粒作为有效吸附剂:重金属离子的合成,稳定性和可循环利用的吸附性能

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In this paper, a novel adsorbent, Fe _(3) O _(4) @SiO _(2) @PEI-NTDA, was first prepared by the immobilization of an amine and anhydride onto magnetic Fe _(3) O _(4) @SiO _(2) nanoparticles with polyethylenimine (PEI) and 1,4,5,8-naphthalenetetracarboxylic-dianhydride (NTDA) for the removal of heavy metal ions from aqueous solutions. The structure of Fe _(3) O _(4) @SiO _(2) @PEI-NTDA was systematically investigated; the results confirmed that amine and anhydride groups were successfully covalently grafted onto the surface of Fe _(3) O _(4) @SiO _(2) , which showed a homogenous core–shell structure with three layers of about 300 nm diameter (Fe _(3) O _(4) core: 200 nm, n SiO _(2) layer: 20 nm, and PEI-NTDA layer: 20 nm). The adsorption performance of Fe _(3) O _(4) @SiO _(2) @PEI-NTDA NPs was evaluated for single Pb ~(2+) and coexisting Cd ~(2+) , Ni ~(2+) , Cu ~(2+) , and Zn ~(2+) ions in an aqueous solution in a batch system. The amine and anhydride groups may have a synergistic effect on Pb ~(2+) removal through electrostatic interactions and chelation; Fe _(3) O _(4) @SiO _(2) @PEI-NTDA NPs exhibited preferable removal of Pb ~(2+) with maximum adsorption capacity of 285.3 mg g ~(?1) for Pb ~(2+) at a solution pH of 6.0, adsorbent dosage of 0.5 g L ~(?1) , initial Pb ~(2+) concentration of 200 mg L ~(?1) and contact time of 3 h. The adsorption mechanism conformed well to the Langmuir isotherm model, and the adsorption kinetic data were found to fit the pseudo-second order model. Fe _(3) O _(4) @SiO _(2) @PEI-NTDA NPs could be recovered easily from their dispersion by an external magnetic field and demonstrated good recyclability and reusability for at least 6 cycles with a high adsorption capacity above 204.5 mg g ~(?1) . The magnetic adsorbents showed high stability with a weight loss below 0.65% in the acid leaching treatment by 2 M HCl solution for 144 h. This study indicates that Fe _(3) O _(4) @SiO _(2) @PEI-NTDA NPs are new promising adsorbents for the effective removal of Pb ~(2+) in wastewater treatment.
机译:本文首先通过将胺和酸酐固定在磁性Fe _(3)O _(上)制备了新型吸附剂Fe _(3)O _(4)@SiO _(2)@ PEI-NTDA。 4)带有聚乙烯亚胺(PEI)和1,4,5,8-萘四甲酸二酐(NTDA)的@SiO_(2)纳米颗粒,用于从水溶液中去除重金属离子。系统地研究了Fe _(3)O _(4)@SiO _(2)@ PEI-NTDA的结构;结果证实胺和酸酐基团已成功地共价接枝到Fe _(3)O _(4)@SiO _(2)的表面上,显示出均匀的核-壳结构,具有三层直径约300 nm的层( Fe _(3)O _(4)核心:200 nm,n SiO_(2)层:20 nm,PEI-NTDA层:20 nm。评价了Fe _(3)O _(4)@SiO _(2)@ PEI-NTDA NPs对单个Pb〜(2+)和Cd〜(2 +),Ni〜(2+)共存的吸附性能。批处理系统中的水溶液中的Cu,(2+)和Zn〜(2+)离子。胺基和酸酐基团可能通过静电相互作用和螯合作用对Pb〜(2+)的去除产生协同作用。 Fe _(3)O _(4)@SiO _(2)@ PEI-NTDA NPs表现出较好的Pb〜(2+)去除率,最大吸附量为285.3 mg g〜(?1)。溶液pH为6.0,吸附剂剂量为0.5 g L〜(?1),初始Pb〜(2+)浓度为200 mg L〜(?1),接触时间为3 h。吸附机理与Langmuir等温线模型吻合良好,吸附动力学数据符合拟二级模型。 Fe _(3)O _(4)@SiO _(2)@ PEI-NTDA NPs可以很容易地通过外磁场从它们的分散体中回收,并且至少在6个循环中表现出良好的可回收性和可重复使用性,且吸附量高于204.5 mg g〜(?1)。磁吸附剂在2 M HCl溶液中进行144 h的酸浸处理后表现出高稳定性,重量损失低于0.65%。这项研究表明,Fe _(3)O _(4)@SiO _(2)@ PEI-NTDA NPs是用于废水处理中有效去除Pb〜(2+)的新型吸附剂。

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