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Synthesis of carbon-coated magnetic nanocomposite (Fe3O4@C) and its application for sulfonamide antibiotics removal from water

机译:碳包覆磁性纳米复合材料(Fe3O4 @ C)的合成及其在水中磺胺类抗生素去除中的应用

摘要

The occurrence of antibiotics in the environment has recently raised serious concerns regarding their potential threat to human health and aquatic ecosystem! A new magnetic nanocomposite, Fe3O4@C (Fe3O4 coated with carbon), was synthesized, characterized, and then applied to remove five commonly-used sulfonamides (SAs) from water. Due to its combinational merits of the outer functionalized carbon shell and the inner magnetite core, Fe3O4@C exhibited a high adsorption affinity for selected SAs and a fast magnetic separability. The adsorption kinetics of SAs on Fe3O4@C could be expressed by the pseudo second-order model. The adsorption isotherms were fitted well with the Dual-mode model, revealing that the adsorption process consisted of an initial partitioning stage and a subsequent hole-filling stage. Solution pH exerted a strong impact on the adsorption process with the maximum removal efficiencies (74% to 96%) obtained at pH 4.8 for all selected SAs. Electrostatic force and hydrogen bonding were two major driving forces for adsorption, and electron-donor-acceptor interactions may also make a certain contribution. Because the synthesized Fe3O4@C showed comprehensive advantages of high adsorptivity, fast magnetic separability, and prominent reusability, it has potential applications in water treatment.
机译:环境中抗生素的出现最近引起了人们对其潜在威胁人类健康和水生生态系统的严重关注!合成,表征了一种新型磁性纳米复合材料Fe3O4 @ C(Fe3O4涂有碳),然后将其用于从水中去除五种常用的磺酰胺(SAs)。由于Fe3O4 @ C具有外部功能化碳壳和内部磁铁矿核的组合优点,因此对选定的SA具有很高的吸附亲和力和快速的磁分离性。假二阶模型可以表示SAs在Fe3O4 @ C上的吸附动力学。吸附等温线与双模模型拟合得很好,表明吸附过程由初始分配阶段和随后的孔填充阶段组成。溶液的pH值对吸附过程产生了很大的影响,所有选定的SA在pH值为4.8时获得的最大去除效率(74%至96%)。静电力和氢键是吸附的两个主要驱动力,电子-供体-受体的相互作用也可能有一定作用。由于合成的Fe3O4 @ C具有高吸附性,快速磁分离性和突出的可重复使用性等综合优点,因此在水处理中具有潜在的应用前景。

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