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Synthesis of covalently bonded graphene oxide–iron magnetic nanoparticles and the kinetics of mercury removal

机译:共价键氧化石墨烯-铁磁性纳米粒子的合成及除汞动力学

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摘要

Synergistically combined nanomaterials have been applied in various fields in materials science to improve the properties of nanocomposites. However, limited studies focus on the ability of such composites for water treatment. A graphene oxide (GO)–iron oxide (Fe3O4) magnetic nano-particle composite (GOMNP) was synthesized and used to study the Hg2+ adsorption kinetics from aqueous solution at various temperatures. GO was attached to magnetic nanoparticles via the amine group of 3-aminopropyltriethoxysilane which was attached the surface of Fe3O4. The GOMNP nano-composite had a Hg2+ adsorption capacity of 16.6 mg g−1. IR spectra analysis showed that hydroxyl and carboxylate functional groups were mainly responsible for Hg2+ adsorption. Adsorption of Hg2+ by the GOMNP obeyed different adsorption mechanisms at varying adsorption temperatures. The Elovich kinetics model described the Hg2+ adsorption data better than any of the other three models tested. The GOMNP nano-composite is thus a promising nanosorbent for Hg2+ removal from aqueous solutions.
机译:协同组合的纳米材料已在材料科学的各个领域得到应用,以改善纳米复合材料的性能。然而,有限的研究集中在这种复合材料用于水处理的能力上。合成了氧化石墨烯(GO)-氧化铁(Fe3O4)磁性纳米颗粒复合材料(GOMNP),并用于研究水溶液在不同温度下对Hg2 +的吸附动力学。 GO通过3-氨基丙基三乙氧基硅烷的胺基附着在磁性纳米颗粒上,该氨基附着在Fe3O4的表面。 GOMNP纳米复合材料的Hg2 +吸附容量为16.6 mg g-1。红外光谱分析表明,羟基和羧基官能团是造成Hg2 +吸附的主要因素。在不同的吸附温度下,GONMP对Hg2 +的吸附遵循不同的吸附机理。 Elovich动力学模型描述的Hg2 +吸附数据优于其他三种测试模型。因此,GOMNP纳米复合材料是一种有望从水溶液中去除Hg2 +的纳米吸附剂。

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