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Cation Exchange Superparamagnetic Al-Based Metal Organic Framework (Fe3O4/MIL-96(Al)) for High Efficient Removal of Pb(II) from Aqueous Solutions

机译:阳离子交换超顺磁性铝的金属有机框架(Fe3O4 / mil-96(Al)),用于高效除去水溶液的Pb(II)

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摘要

A cation-exchange metal-organic framework sorbent with high adsorption capacity, active anionic surface, available adsorptive sites, good response in magnetic field and also available enclosed space between the particles for encapsulation of the analyte was in situ prepared by magnetization of a metal organic framework structure of aluminum named as MIL-96(Al). The units of magnetic MIL-96(Al) was synthesized by embedding method under hydrothermal condition and well characterized. The mechanism of sorption can be the electrostatic interaction between the anionic structures of the adsorbent with hydrated Pb2+ ions. The high percent of OH groups on the surface of Fe3O4/MIL-96(Al) led to high adsorption capacity (301.5 mg g(-1)) of the sorbent for Pb2+ ions in aqueous media. The thermodynamic study of Pb2+ adsorption onto the sorbent surface demonstrated that the process was spontaneous, exothermic and physical. The face-centered central composite design was applied for optimizing the adsorption conditions, and the effective parameters were obtained as pH of 6.92, amount of sorbent of 32.4 mg and adsorption time of 25 min.
机译:具有高吸附能力,有源阴离子表面,可用吸附位点的阳离子 - 交换金属 - 有机框架吸附剂,磁场中的良好反应以及用于颗粒之间的封闭空间用于封装分析物的颗粒以原位由金属有机磁化制备铝的框架结构被命名为MIL-96(AL)。通过在水热条件下嵌入方法和特征良好的嵌入方法合成磁MIL-96(A1)的单元。吸附机制可以是具有水合PB2 +离子的吸附剂的阴离子结构之间的静电相互作用。 Fe3O4 / MIL-96(A1)表面上的OH基团的高百分比导致了水介质中PB2 +离子的吸附剂的高吸附能力(& 301.5mg(-1))。 Pb2 +吸附到吸附剂表面上的热力学研究表明该过程是自发的,放热和物理的。侧视的中央复合设计应用于优化吸附条件,并获得有效参数为6.92的pH值,吸附剂的量为32.4mg,吸附时间为25分钟。

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