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首页> 外文期刊>Applied Surface Science >Bio-based magnetic metal-organic framework nanocomposite: Ultrasound- assisted synthesis and pollutant (heavy metal and dye) removal from aqueous media
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Bio-based magnetic metal-organic framework nanocomposite: Ultrasound- assisted synthesis and pollutant (heavy metal and dye) removal from aqueous media

机译:生物基磁性金属-有机骨架纳米复合材料:超声辅助合成和从水性介质中去除污染物(重金属和染料)

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摘要

In the recent decade, Metal-Organic Frameworks (MOFs) and their most popular subclasses (zeolitic imidazolate frameworks (ZIFs)) are widely studied for removing contaminants from the effluent. Herein, the magnetic bionanocomposite (eggshell membrane-zeolitic imidazolate framework) was synthesized using a facile, efficient, and green ultrasound-assisted method. Zeolitic imidazolate frameworks-67 (ZIF-67) crystals were stabilized on the surface of magnetic eggshell membrane (Fe3O4@ESM) support to prepare the ZIF-67@ Fe3O4@ESM composite as a novel adsorbent with the high surface area (1263.9m(2)/g). Several analyses such as XRD, FTIR, SEM/EDS/Mapping, VSM, and BET were used to confirm the characterization and structural changes of ZIF-67 crystals before and after the composition process. Thereafter, copper cation (Cu2+) capture and dye (Basic Red 18: BR18) adsorption process were designed and thoroughly studied using the prepared adsorbents. It was found that the adsorption rate and removal percentage of the ZIF-67@Fe3O4@ESM composite are faster and higher than that of the pure ZIF-67 for both types of contaminants. Moreover, the magnetic feature of the composite adsorbent caused to a facile separation from liquid media. The results showed that the Langmuir adsorption isotherm well explained the obtained equilibrium data with a maximum adsorption capacity of 344.82 and 250.81 mg/g for Cu2+ and BR18, respectively. Kinetic studies showed that the pseudo-second order model was capable to fit the experimental data of the simultaneous removal of heavy metal ion and dye molecule.
机译:在最近的十年中,广泛地研究了金属有机框架(MOF)及其最流行的子类(沸石咪唑酸盐框架(ZIFs))以去除废水中的污染物。在此,使用简便,有效且绿色的超声辅助方法合成了磁性生物纳米复合材料(卵壳膜-沸石咪唑酸盐骨架)。将沸石咪唑盐骨架67(ZIF-67)晶体稳定在磁性蛋壳膜(Fe3O4 @ ESM)载体的表面上,以制备ZIF-67 @ Fe3O4 @ ESM复合材料作为具有高表面积(1263.9m( 2)/ g)。使用XRD,FTIR,SEM / EDS / Mapping,VSM和BET等多种分析方法来确定ZIF-67晶体在组成前后的特征和结构变化。此后,设计了铜阳离子(Cu2 +)捕获和染料(Basic Red 18:BR18)吸附过程,并使用制得的吸附剂进行了深入研究。结果表明,对于两种类型的污染物,ZIF-67 @ Fe3O4 @ ESM复合材料的吸附速率和去除率均高于纯ZIF-67。而且,复合吸附剂的磁性特征导致与液体介质的容易分离。结果表明,Langmuir吸附等温线很好地解释了所获得的平衡数据,对Cu2 +和BR18的最大吸附容量分别为344.82和250.81 mg / g。动力学研究表明,伪二级模型能够拟合同时去除重金属离子和染料分子的实验数据。

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