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首页> 外文期刊>Journal of nanomaterials >Synthesis and Study of an Efficient Metal-Organic Framework Adsorbent (MIL-96(Al)) for Fluoride Removal from Water
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Synthesis and Study of an Efficient Metal-Organic Framework Adsorbent (MIL-96(Al)) for Fluoride Removal from Water

机译:高效金属 - 有机骨架吸附剂(MIL-96(Al))的合成与研究,用于氟化物从水中去除

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Long-term consumption of drinking water that contains excessive amounts of fluoride can endanger human health; therefore, the preparation and application of a high-efficiency defluorination adsorbent for advanced purification of drinking water are of significant interest. This study presents a metal-organic framework adsorbent (MIL-96(Al)) with the granular structure of rice, which was generated by hydrothermal reaction. The specific surface area of MIL-96(Al) was ~220?m2?g-1, and it showed a good thermal stability. Several experiments were conducted wherein conditions, including adsorbent dosage, initial concentration, pH, and coexisting anions, were varied to understand the defluorination performance of the material. Results showed that pH (6–9) and coexisting anions had little effect on the removal efficiency of fluoride. The adsorption isotherm can be described by the Langmuir model, and the theoretical fluoride adsorption capacity of MIL-96(Al) was up to 42.19?mg?Fg-1 at 298?K, which is much higher than that of the commonly used activated alumina. The adsorption process of fluoride is endothermic and follows pseudo second-order kinetics. In addition, MIL-96(Al) was shown to still achieve ~61.8% of the adsorption capacity after seven regenerations. This study shows that MIL-96(Al) is a good application prospect and could be widely used to remove fluoride from water.
机译:含有过量氟化物的饮用水的长期消耗可以危及人类健康;因此,用于高效渗透吸附剂的制备和应用用于饮用水的晚期纯化具有重要兴趣。本研究介绍了一种金属有机骨架吸附剂(MIL-96(Al)),其颗粒的粒状结构,由水热反应产生。 MIL-96(A1)的比表面积为约220〜220〜M2?G-1,并且它显示出良好的热稳定性。进行了几次实验,其中改变了包括吸附剂剂量,初始浓度,pH和共存阴离子的条件,以了解材料的偏氟化性能。结果表明,pH(6-9)和共存阴离子对氟化物的去除效率几乎没有影响。可以通过Langmuir模型描述吸附等温线,MIL-96(Al)的理论氟化物吸附能力高达42.19Ω·mgΔFG-1,高于常用的活化的氧化铝。氟化物的吸附过程是吸热的,并遵循伪二阶动力学。此外,MIL-96(Al)显示七个再生后仍然达到吸附能力的约61.8%。本研究表明,MIL-96(AL)是一种良好的应用前景,可广泛用于从水中除去氟化物。

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