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Study of the Dye Adsorption Kinetics of Metal–Organic Frameworks in Aqueous Media

机译:水性介质中金属 - 有机骨架染料吸附动力学的研究

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Water can easily be contaminated by many dye molecules because of its high solubility with dense color. Dye‐contaminated water requires purification via the adsorptive removal of dye molecules, employing various porous materials. To increase the removal efficiency and selectivity, demands for developing new metal–organic frameworks (MOFs) for dye removal continue to increase. Herein, we present a study on the dye‐adsorption properties of MOFs based on their structures and pore sizes. The effects of dye molecule charge and size were also investigated. Three different MOFs (Universitetet i Oslo; UiO‐66, UiO‐67, Materials of Institute Lavoisier; MIL‐100 [Fe]) and four dye molecules (Methylene Blue, Rhodamine B, Tropaeolin O, and Amaranth) were employed. The results suggest that the surface properties and framework structure of the MOFs affect dye adsorption capacity and kinetics, as characterized by UV–Vis spectroscopy and adsorption kinetics analysis. These results provide opportunities for the development of MOFs for dye removal from aqueous solution.
机译:由于其具有致密色的溶解度高,水可以很容易地被许多染料分子污染。染料污染的水需要通过吸附除去染料分子的染色,采用各种多孔材料。为了提高去除效率和选择性,对染料去除开发新的金属有机框架(MOF)的要求继续增加。在此,我们介绍了基于其结构和孔径的MOFS的染料吸附性能研究。还研究了染料分子电荷和尺寸的影响。三种不同的MOF(UIO-66,UIO-66,UIO-67,机构的UIO-66,Lavoisier的材料; MIL-100 [Fe])和四种染料分子(亚染料,亚甲基蓝,罗丹明B,Tropaeolin O和苋菜)。结果表明,MOF的表面性质和框架结构影响染料吸附能力和动力学,其特征在于UV-Vis光谱和吸附动力学分析。这些结果为开发用于从水溶液中除去染料的MOF的机会。

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