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A Porous Aromatic Framework Constructed from Benzene Rings Has a High Adsorption Capacity for Perfluorooctane Sulfonate

机译:由苯环构成的多孔芳香骨架对全氟辛烷磺酸的吸附能力高

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摘要

A low-cost and easily constructed porous aromatic framework (PAF-45) was successfully prepared using the Scholl reaction. PAF-45 was, for the first time, used to remove perfluorooctane sulfonate (PFOS) from aqueous solution. Systematic experiments were performed to determine the adsorption capacity of PAF-45 for PFOS and to characterize the kinetics of the adsorption process. The adsorption of PFOS onto PAF-45 reached equilibrium in 30 min, and the adsorption capacity of PAF-45 for PFOS was excellent (5847 mg g(-1) at pH 3). The amount of PFOS adsorbed by PAF-45 increased significantly as the cation (Na+, Mg2+, or Fe3+) concentration increased, which probably occurred because the cations enhanced the interactions between the negatively charged PFOS molecules and the positively charged PAF-45 surface. The cations Na+, Mg2+, and Fe3+ were found to form complexes with PFOS anions in solution. Density functional theory was used to identify the interactions between PFOS and Na+, Mg2+, and Fe3+. We expect that materials of the same type as PAF-45 could be useful adsorbents for removing organic pollutants from industrial wastewater and contaminated surface water.
机译:使用Scholl反应成功制备了低成本且易于构建的多孔芳族骨架(PAF-45)。 PAF-45首次用于从水溶液中去除全氟辛烷磺酸盐(PFOS)。进行系统的实验以确定PAF-45对PFOS的吸附能力并表征吸附过程的动力学。 PFOS在PAF-45上的吸附在30分钟内达到平衡,并且PAF-45对PFOS的吸附能力非常好(在pH 3下为5847 mg g(-1))。随着阳离子(Na +,Mg2 +或Fe3 +)浓度的增加,PAF-45吸附的PFOS量显着增加,这可能是由于阳离子增强了带负电的PFOS分子与带正电的PAF-45表面之间的相互作用。发现阳离子Na +,Mg2 +和Fe3 +与溶液中的PFOS阴离子形成络合物。密度泛函理论用于确定PFOS与Na +,Mg2 +和Fe3 +之间的相互作用。我们希望与PAF-45相同类型的材料可以用作去除工业废水和受污染的地表水中有机污染物的有效吸附剂。

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