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Adsorption of xylene isomers on ordered hexagonal mesoporous FDU-15 polymer and carbon materials

机译:二甲苯异构体在有序六方介孔FDU-15聚合物和碳材料上的吸附

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The oil industry has been facing the challenges of separation of xylene isomers, o-xylene, m-xylene and p-xylene or removing them from the environment. In our present work, we investigated the adsorption of the three isomers on two mesoporous materials, FDU-15-350 polymer and FDU-15-900 carbon materials. The isomer adsorption capacities are well correlated with their physical pore properties. It is found that the micropores are very crucial for the adsorption of these three isomers. The more micropore volume the adsorbent has, the better the adsorption capacity is. Henry’s constants were also calculated for the three isomers on the two adsorbents. Both on FDU-15-350 polymer and FDU-15-900, the Henry’s constants for the three isomers show the same trend o>m>p xylene which is coincidently in accordance with their polarity trend, indicating more polar adsorbate is preferred for adsorption on the two adsorbents. The isosteric heats of adsorption are correlated with the microporosity and the size of the adsorbate molecule. More microporosity and smaller molecules give higher heats of adsorption. Extracted information on pore properties of adsorbents by using the three isomers has very similar results as that resolved from nitrogen adsorption, indicating the feasibility of using the three isomers as adsorbates to extract pore information.
机译:石油工业一直面临着分离二甲苯异构体,邻二甲苯,间二甲苯和对二甲苯或将其从环境中去除的挑战。在我们目前的工作中,我们研究了三种异构体在两种介孔材料FDU-15-350聚合物和FDU-15-900碳材料上的吸附。异构体的吸附能力与其物理孔隙性能密切相关。发现微孔对于这三种异构体的吸附非常关键。吸附剂的微孔体积越大,吸附能力越好。还针对两种吸附剂上的三种异构体计算了亨利常数。在FDU-15-350聚合物和FDU-15-900上,三种异构体的亨利常数都显示出o> m> p二甲苯相同的趋势,这正好符合它们的极性趋势,这表明优选更多极性的吸附物进行吸附在两种吸附剂上。吸附的等排热与微孔性和被吸附物分子的大小有关。更大的微孔率和更小的分子会产生更高的吸附热。通过使用三种异构体提取的吸附剂孔隙特性信息与从氮吸附获得的结果非常相似,这表明使用三种异构体作为吸附剂提取孔隙信息的可行性。

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