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Adsorptive denitrogenation of model fossil fuels with Lewis acid-loaded metal-organic frameworks (MOFs)

机译:负载路易斯酸的金属有机骨架(MOF)对模型化石燃料进行吸附脱氮

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摘要

A metal-organic framework (MOF), MIL-lOO(Fe), was impregnated with a Lewis acidic salt, AlCl3, in order to prepare an acidic adsorbent. The adsorbent was used in adsorptive denitrogenation (ADN) of model fuels to investigate the effect of the Lewis acidity of the composite adsorbent. To provide more in-depth understanding of the interaction/adsorption mechanism, a basic quinoline (QUI) and a neutral indole (1ND) were utilized as adsorbates. A sulfur-containing compound, benzothiophene (BT), was also used along with the two nitrogen-containing compounds (NCCs) in order to investigate the selectivity of the adsorption of the NCCs. The maximum adsorption capacity of AlCl3/MIL-100(Fe) for QUI was 17% higher than that of the pristine MIL-100(Fe), despite an 8% reduction of the surface area upon loading the MOF with AlCl3. In contrast, the performance of the AlCl3/MlL-100(Fe) adsorbents in the adsorption of neutral IND decreased with the content of AlCl3 due to little interaction between the acidic adsorbent and neutral IND and the low porosities of the modified adsorbents. Therefore, the investigation shows that MOFs impregnated with Lewis acidic materials such as AlCl3 can be effectively used for adsorptive removal of basic NCCs by means of an acid-base interaction. It can also be concluded that MOFs, when modified suitably with specific functional materials, can be used for specific and improved adsorption.
机译:为了制备酸性吸附剂,将金属有机骨架(MOF)MIL-100(Fe)浸渍有路易斯酸性盐AlCl 3。该吸附剂用于模型燃料的吸附脱氮(ADN),以研究复合吸附剂的路易斯酸度的影响。为了更深入地了解相互作用/吸附机理,碱性喹啉(QUI)和中性吲哚(1ND)被用作吸附物。为了研究NCC吸附的选择性,还使用了含硫化合物苯并噻吩(BT)和两个含氮化合物(NCC)。尽管将MOF加载AlCl3后表面积减少了8%,但AlCl3 / MIL-100(Fe)对QUI的最大吸附容量比原始MIL-100(Fe)高出17%。相反,AlCl3 / MlL-100(Fe)吸附剂在中性IND上的吸附性能随AlCl3含量的降低而降低,这是由于酸性吸附剂和中性IND之间的相互作用很小以及改性吸附剂的低孔隙率所致。因此,研究表明,浸渍有路易斯酸性材料(如AlCl3)的MOF可以通过酸碱相互作用有效地用于碱性NCC的吸附去除。还可以得出结论,MOF在经过特定功能材料的适当修饰后,可用于特定和改善的吸附。

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