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腺嘌呤接枝金属有机骨架对模型燃料中吲哚和喹啉的吸附去除。

Adsorptive removal of indole and quinoline from model fuel using adenine-grafted metal-organic frameworks.

机构信息

Department of Chemistry and Green-Nano Materials Research Center, Kyungpook National University, Daegu 41566, Republic of Korea.

Department of Chemistry Education, Kyungpook National University, Daegu 41566, Republic of Korea.

出版信息

J Hazard Mater. 2018 Feb 15;344:593-601. doi: 10.1016/j.jhazmat.2017.10.041. Epub 2017 Oct 28.

Abstract

A highly porous metal-organic framework (MOF), MIL-101, was modified for the first time with the nucleobase adenine (Ade) by grafting onto the MOF. The Ade-grafted MOF, Ade-MIL-101, was further protonated to obtain P-Ade-MIL-101, and these MOFs were utilized to remove nitrogen-containing compounds (NCCs) (such as indole (IND) and quinoline (QUI)) from a model fuel by adsorption. These functionalized MOFs exhibited remarkable adsorption performance for NCCs compared with that shown by commercial activated carbon (AC) and pristine MIL-101, even though the porosities of the functionalized-MOFs were lower than that of pristine MIL-101. P-Ade-MIL-101 has 12.0 and 10.8 times capacity to that of AC for IND and QUI adsorption, respectively; its adsorption performance was competitive with that of other reported adsorbents. The remarkable adsorption of IND and QUI by Ade-MIL-101 was attributed to H-bonding. H-bonding combined with cation-π interactions was proposed as the mechanism for the removal of IND by P-Ade-MIL-101, whereas acid-base interactions were thought to be responsible for QUI adsorption by P-Ade-MIL-101. Moreover, P-Ade-MIL-101 can be regenerated without any severe degradation and used for successive adsorptions. Therefore, P-Ade-MIL-101 was recommended as an effective adsorbent for fuel purification by adsorptive removal of NCCs.

摘要

首次通过接枝将碱基腺嘌呤(Ade)修饰到高度多孔的金属有机骨架(MOF) MIL-101 上。接枝 Ade 的 MOF(Ade-MIL-101)进一步质子化得到 P-Ade-MIL-101,并用这些 MOF 通过吸附从模型燃料中去除含氮化合物(NCC)(如吲哚(IND)和喹啉(QUI))。与商业活性炭(AC)和原始 MIL-101 相比,这些功能化 MOF 对 NCC 的吸附性能非常显著,尽管功能化-MOF 的孔隙率低于原始 MIL-101。P-Ade-MIL-101 对 IND 和 QUI 的吸附容量分别是 AC 的 12.0 和 10.8 倍;其吸附性能与其他报道的吸附剂相当。Ade-MIL-101 对 IND 和 QUI 的显著吸附归因于氢键。氢键与阳离子-π 相互作用结合被提出是 P-Ade-MIL-101 去除 IND 的机制,而酸碱相互作用被认为是 P-Ade-MIL-101 吸附 QUI 的原因。此外,P-Ade-MIL-101 可以在没有任何严重降解的情况下再生,并用于连续吸附。因此,P-Ade-MIL-101 被推荐为通过吸附去除 NCC 来净化燃料的有效吸附剂。

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