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通过合理调控手性金属有机骨架中的微孔实现乙炔和乙烯的高选择性分离。

Rationally tuned micropores within enantiopure metal-organic frameworks for highly selective separation of acetylene and ethylene.

机构信息

Department of Chemistry, University of Texas at San Antonio, One UTSA Circle, San Antonio, Texas 78249-0698, USA.

出版信息

Nat Commun. 2011 Feb 22;2:204. doi: 10.1038/ncomms1206.

Abstract

Separation of acetylene and ethylene is an important industrial process because both compounds are essential reagents for a range of chemical products and materials. Current separation approaches include the partial hydrogenation of acetylene into ethylene over a supported Pd catalyst, and the extraction of cracked olefins using an organic solvent; both routes are costly and energy consuming. Adsorption technologies may allow separation, but microporous materials exhibiting highly selective adsorption of C(2)H(2)/C(2)H(4) have not been realized to date. Here, we report the development of tunable microporous enantiopure mixed-metal-organic framework (M'MOF) materials for highly selective separation of C(2)H(2) and C(2)H(4). The high selectivities achieved suggest the potential application of microporous M'MOFs for practical adsorption-based separation of C(2)H(2)/C(2)H(4).

摘要

乙炔和乙烯的分离是一个重要的工业过程,因为这两种化合物都是一系列化学产品和材料的重要试剂。目前的分离方法包括在负载钯催化剂上将乙炔部分氢化生成乙烯,以及使用有机溶剂萃取裂解的烯烃;这两种方法都很昂贵且耗能。吸附技术可能允许进行分离,但目前尚未实现对 C(2)H(2)/C(2)H(4)具有高选择性吸附的微孔材料。在这里,我们报告了可调谐微孔手性混合金属有机骨架(M'MOF)材料的开发,用于 C(2)H(2)和 C(2)H(4)的高选择性分离。所达到的高选择性表明微孔 M'MOF 在手性吸附分离 C(2)H(2)/C(2)H(4)方面具有潜在的应用前景。

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