首页> 外文期刊>European journal of inorganic chemistry >DRIFT and Theoretical Studies of Ethylene/Ethane Separation on Flexible and Microporous [Cu_2(2,3-pyrazinedicarboxylate)_2(pyrazine)]_n
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DRIFT and Theoretical Studies of Ethylene/Ethane Separation on Flexible and Microporous [Cu_2(2,3-pyrazinedicarboxylate)_2(pyrazine)]_n

机译:柔性微孔[Cu_2(2,3-吡嗪二羧酸酯)_2(吡嗪)] _ n上乙烯/乙烷分离的DRIFT和理论研究

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摘要

The separation of olefins from paraffin is important for the production of industrial chemicals. Therefore, there is a need for a better separation system such as a pressure-swing adsorption (PSA) process. With regard to adsorbents that enable gas separation by PSA, CPL-1 {[Cu_2(2,3-pyrazinedicarboxylate) 2(pyrazine)]n} is an attractive porous material because of the flexibility and microporosity of the material, which provides it with a unique guest-responsive nature. Adsorption isotherm studies were conducted to elucidate the ethylene-selective adsorption properties of CPL-1, which was further examined by breakthrough experiments with ethylene-ethane binary gas mixtures at near room temperatures. Spectroscopic and computational approaches used to investigate the interaction between CPL-1 and the C2 gas molecules suggested that hydrogen bonds are important in the selective adsorption of ethylene over ethane.
机译:从石蜡中分离烯烃对于工业化学品的生产很重要。因此,需要一种更好的分离系统,例如变压吸附(PSA)工艺。对于能够通过PSA进行气体分离的吸附剂,CPL-1 {[Cu_2(2,3-吡嗪二羧酸盐)2(吡嗪)] n}是一种有吸引力的多孔材料,因为该材料具有柔韧性和微孔性,因此可以提供独特的客人响应性质。进行了吸附等温线研究,以阐明CPL-1的乙烯选择性吸附特性,并通过在近室温下用乙烯-乙烷二元气体混合物进行突破性实验进一步检验了该特性。用于研究CPL-1和C2气体分子之间相互作用的光谱和计算方法表明,氢键对于乙烯在乙烷上的选择性吸附非常重要。

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