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首页> 外文期刊>Microporous and mesoporous materials: The offical journal of the International Zeolite Association >Separation of ethane-ethylene and propane-propylene by Ag(I) doped and sulfurized microporous carbon
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Separation of ethane-ethylene and propane-propylene by Ag(I) doped and sulfurized microporous carbon

机译:通过Ag(I)掺杂和硫化微孔碳,将乙烷 - 乙烯和丙烷 - 丙烯的分离

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Separation of light olefins from their respective paraffins by adsorption is an attractive strategy due to the sustainable and inexpensive nature of adsorption process. It is well understood that the presence of Ag(I) in the adsorbent favors the adsorption of ethylene and propylene (olefins) over ethane and propane (paraffins) owing to the pi - pi complexation between Ag(I) and pi bond present in olefins. In this research, Ag(I) doped microporous carbons were synthesized from furfuryl alcohol as carbon source. It is also shown that prior sulfurization of the carbon greatly favored Ag(I) content owing to the affinity of sulfur to Ag(I). All the carbons were successfully characterized with pore textural properties, SEM-EDX imaging and x-ray photoelectron spectroscopy (XPS). Only the carbon with highest Ag(I) content (2.5 at.%) and BET specific area (1193 m(2)/g) favored the adsorption of ethylene and propylene over ethane and propane, respectively. IAST-based selectivity values were also employed to calculate binary adsorption isotherms for ethane-ethylene and propane-propylene mixtures. The IAST-based selectivity values of ethylene/ethane and propylene/propane were in the range of 4.5 to 2.5 and 5 to 2.4, respectively. Finally, column breakthrough and pulse chromatographic peaks were simulated to confirm the separation of paraffin-olefin pairs on thus carbon. To the best of our knowledge, it is the first report of the separation of light paraffin and olefins in a carbon-based adsorbent and by harnessing the pi - pi complexation.
机译:由于吸附过程的可持续和廉价性质,通过吸附将光烯烃与其各自的链烷烃分离是一种吸引力的策略。众所周知,由于烯烃(I)和烯烃中存在的Pi键之间的PI - PI络合,吸附剂中的Ag(I)在吸附剂中对乙烯和丙烯(烯烃)的吸附性质有利于乙烷和丙烷(烯烃)和丙烷(链烷烃)。 。在该研究中,Ag(i)掺杂的微孔碳从糠醇作为碳源合成。还表明,由于硫对Ag(I)的亲和力,碳的硫化含量大大赞成Ag(I)含量。所有碳都成功地表征了孔隙纹理性质,SEM-EDX成像和X射线光电子能谱(XPS)。只有具有最高Ag(I)含量的碳(2.5℃)和BET特异性面积(1193μm(2)/ g),分别赞成乙烯和丙烯对乙烷和丙烷的吸附。还采用基于IAST的选择性值来计算乙烷 - 乙烯和丙烷 - 丙烯混合物的二元吸附等温。乙烯/乙烷和丙烷/丙烷的基于IAST的选择性值分别为4.5至2.5和5至2.4。最后,模拟柱突破和脉冲色谱峰以确认石蜡对这样的碳分离。据我们所知,它是第一份碳基吸附剂中光石蜡和烯烃分离的第一报告,并通过利用PI - PI络合来利用PI - PI络合。

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