...
首页> 外文期刊>Angewandte Chemie >Amino-Functionalised Hybrid Ultramicroporous Materials that Enable Single-Step Ethylene Purification from a Ternary Mixture
【24h】

Amino-Functionalised Hybrid Ultramicroporous Materials that Enable Single-Step Ethylene Purification from a Ternary Mixture

机译:氨基官能化的杂化多孔材料,可从三元混合物中纯化单步乙烯纯化

获取原文
获取原文并翻译 | 示例
           

摘要

Pyrazine-linked hybrid ultramicroporous (pore size <7 angstrom) materials (HUMs) offer benchmark performance for trace carbon capture thanks to strong selectivity for CO2 over small gas molecules, including light hydrocarbons. That the prototypal pyrazine-linked HUMs are amenable to crystal engineering has enabled second generation HUMs to supersede the performance of the parent HUM, SIFSIX-3-Zn, mainly through substitution of the metal and/or the inorganic pillar. Herein, we report that two isostructural aminopyrazine-linked HUMs, MFSIX-17-Ni (17=aminopyrazine; M=Si, Ti), which we had anticipated would offer even stronger affinity for CO2 than their pyrazine analogs, unexpectedly exhibit reduced CO2 affinity but enhanced C2H2 affinity. MFSIX-17-Ni are consequently the first physisorbents that enable single-step production of polymer-grade (>99.95 % for SIFSIX-17-Ni) ethylene from a ternary equimolar mixture of ethylene, acetylene and CO2 thanks to coadsorption of the latter two gases. We attribute this performance to the very different binding sites in MFSIX-17-Ni versus SIFSIX-3-Zn.
机译:吡嗪连接的杂化超微孔(孔径<7埃)材料(HUMs)对二氧化碳的选择性强于包括轻烃在内的小气体分子,为痕量碳捕获提供了基准性能。原型吡嗪连接的腐殖质易于晶体工程,这使得第二代腐殖质能够取代母体腐殖质SIFSIX-3-Zn的性能,主要是通过替代金属和/或无机柱。在此,我们报告了两种同构氨基吡嗪连接的腐殖质MFSIX-17-Ni(17=氨基吡嗪;M=Si,Ti),我们曾预期其对CO2的亲和力比其吡嗪类似物更强,出乎意料地表现出CO2亲和力降低,但C2H2亲和力增强。因此,MFSIX-17-Ni是第一种物理吸附剂,通过后两种气体的共吸附,可以从乙烯、乙炔和CO2的三元等摩尔混合物中单步生产聚合物级(Sif6Six-17-Ni大于99.95%)乙烯。我们将这种性能归因于MFSIX-17-Ni和SIFSIX-3-Zn中非常不同的结合位点。

著录项

相似文献

  • 外文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号