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Microporous metal-organic framework with dual functionalities for highly efficient removal of acetylene from ethylene/acetylene mixtures

机译:具有双重功能的微孔金属有机骨架,可从乙烯/乙炔混合物中高效去除乙炔

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摘要

The removal of acetylene from ethylene/acetylene mixtures containing 1% acetylene is a technologically very important, but highly challenging task. Current removal approaches include the partial hydrogenation over a noble metal catalyst and the solvent extraction of cracked olefins, both of which are cost and energy consumptive. Here we report a microporous metal-organic framework in which the suitable pore/cage spaces preferentially take up much more acetylene than ethylene while the functional amine groups on the pore/cage surfaces further enforce their interactions with acetylene molecules, leading to its superior performance for this separation. The single X-ray diffraction studies, temperature dependent gas sorption isotherms, simulated and experimental column breakthrough curves and molecular simulation studies collaboratively support the claim, underlying the potential of this material for the industrial usage of the removal of acetylene from ethylene/acetylene mixtures containing 1% acetylene at room temperature through the cost-and energy-efficient adsorption separation process.
机译:从含有1%乙炔的乙烯/乙炔混合物中除去乙炔是一项技术上非常重要但极具挑战性的任务。当前的去除方法包括在贵金属催化剂上的部分氢化和裂化烯烃的溶剂萃取,这两种方法都在成本和能耗上。在这里,我们报道了一种微孔金属有机骨架,其中合适的孔/笼空间比乙炔优先占据更多的乙炔,而孔/笼表面上的官能胺基团进一步增强了它们与乙炔分子的相互作用,从而使其在乙炔分子上具有优越的性能。这种分离。单一的X射线衍射研究,与温度相关的气体吸附等温线,模拟和实验色谱柱穿透曲线以及分子模拟研究共同支持了这一主张,为该材料在工业用途中从含乙烯/乙炔混合物中脱除乙炔的潜力提供了潜在支持。通过经济高效的吸附分离工艺,在室温下1%乙炔。

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