Zeolitic Imidazole Frameworks for Super Selective Separation of Propylene from Propane

T. A. Agbajei, G. Karanikolos, Maryam Khaleel
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Abstract

Olefin and paraffin gases are important products of the petrochemical refining industry wherein their effective separation could provide high economic gains and competitiveness in the emerging energy markets amidst state-of-the-art technology. Important chemicals such as polyethylene and polypropylene are derived from raw materials in the form of light olefins, including ethylene and propylene, processible via naphtha cracking. However, since this leads to its production among other valuable by-products separation/refinement is required and this is commonly achieved through technical and energy-intensive cryogenic distillation due to the similarity in thermophysical properties of the process effluents. Thus, cost-effective and energy-efficient processes are required among which membrane-based separation techniques stand out. In that line, zeolitic imidazolium frameworks (ZIFs) have shown a superior potential to provide high selectivity and high permeability to particular species in a mixture they are used to refine. This superior effectiveness is attributed to ZIF's uniform pore sizes that enable sharp molecular sieving, as well as its highly porous structure that enables fast species transport through it, with minimal mass transfer hindrance for the targeted/preferably selected specie. Among ZIFs, there exists one called ZIF-8 which is especially suited to propylene/propane separation and has been widely reported for its sharp molecular sieving performance for this mixture. ZIF-8 is also distinctly stable, and relatively easy to synthesize from cheap and readily available starting materials. Recent advances in the fabrication methods reported for ZIF-8 synthesis are presented in this work, along with a comparison of the separation performance for propylene and propane resulting from different types of ZIF-8 produced by these methods. The potential effect of utilizing this ZIF material in the refining units applied for olefin/paraffin separation is also critically evaluated towards its industrial utilization.
丙烯与丙烷超选择性分离的沸石咪唑骨架
烯烃和石蜡气体是石油化工炼制工业的重要产品,它们的有效分离可以在最先进的技术下提供高经济效益和在新兴能源市场上的竞争力。重要的化学品,如聚乙烯和聚丙烯,是从原料中提取的轻烯烃,包括乙烯和丙烯,可通过石脑油裂解进行加工。然而,由于这导致其在其他有价值的副产品中产生,因此需要分离/提纯,由于工艺流出物的热物理性质相似,这通常通过技术和能源密集型低温蒸馏来实现。因此,需要具有成本效益和节能的工艺,其中膜基分离技术脱颖而出。在这方面,沸石咪唑骨架(ZIFs)已经显示出优越的潜力,可以为它们用于精炼的混合物中的特定物种提供高选择性和高渗透性。这种优异的效果归功于ZIF均匀的孔径,使分子筛分清晰,以及它的高多孔结构,使物质通过它快速运输,对目标/优选物质的传质障碍最小。在zif中,有一种ZIF-8特别适用于丙烯/丙烷的分离,并因其对该混合物具有良好的分子筛分性能而被广泛报道。ZIF-8也非常稳定,并且相对容易从廉价和现成的起始材料合成。本文介绍了ZIF-8合成方法的最新进展,并对这些方法制备的不同类型的ZIF-8对丙烯和丙烷的分离性能进行了比较。在烯烃/石蜡分离的精炼装置中使用这种ZIF材料的潜在效果也对其工业利用进行了批判性评价。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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